Document qXoDeEM077pLxjjqZjzLjZJj
3M EnvironmentaLl boratory
FinalReport-AnalyticaSltudy
Single-DosDeermal Absorption/ToxiciStyudyofT-6051and T-6054 in Rabbits
In-VivoStudyReferenceNumber: HWI#6329-133
StudyNumber: AMDT-013195.1 TestSubstance:FC-129 (T-6051andT-6054)
Name and AddressofSponsor:
3M SCD Division 367 Grove Street St.Paul,MN 55106
Name
and Address of Testing Facility: 3M Environmental Technology & Services 935 Bush Avenue St.Paul,MN 55106
Method Numbers AMDT-M-1-0,
AMDT-M-2-0,
AMDT-M-4-0, AMDT-M-5-0,
AMDT-M-8-0,
and Revisions: Thermal Extractionof Fluorideby Means of a Modified Dohrmann DX2000 Organic Halide Analyzer-Liver FluorideMeasurement by Means of an Orion EA940 Expandable Ion Analyzer Extractionof Fluorochemicalsfrom RabbitLiver Analysisof RabbitLiverExtractforFluorochemicalsUsing
ElectrospmyMass Spectrometry Analysisof FluorideUsing the SkalarSegmented Flow Analyzer with Ion SelectiveElectrode
InitiatioDnate: See attachedprotocol
Author:James D. Johnson Approved Bvl
,@/amSetsudy D. Jgti@don Dirdpeor
Completion Date
1.0 SUMMARY
SamplesoflivefrromrabbiatdsministerFeCd-129(T-6054o)rFC-129treated fabric(T-6051)were analyzedat28 days postdermal administratiofnortotal organicfluorinaend perfluorooctanesulfonatTeh.e resultshow thatforthehighest liquidformulationdose group (12.8mg/kg) thereison theaverageabout0.2% of thedose inwhole liverat28 days.
Thus, dermal administratioonfFC-129 athigherlevelsresultsinsome dermal absorption.
2.0 INTRODUCTION
Two studieswere performed on FC-129. A pharmacoldneticstudy(HWI#6329138)and thisdermalabsorptionstudy(HWI #6329-133).The pharmacokinetic studyshowed thatperfluorooctanesulfonaitsea usefulmarker to assessthe dermal absorptionof FC- 129. Liver,serum,and othertissueswere availableforanalysisby combustionfortotalorganicfluorineand electrospramyass spectrometryfor analysisof specifimcoleculessuch asperfluorooctanesulfonatBey. obtainingand thenanalyzingdatafrom rabbitsat28 days postdermal dose,informationforthe assessmentoftheextentofdermal absorptionofFC- 129 isprovidedinthisstudy.
3.0 TEST MATERL4,LS
3.1Test,Control,and ReferenceSubstancesand Matrices 3.1.1AnalyticalReferenceSubstance: FC-95,lot161 or 171. They are equivalent. 3.1.2AnalyticalReference Matrix: Bovine liverand bovine serum 3.1.3AnalyticalControl Substance: None 3.1.4AnalyticalControl Matrix: Bovine liverand bovine serum
3.2 Source of Materials:3M ICP/PCP DivisionforFC-95, bovine liverfrom grocerystore,bovine serum from Sigma Chemical Company.
3.3.Purity and Strength of Reference Substance: Responsibilitoyf Sponsor.
3.4 Stabilityof Reference Substance: To be determinedby Sponsor.
2
3.5StorageConditionfsorTestMaterialRso:om temperatufroerFC-95.For biologicalsamples the storageis-20-+0l0 C.
3.6Dispositionof Specimens: Biologicatlissueasnd fluidswillbe retainedper GLP Regulationforthetime periodrequiredforstudieslongerthan28 days.
4.0 EXPERIMENTAL -Overview
The tissuesfrom animalsdosed asdescribed(HWI#6329-133), were availablfeor analysisforfluorinceompounds. At thediscretioonf theStudy Directora,*seriesof analyticatlestscouldbe performed.The screeningforfluoridienlivervia combustion was the most likelyanalysistopresentdefmitivedataforabsorption. Other availabletestswere electrospramyass spectroscopyand gas chromatography/massspectrometryformetabolitesL.iversampleswere analyzedby both combustion and electrosprayD.ata were thenanalyzedto assesstheextentof dermal absorption.
5.0 EXPERIMENTAL -METHODS
5.1 AMDT-M-1-0, Thermal ExtractioonfFluorideby Means ofa Modified Dohrmann DX2000 OrganicHalideAnalyzer-Liver
5.2ANMT-M-2-0, FluorideMeasurement by Means of an Orion EA940 Expandable Ion Analyzer
5.3AMDT-M4-0, Extractioonf Fluorochemicalfsrom RabbitLiver
5.4AMDT-M-5-0, Analysisof RabbitLiverExtractforFluorochemicalUssing ElectrosprayMass Spectrometry
5.5AMDT-M-8-0, AnalysisofFluorideUsing theSkalarSegmented Flow Analyzer with Ion SelectiveElectrode
6.0 DATA ANALYSIS
The dataareattached.The leveloftotalorganicfluorinienwhole liverforthe control,0.128,1.28,and fabricdosesarebelow the practicaqluantitatiolnimitfor thismethod. Justusingmeterreadingsand extrapolatinfgrom the standardcurve, thevaluesareon theorderof 16 ug/whole liver.The 12.8mg/kg dermal dose however, resultsindetectablaemounts oforganicfluorideinwhole liverat28 days
3
postdose. The valuesrange from below thepracticaqluantitatiolnimitforone of the 6 rabbits(F52895) to 75 ug/whole liverforrabbitF52889. The averageis 45 ug/whole liverwith a standarddeviationof 21 ug.
Electrospraymass spectrometrydataare in agreement with thecombustion data; thereisvery littlpeerfluorooctanesulfonatienthegroups otherthan the 12.8mg/kg group. Small detectableamounts areobservedin the 1.28mglkg and fabricgroups; however, theseareestimatedto be on the orderof 17 ug/whole liveror less.For the 12.8mg/kg dose group,perfluorooctanesulfonaitsedetectedin allrabbitliver samples at28 days postdermal dose. The amounts are estimatedto range from 25 to 85 ug/whole liver(mean of 48 ug/whole liver).The rabbitthatshowed 75 ug/whole liverof totalorganicfluorineforcombustionanalysis(F52889),had 56 ug/whole liverperfluorooctanesulfonate.
From thepharmacokineticstudyon FC-129 (HWI#6329-138), itisknown thata good portionof the intravenousdose willbe biotransformedto perfluorooctanesulfonatIet.isknown thatthehalf-lifoef perfluorooctanesulfonate in rabbitsis>1 month. Thus, ifFC-129 isdermallyabsorbeda portionof itwill appear in liverat28 days as perfluorooctanesulfonate.
Fiftyug perfluorooctanesulfonate/whollieveris0.2% of thedose forthe 12.8mg/kg rabbitsassuming a body weight of 2 kg and expressingthe dose inpotassium perfluorooctanesulfonaetqeuivalents(FC-95). Afteran intravenousdose of 12.8 mg/kg a rabbithad 1.05% of the dose in liverat48 hours. For comparison,1.05% with a biologicalhalf-lifoef 30 days would be approximately0.5% of thedose at day 28. Thus, estimatedlevelsafteran intravenousdose of 12.8mg/kg would be 0.5% of thedose in whole liverand estimatedlevelsafterdermal administratioonf 12.8mg/kg would be 0.2% of the dose in whole liverifthelevelsare compared at 28 days.
Other datawas collectedusing Skalarsegmented flow analyzerwith ionselective electrode(seeappendices).This data,althoughsupportivei,n theopinionof the Study Directorisnot requiredto reachtheconclusionstatedhereand thereforeisnot discussedin detail.
6.1 Circumstances that May Have Affected the Quality of the Data: The problem with thisanalysisisthatthe extentof biotransformatioonf the restof the fluorinatecdompounds inthe liverat48 hours inthe pharmacokineticstudy (HWI#6329-138) to perfluorooctanesulfonaitsenot known. There couldbe considerablebiotransformatioonf theseveralpercentof dose thatfluorinated molecules otherthan perfluorooctanesulfonartepresent.However, the 1.05% of the dose observed at48 hours stililndicatesthatperfluorooctanesulfonaitsea sensitive marker to assessbiotransformatioonf thiscompound. At 28 days,thevaluecould
4
be somewhat higherthan theabove estimateof 0.5% of thedose due to delayed metabolism.Ifthiswere true,thevaluefordermal absorptionhas by definition (sinceitismeasured at28 days)a builtincompensationforthisdelayand thevalue of 0.2% ofthedose afterdermal administratioinsbeingcompared with a percentage of dose from the intravenousdose thatistoo low.
7.0 CONCLUSION There isevidenceof dermal absorptioninrabbitsof FC-129 afterdermal administratioonfa 12.8mglkg dose.
8.0 MAE'ITENANCE OF RAW DATA AND RECORDS 8.1 Raw Data and Data: Raw data,approved protocol,approved finalrepom appropriatsepecimens,and electronidcatawillbe maintainedintheAMDT archives.
9.0 APPENDICES 9.1 Protocol and Amendments
9.1.1Protocoland FinalReport:HWI#6329-133: "Single-DoseDermal Absorption/ToxicitSytudy ofT-6054 and T-6051 inRabbits"(Protocoltype TP3016.AB fordosingofanimals,tissuecollectione,tc.) 9.1.2 AnalyticaplrotocolAMDT-013195.1
9.2 Signed Reports from IndividualScientistsN:one 9.3 QualityAssurance Unit Statement:See attached 9.4 Key PersonnelInvolvedinthe Study: See attached 9.5 Materialsand Equipment: See methods 9.6 Solutions,Reagents,and Standards:See methods 9.7 Sample Preparation:See methods 9.8 QualityControl PracticesS:ee methods
5
9.9TestMethods:SeeProtocoAlMDT-0 13195.1 9.10 Instrument Settings:See methods 9.11 Data: See attached.
9.11.1Summary and raw data;ug F-inwhole liverasdeterminedby thermal extractiofnollowedby analysisusingOrion ionanalyzer. 9.11.2Sununary and raw data;analysisof liverextractussingelectrospray mass spectrometry. 9.11.3Sununary and raw data;ug F inwhole liverasdeterminedby thermal extractiofnollowedby analysisusingSkalarsegmentedflow analyzerwith ion selectivelectrode.
6--
9.1.1Protocoland FinalReport:HWI#6329-133: "Single-DoseDermal Absorption/ToxicitSytudy of T-6054 and T-6051 in Rabbits"(Protocoltype TP3016.AB fordosingof animals,tissuecollection,, etc.)
HAZLrzoCCN
W IS C 0 N S IN
POST OFFICE BOX 7545
MADISON,WL
53707-7545
Sponsor,:
3M St. Paul, Minnesota
a CORNING Coni;),iny
11 2
FINAL REPORT
Study Title: Single-Dose Dermal Absorption/Toxicity Study of T-6054 and T-6051 in Rabbits
Author: Steven M. Glaza
Study Completion Date: June 16, 1995
Performing Laboratory: Hazleton Wisconsin, Inc. 3301 Kinsman Boulevard Madison, Wisconsin 53704
Laboratory-ProjectIdentification: HWI 6329-133
P h o n e 6 0 8 - 2@4 I---4-4.-7-1 E X P R E S S - M A I L DELIVERY
Page I of 46
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Page 2 of 46
HWI 6329-133
QUALITY ASSURANCE STATEMENT
This report has been reviewed by the Quality Assurance Unit of Hazleton Wisconsin, Inc., in accordance with the Food and Drug Administration (FDA) Good LaboratoryPractice Regulations, 21 CFR 58.35 (b) (6) (7). The following inspectionswere conducted and findings reported to the Study Director and management. Written status reports of inspections and findings are issued to Hazleton management monthly according to standard operating procedures.
Inspection Dates
- From
To
Phase
12/08/94 12/28/94 01/09/95 01/30/95 03/17/95 03/17/95 06/14/95 06/16/95
12/09/94 12/28/94 01/09/95 01/30/95 03/21/95 03/21/95 06/15/95 06/16/95
Protocol Review Dose Administration Protocol Amendment Protocol Amendment Data/Report Review Data Review Report Rereview Report Rereview
Date Reported to Study Director
Date to Management
12/09/94 12/28/94 01/09/95 01/30/95 03/21/95 03/21/95 06/15/95 06/16/95
01/10/95 01/10/95 02/10/95 02/10/95 04/10/95 04/10/95 07/10/95 07/10/95
(
4xez--,,-
@'e-Mc.i Dl ai na or Representative, Quality Assurance Unit
5ate
Page 3 of 46
STUDY IDENTIFICATION Single-Dose Dermal Absorption/Toxicity Study of T-6054 and T-6051 in Rabbits
HWI 6329-133
Test Materials
1. T-6054 2. T-6051
Sponsor
3M Toxicology Service
Medical Department 3M Center, Bldg. 220-2E-02 P.O. Box 33220 St. Paul, MN 55133-3220
Sponsor's Representative
John L. Butenhoff, PhD 3M Toxicology Service
Medical Department 3M Center, Bldg. 220-2E-02 P.O. Box 33220 St. Paul, MN 55133-3220 (612) 733-1962
Study Director
Steven M. Glaza Hazleton Wisconsin, Inc. P.O. Box 7545 Madison, WI 53707-7545 (608) 241-7292
Study Location
Hazleton Wisconsin, Inc. Building No. 3 3802 Packers Avenue Madison, WI 53704
Study Timetable Study InitiationDate Experimental (In-life)Start Date
In-life End Date Experimental Termination Date Study Completion Date
December 13, 1994 December 28, 1994 January 25, 1995 June 16, 1995 June 16, 1995
Page 4 of 46
HWI 6329-133
KEY PERSONNEL
Acute Toxicology
Laboratory Animal Medicine
Steven M. Glaza Study Director Manager
Cindy J. Cary, DVM Diplomate, ACLAM Supervisor
Francis (Bud) W. McDonald Study Coordinator
Anatomical Pathology
Patricia Padgham In-life Supervisor
Thomas E. Palmer, PhD Anatomical Pathologist
Rose M. Bridge Report Supervisor
Ouality Assurance Sherry R. W. Petsel Manager
Jack Serfort/ Deborah L. Pirkel Supervisors Necropsy
Anne Mosher Supervisor Pathology Data
Page 5 of 46
CONTENTS
Quality Assurance Statement Study Identification Key Personnel Summary Objective Regulatory Compliance Test and Control Materials Test System Procedures Results Discussion Signature Reference Pathology Report
Table
1 Individual and Mean Body Weights (g) 2 Individual Clinical Signs 3 Individual Dermal Irritation Scores 4 Individual Pathology Comments 5 Individual Animal Tissue Weights and Bile Volumes
Appendix A Protocol Deviation Protocol TP3016.AB Protocol Amendment No. 1 Protocol Amendment No. 2
HWI 6329-133
Page
2 3 4 6 8 8 8 9 10 13 13 14 14 15
16 18 20 25 27
29 30 31 42 45
Page 6 of 46
SUMMARY
HWI 6329-133
This study was done to assess the systemic absorption/toxicityand relative skin irritancy of T-6054 and T-6051 when applied to the skin of rabbits.
The study was conducted using three male and three female acclimated rabbits of the Hra:(NZW)SPF strain for each treatment group.
- Groui) Test Material
1 (Control) Sterilewater
2
T-6054
3
T-6054
4
T-6054
5
T-6051
Dose Level (mg/kq)-
oa
0.128 1.28 12.8 b
Number of Animals Males Females
3
3,
3
3
3
3
3
3
3
3
a Administered at a dose volume of 2.0 mL/kg. b Administered as a 10-cm x 10-cm section of test
material (fabric).
The back of each rabbit was clipped free of hair and a single dose of the respective material at the indicateddose level was administeredto the skin of the rabbits. The treatmentsites remained intact. The area of application was covered with a gauze bandage secured with paper tape around all edges and overwrapped with Saran WrapO and ElastoplastO tape to provide an occlusive dressing for a 24-hour exposure period.
Clinical observations were conducted predose and at approximately 1, 2.5, and 4 hours after test or control material administration. Additionalclinical observations and twice a day mortality checks were conducted daily thereafter for 28 days. Body weights were determined on Day -9 for randomization purposes, before test or control material administration(Day 1), and at in-life termination (Day 29). The initial dermal irritationreadingwas made before test or control material administration(recorded as the Day 1 reading). Subsequent readings of dermal irritation were made approximately 30 minutes after bandage removal (Day 2) and on Days 4 and 8. Blood samples were collected from a marginal ear vein of the animals before in-life initiation (Day 1), approximately24-hours postdose (Day 2), on Days 4, 8, 15, and 22. In addition, at the time of necropsy on Day 29, approximately 20 mL of blood was obtained from each animal. All samples were centrifuged and separated into serum and cellular fractions. All animals were euthanized at termination of the in-life phase and necropsied. The whole liver, bile, an approximate 1-cm x 1-cm section of the dermal application site from all animals, and both kidneys from one male and one female in each group were collected at necropsy and weighed (volume only determined for bile). The blood samples (serum and cellular fractions),livers, bile, dermal application sites, and kidneys were sent frozen to the Sponsor after termination of the in-life phase.
Page 7 of 46
HWI 6329-133
Application of T-6054 and T-6051 did not result in any test material-related changes in body weight gain or macroscopic findings at necropsy. All animals appeared clinically normal throughout the study with the exception of one female animal treated with T-6054 at 1.28 mg/kg that exhibited weakened hind limbs the last 22 days of study. This animal was also noted as having small feces on Day 8. These findings are considered to be due to an injury incurred during the sample collection procedures and are not considered to be test material-related. The control material and test material T-6051 did not produce any dermal irritation. No dermal irritationwas observed as a result of T-6054 at a dose level of 0.128 or 1.28 mg/kg. T-6054 produced very slight dermal irritation in five animals at the 12.8 mg/kg dose level.
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OBJECTIVE
HWI 6329-133
The objectiveof this study was to assess the systemictoxicity/absorptionand relativeskin irritancyof test materialswhen appliedto the skin of rabbits.
REGULATORY COMPLIANCE
This study was conducted in accordance with the U.S. Food and Drug Administration'sGood LaboratoryPractice Regulationsfor Nonclinical LaboratoryStudies, 21 CFR 58, with the exceptionthat analysis of the test material mixtures prepared for the Groups 2, 3, and 4 animals for concentration,homogeneity/solubilitya,nd stabilitywas not conductedand the originaltest materialusage log can not be located althougha copy is retainedin the study file. All proceduresused in this study are in compliancewith the Animal Welfare Act Regulations. In the opinion of the Sponsor and study director,the study did not unnecessarilyduplicate any previous work.
Identification
TEST AND CONTROL MATERIALS
The test materialswere identifiedand describedas follows:
Identification Physical Descrigtion
T-6054 T-6051
Amber liquid White plastic sheets
The controlmaterialwas-SterileWater for Injection,USP (Abbott Laboratories, Lot No. 86-748-DM-02;Exp. March 1, 1996), and was described as a clear, colorlessliquid.
Purity and Stability
The Sponsor assumes responsibilityfor test materialpurity and stability determinations(includingundertest conditions).Analysisof the test material mixtures prepared for the Groups 2, 3, and 4 animals for concentration,homogeneity/solubilitya,nd stabilitywas not conductedor requestedby the Sponsor. The purity and stabilityof the controlmaterial were considered to be adequatefor the purposesof this study.
Storage and Retention
The test materialswere stored at room temperature. The controlmaterial was stored refrigerated. A reserve sample of each test and controlmaterialwas
Page 9 of 46
HWI 6329-133
taken and will be retained in a freezer set to maintain a temperature of +100 for 10 years in accordance with Hazleton Wisconsin (HWI) Standard Operating Procedure (SOP). Any unused test material was returned to the Sponsor after completion of all in-life phase according to HWI SOP. Any remaining control material is retained for other testing and will not be discarded after issuance of the final report.
-200C
Safety Precautions
The test and control material handling procedures were according to HWI Sops and policies.
TEST SYSTEM
Test Animal
Adult albino rabbits of the Hra:(NZW)SPF strain were procured from HRP, Inc., Kalamazoo, MI, on December 14, 1994 and maintained at the Hazleton Wisconsin facility at 3802 Packers Avenue, Madison, Wisconsin.
Housing
After receipt, the animals were acclimatedfor a period of at least 7 days. During acclimation and throughout the study, the animals were individually housed in screen-bottom stainless steel cages in temperature- and humiditycontrolled quarters. Environmental controls for the animal room were set to maintain a temperature of 19* to 230C, a relative humidity of 50% 20%, and a 12-hour light/12-hourdark lighting cycle. In cases where variations from these conditions existed, they Were documented and considered to have had no adverse effect on the study outcome.
Animal Diet
The animals were provided access to water ad libitum and a measured amount of Laboratory Rabbit Diet HF #5326, PMI Feeds, Inc. The feed is routinely analyzed by the manufacturer for nutritional components and environmental contaminants. Samples of the water are periodically analyzed by HWI. There were no known contaminants in the feed or water at levels that would have interferedwith or affected the results of the study.
Selection of Test Animals
The animals were identified by animal number and corresponding ear tag and were placed into study groups using a stratified body weight randomization program. The randomization body weights were determined on Day -9. The
Page 10 of 46
HWI 6329-133
weight variationof the animalsfor each group of each sex selectedfor the study did not exceed 2 standard deviations of the mean weight, and the mean body weights for each group of each sex were not statisticallydifferentat the 5% probabilitylevel. One female animal (No. F52890)was replacedin the study prior to treatment due to poor health. This animal was replacedwith another female (No. F52877).
Study Design
Animals weighing from 2,157 to 2,508 g at initiationof treatmentwere placed into the followingstudy groups:
Group
Dose Level Test Material (mg/kq)
1 (Control) Sterilewater
2
T-6054
3
T-6054
4
T-6054
5
T-6051
oa
0.128 1.28 12.8 b
Number of Animals
Males
Females
3
3
3
3
3
3
3
3
3
3
a Administered at a dose volume of 2.0 mL/kg. b Administered as a 10-cm x 10-cm section of test
material(fabric).
Justificationfor SRecies Selection
Historically,the New ZealandWhite albino rabbit has been the animal of choice because of the large amount of backgroundinformationon this species.
PROCEDURES
PreRaration of Exposure Area
On the day before test materialapplication,the back and, if necessary(to obtain unblemishedskin),the flanksof each rabbit was clippedfree of hair. The clipped area made up approximately20% of the total body surface area. The test sites (intactskin)were inspectedfor interferinglesions, irritation,or defects that would precludethe use of any of the animals. The animals were clipped on Days 8 and 29 to aid in visualizingthe application sites.
Dose Administration
All animals receiveda single administrationof the respectivetest or control material. The day of treatment was designated as Day 1.
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HWI 6329-133
Groug 1. An individual dose (2.0 mL/kg) was calculated and measured based on each animal's body weight on the day of treatment. The control material (sterilewater for injection)was appliedevenly to the test site at a rate of approximately0.05 mL/CM2.
Groups 2. 3. and 4. For the Groups 2, 3, and 4 animals (0.128, 1.28, 12.8 mg/kg, respectively),the test material (T-6054)was mixed with. sterile water for injection to a concentrationof 99, 990, and 9,920 mg/mL, respectively, and applied at a dose volume of 0.01 mL/kg. The mixtures were stored at room temperature until administered. An individualdose of the respective test material mixture was calculated for each animal based on its body weight on the day of treatment. For all three groups, the area of exposure was 4 CM2 and the approximate rate of application was 0.006 mL/cm 2 .
Group 5. The test material (T-6051) was applied to each animal's skin as a 10-cm x 10-cm section of material that was moistened with distilled water.
Each area of application was covered with a 10-cm x 10-cm gauze bandage secured with paper tape around all edges and overwrapped with Saran Wrapo and Elastoplast'Otape to provide an occlusive dressing. Collars were used to restrain the animals during the 24-hour exposure period.
Approximately 24 hours after test or control material application,the restraining collars and bandages were removed and any residual test material was removed with tap water and disposable paper towels.
Reason for Route of Administration
The dermal route is a potential route of exposure in humans.
Observations of Animals
Clinical observations were conducted predose and at approximately 1, 2.5, and 4 hours after test or control material administration. Additionalclinical observations and twice a day mortality checks (morning and afternoon) were conducted daily thereafter for 28 days.
Body weights were determined for randomization purposes on Day -9, before test material administration(Day 1), and at in-lifetermination(Day 29).
The initial dermal irritationreading was made before test or control material administration according to the Draizel technique (recorded as the Day 1 reading). Subsequent readings of dermal irritation were made approximately 30 minutes after bandage removal (Day 2) and on Days 4 and 8. The only exception to this was the Day 8 erythema score for one female animal (No. F52889) in Group 4 was inadvertently not recorded.
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HWI 6329-133
Sample Collections
Blood samples (approximately4 mL) were collected from a marginal ear vein of all animals before experimentalinitiation(Day 1). Subsequent collection of blood was conducted approximately 24-hours postdose (Day 2), and on Days 4, 8, 15, and 22. In addition, at the time of necropsy on Day 29, approximately 20 mL of blood was obtained from the posterior vena cava of each animal, All samples were centrifuged and separated into serum and cellular fractions. These samples were then stored in a freezer set to maintain a temperature of -200C 100C until shipped to the Sponsor.
Pathology
At termination of the experimentalphase (Day 29), animals were anesthetized with sodium pentobarbital, bled via the posterior vena cava, exsanguinated, and necropsied in random order. The sites of test and control material application were washed with lukewarm tap water before the necropsy procedure. All animals were subjected to an abbreviated gross necropsy examination and any abnormalities were recorded. The whole liver, bile, an approximate 1-cm x 1-cm section of the dermal application site from all animals, and both kidneys from the first male and female in each group were collected. The tissue samples were weighed (volume only determined for bile) and immediately placed on dry ice, then placed in a freezer set to maintain a temperature of -20'C 10'C. After necropsy, the animals were discarded.
Shipment of Blood, Bile, and Tissues
After experimental termination,the blood samples (serum and cellular fractions),livers, bile, dermal applicationsites, and kidneyswere sent frozen (on dry ice) to the Sponsor (James D. Johnson, 3M E.E. & P.C., Bldg. 2-3E-09, 935 Bush Avenue, St. Paul, MN, 55106), along with their corresponding weights or volumes. The Sponsor'is responsible for the retention and disposition of the samples. HWI does not accept any responsibilityfor the analysis of the tissue samples collected in this study nor are these results presented in this report.
Statistical Analyses
No statistical analyses were required by the protocol.
Location of Raw Data, Records, and Final Report
The raw data, records, and an original signed copy of the final report will be retained in the archives of HWI in accordance with HWI SOP.
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HWI 6329-133
RESULTS
Body Weights
Individual and mean body weights are in Table 1. All animals exhibited body weight gains from Day I to Day 29.
Clinical Observations
Individual clinical signs are in Table 2. All animals appeared normal throughout the study with the exception of one female animal (No. F52900) treated with T-6054 at 1.28 mg/kg that exhibitedweakened hind limbs during the last 22 days of study. This animal also had small feces on Day 8. These findings are considered to be due to an injury incurred during the sample collection procedures and are not considered to be test material-related.
Dermal Irritation
Individualdermal irritationscores are in Table 3. The control material and test material T-6051 produced no dermal irritation. No dermal irritationwas observed in the animals treated with T-6054 at a dose level of 0.128 or 1.28 mg/kg. T-6054 produced slight to moderate erythema reactions at Days 2 and 4 only in five animals at the 12.8 mg/kg dose level.
Pathology
Individual animal pathology comments are presented in Table 4. There were no lesions observed in any of the animals.
Page 15 contains a pathology report by the study pathologist.
DISCUSSION
The acute systemic absorption/toxicityand relative skin irritancy of T-6054 and T-6051 were evaluated in male and female albino rabbits when administered as a single dermal application. Applicationof the these materials did not result in any test material-relatedeffects on in-life clinical findings, body weight gain or macroscopic findings at necropsy. The control material and test material T-6051 did not produce any dermal irritation. No dermal irritation was observed with T-6054 applied at a dose level of 0.128 or 1.28 mg/kg. T-6054 produced very slight dermal irritation in five animals at the 12.8 mg/kg dose level.
Page 14 of 46 SIGNATURE
HWI 6329-133
Steven M. Glaza
Date
Study Director
Acute Toxicology
REFERENCE
1. Draize, J. H., "Acute Demal Toxicity (Single Exposure)," In: Appraisa7 of the Safety of Chemicals in Foods, Drugs and Cosmetics - Dermal Toxicity, Association of Food and Drug Officials of the U.S., pp. 54-56 (1959).
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HWI 6329-133
PATHOLOGY REPORT
There were six rabbits (three males and three females)each from five dose levels euthanizedand necropsiedat the terminationof the study. The test material,dose level, day of death, and gross observationsrecordedfor each animal are in the IndividualPathologyCommentsthat follow this report.
. At necropsy,there were no visible lesionsin any of the animals. The liver, bile, an approximate1-cm x 1-cm sectionof the dermal applicationsite from all animals, and both kidneys from the first male and female in each group were collected. The tissue samples were weighed (volumeonly determinedfor bile), frozen,and sent to the Sponsor. After necropsy,the animalswere discarded.
L 4A z 4@@ mas E. Palmer PhDt/-
Date
thologist
P
(6329-133.slh) 031095
Animal Number
F52885 F52873 F52898
Mean
Page 16 of 46
HWI 6329-133
Table 1 Individualand Mean Body Weights (g)
Male Randomization
Day -9
Day
1
29
Animal Number
Female
Random-
ization
Day
Day -9
1
..29
Group I (Control)- SterileWater for Injection(0 mg/kq)
2,292 2,204 2,169
2,483 2,321 2,366
2,853 2,745 2,745
F52967 F52878 F52883
2,204 2,331 2,274
2,368 2,475 2,499
2,863 2,978 2,985
2,222
2,390 2,781
2,270 2,447 2,942
F52887 F52893 F52897
Mean
2,272 2,204 2,338
2,271
Group 2 - T-6054 (0.128 mg/kg)
2,235 2,260 2,423
2,621 2,603 2,913
F52901 F52876 F52882
2,281 2,270 2,127
2,306 2,712
2,226
2,340 2,358 2,323
2,340
2,839 2,842 2,814
2,832
F52965 F52891 F52892
Mean
2,248 2,077 2,261
2,195
Group 3 - T-6054 (1.28 mg/kq)
2,369 2,383 2,333
2,966 2,757 2,614
F52884 F52900 F52968
2,351 2,210 2,166
2,362 2,779
2,242
2,508 2,460 2,289
2,419
2,928 2,588 2,822
2,779
F52886 F52880 F52899
Mean
2,286 2,161 2,353
2,267
Group 4 - T-6054 (12.8 mg/kq)
2,417 2,219 2,393
2,793 2,525 2,741
F52889 F52894 F52895
2,292 2,160 2,219
2,343 2,686
2,224
2,357 2,489 2,462
2,436
2,853 2,837 2,791
2,827
Animal Number
F52879 F52963 F52874
Mean
Page 17 of 46
HWI 6329-133
Table I (Continued) Individualand Mean Body Weights (g)
Male Randomization Day -9
Day
1
29-
Animal Number
Female
Random-
ization
Day
Day -9
1
29
Group 5 - T-6051 (10-cm x 10-cm Section)
2,278 2,173 2,048
2,398 2,258
2,265
2,923 2,622 2,495
F52877a F52888 F52966
2,021 2,191 2,264
2,157 2,273 2,322
2,782 2,752 2,792
2,166
2,307 2,680
2,159 2,251 2,775
a Animal No. F52890 was originallyselected by the randomizationprogram for use in the study but was replacedwith No. F52877 due to poor health.
Page 18 of 46
Table 2 IndividualClinical Signs
HWI 6329-133
Animal
Sex
Number
Observation
1-4 Hours
Day
(DayI)- 2 - 7 8 9 29
Group 1 (Control)- SterileWater for Injection(0 mg/kq)
Male
F52885 Appeared normal
t
F52873 Appeared normal
F52898 Appeared normal
Female F52967 Appeared normal
1(
F52878 Appeared normal
1(
F52883 Appeared normal
it
Male Female
F52887 F52893 F52897
F52901 F52876 F52882
Grou2 2 - T-6054 (0.128 mg/kq)
Appeared normal Appeared normal Appeared normal
Appeared normal Appeared normal Appeared normal
Male Female
F52965 F52891 F52892 F52884 F52900
F52968
Grou2 3 - T-6054 (1.28mg/kq)
Appeared normal
1(
Appeared normal
Appeared normal
Appeared normal
Appeared normal Weakened hind limbs Small feces
Appeared normal
Condition existed. Conditionnot evident.
Sex Male Female
Animal Number
F52886 F52880 F52899
F52889 F52894 F52895
Page 19 of 46
Table 2 (Continued) IndividualClinicalSigns
Observation
1-4 Hours (Day 1) 2
Group 4 - T-6054 (12.8 mg/kq)
Appeared normal Appeared normal Appeared normal
Appeared normal Appeared normal Appeared normal
HWI 6329-133
Day 7 8 9 29
Male Female
Group 5 - T-6051 (10-cm x 10-cm Section)
F52879 F52963 F52874
Appeared normal Appeared normal Appeared normal
F52877 F52888 F52966
Appeared normal Appeared normal Appeared normal
1(
1(
Condition existed.
Page 20 of 46
HWI 6329-133
Table 3 Individual Dermal Irritation Scores
Group I (Control)- SterileWater for Injection(0 mg/kg)
Dermal Reaction
Males
Study Day
1
2
4
8
Females
Study Day
1
2
4
8
Animal No. F52885
--Animal No. F52967
Erythema Edema Atonia Desquamation Coriaceousness Fissuring
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
Erythema Edema Atonia Desquamation Coriaceousness Fissuring
Animal No. F52873
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
Animal No. F52878
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
Erythema Edema Atonia Desquamation Coriaceousness Fissuring
Animal No. F52898
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
Animal No. F52883
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
Page 21 of 46
HWI 6329-133
Table 3 (Continued) Individual Dermal Irritation Scores
Group 2 - T-6054 (0.128 mg/kg)
Dermal Reaction
Males
Study Day
_L 4
8
Animal No. F52887
Females
Study Day
1
2
4
Animal No. F52901
Erythema Edema Atonia Desquamation Coriaceousness Fissuring
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
Erythema Edema Atonia Desquamation Coriaceousness Fissuring
Animal No. F52893
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
Animal No. F52876
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
Erythema Edema Atonia Desquamation Coriaceousness Fissuring
Animal No. F52897
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
Animal No. F52882
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
Page 22 of 46
HWI 6329-133
Table 3 (Continued) IndividualDermal IrritationScores
Group 3 - T-6054 (1.28 mg/kg)
Dermal Reaction
Males
Study Day
I _L_ 4
8
Females
Study Day
1
2
4
8
Animal No. F52965
Animal No. F52884
Erythema Edema Atonia Desquamation Coriaceousness Fissuring
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0 .0
0
0
0
0
0
0
0
0
0
0
0
0
Erythema Edema Atonia Desquamation Coriaceousness Fissuring
Animal No. F52891
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
Animal No. F52900
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
Erythema Edema Atonia Desquamation Coriaceousness Fissuring
Animal No. F52892
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
Animal No. F52968
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
Page 23 of 46
HWI 6329-133
Table 3 (Continued) Individual Dermal IrritationScores
Group 4 - T-6054 (12.8 mg/kg)
Dermal Reaction
Males
Study Day
1
2
4
8
Females
Study Day
1
2
4
8
Erythema Edema Atonia Desquamation Coriaceousness
Fissuring
Animal No. F52886
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
Animal No. F52889
0
1
1
-
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
Erythema Edema Atonia Desquamation Coriaceousness Fissuring
Animal No. F52880
0
1
1
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
Animal No. F52894
0
1
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
Erythema Edema Atonia Desquamation Coriaceousness Fissuring
Animal No. F52899
0
1
1
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
Animal No. F52895
0
2
1
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
Value not recorded.
Page 24 of 46
HWI 6329-133
Table 3 (Continued) IndividualDermal IrritationScores
Group 5 - T-6051 (10-cm x 10-cm Section)
Dermal Reaction
Males Study Day _1_ _L -.L- _L
Females Study Day 1 -L -L 8
Animal No. F52879
Animal No. F52877
Erythema Edema Atonia Desquamation Coriaceousness Fissuring
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
Erythema Edema Atonia Desquamation Coriaceousness Fissuring
Animal No. F52963
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
Animal No. F52888
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
Erythema Edema Atonia Desquamation Coriaceousness Fissuring
Animal No. F52874
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
Animal No. F52966
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
Animal Number
F52885 F52873 F52898 F52967 F52878 F52883
F52887 F52893 F52897 F52901 F52876 F52882
F52965 F52891 F52892 F52884 F52900 F52968
Page 25 of 46
HWI 6329-133
Table 4 Individual Pathology Comments
Test Day
sex
Died
Sacrificed Necropsy Observation
Group I (Control)- SterileWater for Injection (o mg/kg)
m
-
29
No visible lesions.
m
-
29
No visible lesions.
m
-
29
No visible lesions.
F
-
29
No visible lesions.
F
-
29
No visible lesions.
F
-
29
No visible lesions.
Group 2 - T-6054 (0.128 mg/kg)
m
-
29
No visible lesions.
m
-
29
No visible lesions.
m
-
29
No visible lesions.
F
-
29
No visible lesions.
F
-
29
No visible lesions.
F
-
29
No visible lesions.
Group 3 - T-6054 (1.28 mg/kq)
m
-
m
-
m
-
F
-
F
-
F
-
29
No visible lesions.
29
No visible lesions.
29
No visible lesions.
29
No visible lesions.
29
No visible lesions.
29
No visible lesions.
Not applicable.
Animal
Number
sex
F52886
m
F52880
m
F52899
m
F52889
F
F52894
F
F52895
F
F52879
m
F52963
m
F52874
m
F52877
F
F52888
F
F52966
F
Page 26 of 46
HWI 6329-133
Table 4 (Continued) Individual Pathology Comments
Test Da
Died
Sacrificed
Necropsy Observation
Group 4 - T-6054 (12.8 mg/kq)
-
29
No visible lesions.
-
29
No visible lesions.
-
29
No visible lesions.
-
29
No visible lesions.
-
29
No visible lesions.
-
29
No visible lesions.
Group 5 -
T-6051 (10-cm x 10-cm Section)
29
No visible lesions.
29
No visible lesions.
29
No visible lesions.
29
No visible lesions.
29
No visible lesions.
29
No visible lesions.
Not applicable.
Page 27 of 46
Table 5 Individual Animal Tissue Weights and Bile Volumes
HWI 6329-133
Sex Male
Animal Number
Liver
Weight (g)
Dermal Appli-
Kidneys
cation Site
Bile Volume (mL)
'GroupI (Control)- Sterile Water for Injection(0 mg/kq)
F52885 70.634
-
0.960
1.0
F52873 75-513
16.417
0.866
1.6
F52898
74.433
-
0.645
0.9
Female
F52967
62.517
-
0.777
2.1
F52878
63.222
16.808
0.890
2.0
F52883
75.418
-
0.618
2.5
Group 2 - T-6054 (0.128 mg/kq)
Male
F52887
71.149
-
0.784
1.1
F52893
64.537
13.509
0.836
0.6
F52897
73.622
-
0.604
1.5
Female
F52901
71.908
14.610
0.640
1.7
F52876 66.359
-
1.179
1.2
F52882 77.959
1.337
1.6
GrouR 3 T-6054 (1.28 mg/kq)
Male
F52965
69.880
18.191
0.452
1.8
F52891
65.695
-
0.525
1.1
F52892
69.216
-
0.949
1.1
Female
F52884
65.907
-
0.590
1.2
F52900 61.937
-
0.710
1.0
F52968 67.347
12.513
0.866
1.3
Not applicable.
Sex Male Female
Male Female
Page 28 of 46
HWI 6329-133
Table 5 (Continued) Individual Animal Tissue Weights and Bile Volumes
Animal Number
Liver
Weight (g)
Dermal Appli-
Kidneys
cation Site
Bile Volume (mLl
Group 4 - T-6054 (12.8 mg/kq)
F52886 77.219
-
0.857
0.6
F52880
59.985
12.254
0.634
0.8
F52899 89.883
-
1.391
0.4
F52889
69.288
0.953
0.5
F52894
75.086
-
1.000
1.4
F52895 59.174
15.603
0.635
0.9
Group 5 - T-6051 (10-cm x 10-cm Section)
F52879 89.874
0.884
1.0
F52963
71.814
-
1.535
0.6
F52874 71.657
15.784
0.990
0.6
F52877 71.284
-
1.154
0.6
F52888 65.633
-
1.231
0.5
F52966 68.719
15.855
0.898
1.5
- Not applicable.
Page 29 of 46
HWI 6329-133
APPENDIX A
Protocol Deviation Protocol TP3016.AB Protocol Amendment No. I Protocol Amendment No. 2
I
Page 30 of 46 Protocol Deviation
HWI 6329-133
Protocol
Page 7, 7. Experimental Design, C. Observation of Animals, (2) Reading of Dermal Irritation, Second Sentence. Additional dermal irritationreadingswill be made approximately 30 minutes after bandage removal (Day 2) and on Study Days 4 and 8.
Actual Procedure
The Day 8 erythema score was inadvertentlynot recorded for one Group 4 female (No. F52889).
This deviation is not considered to have had an adverse effect on the outcome of the study.
W HWAI s LOUN'TS(OINN
POST OFFICE BOX 7545
@ilADISON. Wl 53707-75,15
Page 31 of 46
CORNING cc);1,4x)ny
Sponsor: 3M
St. Paul, Minnesota
PROTOCOL TP3016.AB Study Title:
Single-Dose Dermal Absorption/ToxicityStudy of T-6054 and T-6051 in Rabbits
Date: December 13, 1994
Performing Laboratory: Hazleton Wisconsin, Inc. 3301 Kinsman Boulevard Madison, Wisconsin 53704
LaboratoryProject Identification: HWI 6329-133
F'kiclIte
F4()S 14 1 4 4 1 D E L I\/E R N
I v I)
2
VV 1
53/0.1
Page 32 of 46
STUDY IDENTIFICATION
TP3016.AB Page 2
Single-Dose Dermal Absorption/ToxicityStudy of T-6054 and T-6051 in Rabbits
HWI No. Test Materials Sponsor
Sponsor's Representative
Study Director
Study Location
Proposed Study Timetable Experimental Start Date Experimental Termination Date Draft Report Date
6329-133
1. T-6054 2. T-6051
3M Toxicology Service Medical Department
3M Center, Bldg. 220-2E-02 P.O. Box 33220 St. Paul, MN 55133-3220
John L. Butenhoff, PhD 3M Toxicology Service Medical
Department 3M Center, Bldg. 220-2E-02 P.O. Box 33220 St. Paul, MN 55133-3220 (612) 733-1962
Steven M. Glaza Hazleton Wisconsin, Inc. P.O. Box 7545 Madison, Wl 53707-7545 (608) 241-7292
Hazleton Wisconsin, Inc. Building No. 3 3802 Packers Avenue Madison, Wl 53704
December 28, 1994 January 25, 1995 March 8, 1995
Page 33 of 46
TP3016.AB Page 3
1. Study Single-DoseDermal Absorption/ToxicityStudy in Rabbits
2. Purpose To assessthe systemicabsorptionand toxicityand relativeskin irritancyof test materialswhen appliedto the skinof rabbits
3. Regulatory Com2liance This study will be conductedin accordancewith the followingGood LaboratoryPractice Regulations/Standards/Guidelines:
[ ] Conduct as a Nonregulated Study CXI 21 CFR 58 (FDA)
40 CFR 160 (EPA-FIFRA) 40 CFR 792 (EPA-TSCA) C(81)30(Final)(OECD) 59 Nohsan No. 3850 (Japanese NAFF) NotificationNo. 313 (JapaneseMOHW)
All proceduresin this protocolare in compliancewith the Animal WelfareAct Regulations. In the opinionof the Sponsorand study director,the study does not unnecessarilyduplicateany previous work.
4. Ouality Assurance The protocol,study conduct,and the final reportwill be auditedby the QualityAssurance Unit in accordancewith HazletonWisconsin (HWI) StandardOperating Procedures(SOPS) and policies.
5. Test Materials
A. Identification I. T-6054 2. T-6051
B. PhysicalDescription 1. (To be documentedin the raw data) 2. (To be documentedin the raw data)
C. Purityand Stability The Sponsor assumes responsibilityfor purityand stability determinations(includingunder testconditions).
D. Storage Room temperature
Page 34 of 46
TP3016.AB Page 4
E. Reserve Samples Reserve sample(s)of each batch/lotof test and control materialswill be taken for this study.
The test and control material reserve samples will be stored at HWI in a freezer set to maintain a temperature of -20*C IOOC for 10 years per HWI SOP. The Sponsor will be contacted after. 10 years for disposition in accordancewith the appropriate regulatory Good Laboratory Practices.
F. Retention Any unused test materials will be returned to the Sponsor after completionof the in-life phase of the study.
G. Safety Precautions As required by HWI SOPs and policies
6. Control Material
A. Identification Distilledwater
B. Physical Description Clear, colorlessliquid
C. Purity and Stabili-t-Y The purity and stabilityof this manufacturedmaterialis considered to be adequate for the purposes of this study.
D. Storage Conditions Room temperature
E. Reserve Samples See Section 5. E. Reserve Samples
F. Retention Any remaining control material may be used for other testing and will not be discardedafter issuanceof the finalreport.
G. Safety Precautions As required by HWI SOPs and policies
7. Experimental Design
A. Animals
(1) Species Rabbit
(2) Strain/Source Hra:(NZW)SPF/HRP, Inc.
Page 35 of 46
TP3016.AB Page 5
(3)A-cLe-aItnitiation Adult
(4)Weightat Initiation 2.0 to 3.0 kg
(5)Number and Sex 15 males and 15 females
(6) Identification Individualnumberedear tag
(7) Husbandry
(a) Housing Individually,in screen-bottomstainlesssteel cages (heavy gauge)
(b) Food A measured amount of Laboratory Rabbit Diet HF #5326 (PMI Feeds,Inc.). The food is routinelyanalyzedby the manufacturerfor nutritionalcomponentsand environmentalcontaminants.
(c)Water Ad 7fbitum from an automatic system. Samples of the water are analyzedby HWI for total dissolvedsolids, hardness,and specifiedmicrobiologicalcontent and for selectedelements,heavy metals, organophosphates,and chlorinatedhydrocarbons.
(d) Contaminants There are no known contaminantsin the food or water that would interferewith this study.
(e) Environment Environmentalcontrols for the animal room will be set to maintain a temperatureof 19*C to 23*C, a relativehumidity of 50% +20%, and a 12-hour light/12-hourdark cycle.
(f) Acclimation At least 7 days
(8) Selectionof Test Animals Based on health and body weight according to HWI SOPS. An adequatenumber of extra animalswill be purchasedso that no animalin obviouslypoor healthis placedon test. The animalswill be placed into study groups using a stratifiedbody weight randomizationprogramwithin ni,ne days of study initiation.
Page 36 of 46
TP3016.AB Page 6
(9) Justificationfor Species Selection Historically,the New Zealand White albino rabbit has been the animal of choice because of the large amount of background information on this species.
B. Dose Administration
(1) Test Groups
GrouD
Dose Level Test Material --(mg/kq)_
I (Control)Distilledwater
2
T-6054
3
T-6054
4
T-6054
5
T-6051
0*
0.128 1.28 12.8
Number of Animals Males Females
3
3
3
3
3
3
3
3
3
3
To be administered at a dose volume of 2.0 mL/kg
To be administered as a 10.0-cm x 10.0-cm piece of test material(fabric)
(2) Preparation of Exposure Area On the day before test material application, the back and, if necessary (to obtain unblemished skin), the flanks of
each rabbitwill be clippedfree of hair with an electric clipper. The shaved area will constituteapproximately 20% of the total body surface area. The treatmentsites (intactskin)will be inspectedfor interferinglesions, irritation,or defects that would precludethe use of any
of the animals. The animals will be clipped as needed throughout the study.
(3) Dose Administration All animalswill receive a single administrationof the respectivetest or control material. The day of treatment
will be designatedas Day 1. The respectivedoses for the animals in Groups 1, 2, 3, and 4 will be based on the animal's body weight just before administrationand spread
onto the area of exposure in a thin and uniform layer. The Group 1, 2, 3, and 4 materialswill be applied undiluted. The Group 5 material will be applied as a 10.0-cm x 10.0-cm piece of the test material moistened with distilledwater. The area of application
(Groups 1-5) will be covered with a 10-cm x 10-cm gauze bandage secured with paper 0tape around all etdges and overwrapped with Saran Wrap and Elastoplast tape to provide an occlusivedressing. The rabbitswill be collared during the 24-hour applicationperiod.
Page 37 of 46
TP3016-AB Page 7
(4) Reason for Route of Administration The dermal route is a potential route of exposure in humans.
(5) Removal of Test Material Approximately24 hours after test or control material application the bandages and collars will be removed and. the residual test material will be removed using water or an appropriatesolvent, if necessary.
C. Observation of Animals
(1) Clinical Observations For clinicalsigns before test or control material administrationand for clinicalsigns and mortalityat approximately1, 2.5, and 4 hours after test material administration(Day 1) and daily thereafterfor clinical signs, and twice daily (a.m.and p.m.) for mortalityfor at least 28 days. Observations may be extended when directed by the study director.
(2) Reading of Dermal Irritation Before test or controlmaterialadministrationthe initial dermal irritationreading will be made and recorded as the Day 1 reading (Attachment1). Additional dermal irritation readings will be made approximately30 minutes after bandage removal (Day 2) and on Study Days 4 and 8. Individualdermal irritationrecords will be maintained for each animal.
(3) Body Weights For randomization,before test or control material application (Day 1), on Day 29, and at unscheduleddeath (when survival exceeds 1 day)
(4) Sample Collections
(a) Freauency Before initiation(Day 1), approximately24 hours post-dose (Day 2), Days 4, 8, 15, 22, and at experimentaltermination(Day 29)
(b) Number of Animals All
(c) Method of Collection Blood samples (approximately4 mL) will be collected from the marginal ear vein of either ear on Days 1, 2, 4, 8, 15, and 22. Approximately20 mL of blood (actualvolume to be documented in the raw data) will be obtained from the posterior vena cava of each animal sacrificed in a moribund conditionor
Page 38 of 46
TP3016.AB Page 8
sacrificedat the time of necropsy (Day 29). The sampleswill be stored at room temperature and then centrifuged,and the separate serum and cellular fractionsstored in a freezer set to maintain -20*C tlOOC. The separated serum and cellular fractionswill be sent frozenon dry ice to the Sponsor after experimental termination.
Samples will be shipped to:
James D. Johnson 3M E.E. & P.C. Bldg. 2-3E-09 935 Bush Avenue St. Paul, MN 55106
James D. Johnson or alternatewill be notified by telephoneat (612) 778-5294 prior to the shipmentof the samples.
D. Pathology
(1) Unscheduled Sacrifices and Deaths Any animal dying during the study or sacrificedin a moribund conditionwill be subjected to an abbreviated gross necropsyexamination and all abnormalitieswill be recorded. Animals in a moribund conditionwill be anesthetizedwith sodium pentobarbital(via injectionin the marginalear vein), bled via the vena cava, and exsanguinated. Tissues, as described in section D. Pathology,(3) Sample Collection,will be collected. After necropsy,the animals will be discarded.
(2) Scheduled Sacrifice At terminationof the experimentalphase (Day 29), surviving animals will be anesthetizedwith sodium pentobarbital(via injectionin the marginalear vein), bled via the vena cava, exsanguinated,and subjected to an abbreviatedgross necropsy examination. The animals will be necropsiedin random order and all abnormalitieswill be recorded.
(3) Sample Collection The sites of test and control materialapplicationwill be washed with lukewarm tap water prior to the necropsy procedure. The whole liver, bile, an approximate1-cm x 1-cm sectionof the dermal applicationsite from all animals, and both kidneys from the first male and female necopsied in each group will be collected and immediately placed in a freezerset to maintain a temperatureof -20*C tlO*C. After necropsy,the animalswill be discarded.
Page 39 of 46
TP3016.AB Page 9
The tissues (liver,bile,dermal applicationsite, kidneys)will be sent frozenon dry ice to the Sponsor after experimentaltermination. The samples will be shippedto the person listed in Section 7.C.(4).(c). The Sponsoris responsiblefor the retention and dispositionof the samples.
E. StatisticalAnalyses No statisticalanalyses are required.
8. Report X final report includingthose items listed below will be submitted.
Description of the test and control materials Description of the test system Procedures Dates of experimentalinitiationand termination Tabulation of mortality data by sex and dose level Descriptionof any toxic effects/dermalirritation Tabulation of mean body weights by sex and dose level Gross pathology findings/grosspathology report
9. Location of Raw Data, Records, and Final Report 5riginal data, or copies thereof,will be availableat HWI to facilitate auditingthe study during its progressand before acceptance of the final report. When the final report is completed, all original paper data, includingthose item listedbelow will be retained in the archives of HWI according to HWI SOP.
Protocol and protocol amendments Dose preparation records In-life records
Body weights Dose administration Observations Anatomical pathology records Sample collection records Shipping records Study correspondence Final report (originalsigned copy)
The following supportingrecords will be retained at HWI but will not be archived with the study data.
Animal receipt/acclimationrecords Water analysis records Animal room temperature and humidity records Refrigerator and freezer temperaturerecords Instrument calibration and maintenance records
Page 40 of 46 PROTOCOL APPROVAL
TP3016.AB Page 10
@ohn L. Butenhoff, PhD
Date
Sponsor's Representative
3M Toxicology Service Medical Department
Steven M. Glaza
Date
Study Director
Acute Toxicology
HazletonWisconsin, Inc.
Representa ve
Date
Quality Asvurance Unit
HazletonWisconsin, Inc.
(6329-133.protdsk2)
Page 41 of 46
TP3016-AB Page 11
Attachment I
Scoring Scale for Acute Demal Reactions
Erythema
0 - None I - Slight 2 - Moderate 3 - Severe
Edema
0 - None 1 - Slight(barelyperceptibleto well definedby defin*ltreaising) 2 - Moderate (raisedapproximately1 mm) 3 - Severe (raisedmore than I mm) Atonia
0 - None I - Slight(slightimpairmenotf elasticity) 2 - Moderate(slow returnto normal) 3 - Marked(no elasticity)
Desguamation
0 - None 1 - Slight(slightscaling) 2 - Moderate(scalesand flakes) 3 - Marked (pronouncedflakingwith denuded areas) Coriaceousness
0 - None I - Slight(decreasein pliability) 2 - Moderate(leatherytexture) 3 - Marked (toughand brittle)
FissuLLng
0 - None I - Slight(definitecracksin epidermis) 2 - Moderate(cracksin dermis) 3 - Marked (crackswith bleeding)
Page 42 of 46
HAZLEECC:N
W IS C 0 N S IN
POST OFFICE BOX /545
MADISON,WL
53707 75,15
CORNING Ctxnpanv
PROTOCOL TP3016.AB
Single-Dose Dermal Absorption/ToxicityStudy of T-6054 and T-6051 in Rabbits
HWI 6329-133
Sponsor
3M Toxicology Service Medical Department
3M Center, Bldg. 220-2E-02 P.O. Box 33220 St. Paul, MN 55133-3220
Sponsor's ReRresentative
John L. Butenhoff, PhD
Contractor Hazleton Wisconsin, Inc 3301 Kinsman Boulevard Madison, Wl 53704
Study Director Steven M. Glaza
Amendment No. I
This amendment modifies the following portions of the protocol:
Effective December 23, 1994
In order to obtain a measurable amount of test material (T-6054)for applicationin Groups 2, 3, and 4, the test materialwill be dilutedwith sterile water for injection and applied at a common dose volume of .01 mL/kg. Modify the following two sections of the protocol (protocol amendment items #1 and 02) to indicate these changes.
I. Page 6. 7. Experimental Design; B. Dose Administration;(1) Test Groups. Add the following shaded additionsto this section:
Grout)
Test Material
Dose Level Number of Animals
(mg/kq) Males
Females
1 (Control) Distilledwater
0*
3
3
2
T-6054
0. 12a@@.,', 3
3
3
T-6054
1. 28"'
3
3
4
T-6054
12.8.*...
3
3
5
T-6051
3
3
To be administered at a dose volume of 2.0 mL/kg To be administered as a 10.0-cm x 10.0-cm piece of test
material(fabric)
P tin rie EXPF,FSS
608 2 4 1 4-171
M A IL
F L Iv E 8 y
1) 1 K IN S tviA rl ft1 1)
ce Ni 1)1 1-(11
tiU ti wi
1 2'2 @310 4
Page 43 of 46
Amendment No. 1
HWI 6329-133 Page 2
2. Page 6. 7. Experimental Design: B. Qoso AdMi@nistration-,-(3I)ose Administration. Delete the fourth sentencein this sectionand then add the followingas the third and fourth sentencesto this section.
The control material (Group1) will be appliedundiluted. The dose for each animal in Groups 2, 3, and 4 will be diluted with sterile water for injectionand applied at a dose volume of .01 mL/kg.
Effective December 28, 1994
Sterilewater for injectionwill replacedistilledwater as the control material based on the fact that sterilewater for injectionwill also be the vehicle in the test mixtures for Groups 2, 3, and 4 (see protocol amendment items #1 and #2). Modify the followingthree sectionsof the protocolto indicate this change.
3. Page 4. 6. Control Material-,A. Identification. Replace distilled water with the following:
SterileWater for Injection
4. Page 4. 6. Control Material% D. Storage Conditions. Replace Room temperature with the following:
Refrigerated
5. Page 6. 7.-LX-DerimentalDesign; B. Dose Administration; (1) Teat Groups. Modify the table in this sectionwith the following shaded change:
Group
Test Material
1 (Control) 2 3 4
5
W,,e w ater 54
T-6054 T-6054 T-6051
Dose Level Number of Animals (mg/kq)- Males Females
0*
3
3
0.128*** 3
3
1.28*** 3
3
12.8***
3
3
3
3
To be administered at a dose volume of 2.0 mL/kg To be administered as a 10.0-cm x 10.0-cm piece of test material(fabric)
To be administered at a dose volume of .01 mL/kg
page 44 of 46
Amendment No. 1
PROTOCOL APPROVAL
2.
John L. Butenhoff, PhD
Date
Sponsor's Representative
3M Toxicology Service Medical Department
Steven M. Glaza
Date
Study Director
Acute Toxicology
Hazleton Wisconsin, Inc.
@eprei'e'ntatifte
Date
Quality AssfiranceUnit
Hazleton Wisconsin, Inc.
(6329-133.Aml.dsk2)
HWI 6329-133 Page 3
Page 45 of 46
HAZLE-CC:N
W IS C 0 N S IN
POST OFFICF flOX 7545
MADISON.WI
1,@3707 /545
j CORNING Company
PROTOCOL TP3016.AB
Single-Dose Dermal Absorption/Toxicity Study of T-6054 and T-6051 in Rabbits
HWI 6329-133
Sponsor
Contractor
3M Toxicology Service Medical Department
3M Center, Bldg. 220-2E-02 P.O. Box 33220
St. Paul, MN 55133-3220
Hazleton Wisconsin, Inc. 3301 Kinsman Boulevard Madison, Wl 53704
Sponsor's Representative
Study Director
John L. Butenhoff, PhD
Steven M. Glaza
Amendment No. 2
This amendment modifies the followingportions of the protocol:
Effective January 24, 1995
At the request of the Sponsor, the weights of tissues collectedand the volume of bile collectedwill be documentedin the raw data. These weights and volumes will be included with the sample shipment. Modify the following sections of the protocol to includethese additions.
1. Page 8, 7. Experimental Design; D. Patholooy; (3) Sample Collection. Modify the second sentence in the first paragraphof this section with the following underlined addition:
The whole liver, bile, an approximate 1-cm x 1-cm section of the dermal applicationsite from all animals, and both kidneys from the first male and female necropsied in each group will be collected,weighed (volumeonly determinedfor bilel and immediatelyplaced in a freezer set to maintain a temperatureof -20*C 10*C.
2. Page 9. 7. Experimental Design; D. Pathology; (3) Sample Collection. Modify the second sentence in the second paragraph of this section with the following underlinedaddition:
The samples and their correspondingweights or volumes will be shippedto the person listedin Section7.C.(4).(c).
P h o n e 606 EX P R E S
F Fi'f 33i*lI
F a t i(,,i ).1 1 1227
k!
tl.-I I
MADISON
V%O 1
F)1/04
Page 46 of 46
Amendment No. 2
HWI 6329-133 Page 2
3. Page 9, 8. Report. Add the followingto this section: Individualanimal tissueweights and bile volumes
PROTOCOL AMENDMENT APPROVAL
John L. Butenhoff,PhD
Date
Sponsor's Representative
3M Toxicology Service Medical Department
Steven M. Glaza
Date
Study Director
Acute Toxicology
Hazleton Wisconsin, Inc.
Representat e
Date
Quality Assirance Unit
HazletonWisconsin, Inc.
(6329.-133.Am2.dsk2)
9.1.2 AnalyticaplrotocolAMDT-013195.1
3M EnvironmentaLlaboratory
Protoco-lAnalyticaSltudy
Single-DosDeermal Absorption/ToxicSituydyofT-6051and T-6054in Rabbits
In-VivoStudyReferenceNumber: HWI#6329-133
StudyNumber: AMDT-013195.1 TestSubstance:FC-129(T-6051andT-6054)
Name and AddressofSponsor:
3M SCD Division 367 Grove Street St.Paul,MN 55106
Name
and Address of TestingFacility: 3M EnvironmentalTechnology and Services 935 Bush Avenue St.Paul,MN 55106
Proposed InitiatioDnate: July25, 1995 Proposed Completion Date: August 25, 1995
Method Numbers AMDT-M-1-0,
AMDT-M-2-0,
AMDT-M-4-0, AMDT-M-5-0,
AMDT-M-8-0,
and Revisions: Thermal Extractionof Fluorideby Means of a Modified Dohrmann DX2000 Organic HalideAnalyzer-Liver FluorideMeasurement by Means of an Orion EA940 Expandable
Ion Analyzer Extractionof Fluorochemicalsfrom Rabbit Liver Analysisof RabbitLiverExtractforFluorochemicalsUsing
ElectrosprayMass Spectrometry Analysisof FluorideUsing the SkalarSegmented Flow Analyzer with Ion SelectiveElectrode
Author:James D. Johnson Approved By:
J mes D7rgnstoonr
Date
tu@dy Dij
John Butenhoff,PhD
Date
Sponsor Representative
1.0 PURPOSE
ThisstudyisdesignetdoprovideinformatiaosntowhetherFC-129(T-6051and T-6054) isdermallyabsorbed. The analyticaalspectof thisstudyisto determine fluorine-containicnogmpounds (biotransformatipornoducts)inthetissueand serum of rabbitsatvarioustimespost dose dermal applicatioonf FC-129.
2.0 TEST MATERIALS
2.1Test,Control,and ReferenceSubstancesand Matrices 2.1.1AnalyticalReferenceSubstance: FC-95, lot161 or 171. They are equivalent. 2.1.2AnalyticalReference Matrix: Bovine liverand bovine serum 2.1.3Analytical Control Substance: None 2.1.4Analytical Control Matrix: Bovine liverand bovine serum
2.2 Source of Materials: 3M ICP/PCP Division(2.1.1),grocerystore(2.1.2,2.1.4liver)S,igma Chemical Company (2.1.22,.1.4-serum)
2.3 Number of Test and Control Samples: Tissuesand fluidfrom 24 testanimals and 6 controlanimals. Tissuesand fluidsincludeliver,serum,cellulafrraction, dermal applicationsiteand bile.Analysisof thesetissueswillbe atthediscretioonf the Study Director.
2.4Identificatioonf Test and Control Samples: The samplesare identifieudsing theHWI animal identificatinounmber which consistsof a lettearnd fivedigit number, plusthetissueidentitaynd day identit(yserum).
2.5 Purity and Strength of Reference Substance: To be determinedby Sponsor.
2.6 Stabilityof Reference Substance:To be determinedby Sponsor.
2.7 Storage Conditions forTest Materials:Room temperature(2.1.1), -20 100C (2.1.22,.1.4).Testand Controlsamples willbe receivedaccordingto AMDT-S-10-0.
2.8 Dispositionof Specimens: Biologicatlissuesand fluidswillbe retainedper GLP Regulationforthetime periodrequiredforstudieslongerthan 28 days.
2.9 Safety Precautions: Refer to appropriateMSDS. Wear appropriatelaboratory attire.Use cautionwhen handlingknivesforcuttingthe samples.
2
3.0 EXPERIMENTAL -Overview
The tissuesfrom animalsdosed as described(HWI#6329-133), areavailablefor analysisforfluorinecompounds. At thediscretioonf theStudy Director,a seriesof analyticatlestscan be performed. The screeningforfluoridein livervia combustion (seeMethods--nextsection)istheappropriateanalysisto presentdefinitivdeatafor fluorineinthe liver.To confirm theidentitoyf fluorine-containicnogmpounds presentin liver(ifany at28 days)and serum atvariousintervalse,lectrospraymass spectrometrymay be selectedas one of the analyticatlechniquesemployed. Not all of thetissuesand fluidsamples willbe analyzed.When sufficiendtatahas been collectedto meet theobjectivesof thestudy intheopinionof theStudy Director, analysiswillcease.
4.0 EXPERIMENTAL
- Methods
4.1Liver and Serum screeningmethods: (attached)
4.1.1AMDT-M-1-0, Thermal Extractionof Fluorideby Means of a Modified Dohrmann DX2000 OrganicHalideAnalyzer-Liver
4.1.2AMDT-M-2-0, FluorideMeasurement by Means of an Orion EA940 Expandable Ion Analyzer
4.1.3AMDT-M-4-0, Extractionof Fluorochemicalsfrom RabbitLiver
4.1.4AMDT-M-5-0, Analysisof RabbitLiverExtractforFluorochemicals Using ElectrosprayMass Spectrometry
4.1.5AMDT-M-8-0, Analysisof FluorideUsing the SkalarSegmented Flow Analyzer with Ion SelectiveElectrode
5.0DATA ANALYSIS
5.1Data Reporting: Data willbe reportedasa concentratio(nweight/weighto)f fluorideper tissueor fluid,or as FC-95 (electrospramyass spectrometry)perunitof tissueor fluid.Statisticused,atthediscretioonf theStudy Director,may include regressionanalysisof serum concentrationswith time and averagesand standard deviationsof concentrationfsordifferendtose groups. Ifnecessary,simple statistictaelstssuch as Student'sttestmay be appliedtodeterminestatistical difference.
3
6.0MAINTENANCE OF RAW DATA AND RECORDS 6.1Raw Data and Records:Raw dataa,pprovedprotocola,ppropriastpeecimens, approved finalreport,and electronidcatawillbe maintainedinthe AMDT archives. 7.0 REFERENCES 7.1 AMDT-S-10-0, Sample TrackingSystem 8.0 ATTACHMENTS 8.1ANMT-M-1-0, Thermal Extractionof Fluorideby Means of a Modified Dohrmann DX2000 OrganicHalideAnalyzer-Liver 8.2ANMT-M-2-0, FluorideMeasurement by Means of an Orion EA940 Expandable Ion Analyzer 8.3AMDT-M4-0, Extractionof Fluorochemicalsfrom Rabbit Liver 8.4AATDT-M-5-0, Analysisof RabbitLiver ExtractforFluorochemicalsUsing ElectrosprayMass Spectrometry 8.5 AMDT-M-8-0, Analysisof FluorideUsing the SkalarSegmented Flow Analyzer with Ion SelectiveElectrode
4_
3M Environmental Laboratory
Method
Thermal Extractionof Fluorideby Means of a Modified Dohrmann DX2000 Organic HalideAnalyzer -Liver
Method IdentiflcatNiuomnber: AMDT-M-1 RevisionNumber: 0
AdoptionDate: /6-f-CCRevisionDate: None
Author:Rich Youngblom
Approved by:
13
roup Lear
Dafe
roUP L(
QualityAssurance
Date
Software:MSWord5.la
AffectedDocuments: ANIDT-M-2 FluoridMeeasurementby MeansofanOrionEA940 Expandable[onAnalyzer
AMDT-EP-3 RoutineMaintenanceofa ModifiedDohrmann DX2000 OrganicHalideAnalyzer
1.0 SCOPE. APPLICABLE COMPOUNDS, AND MATRICES
1.1Scope: Thismethod isfortheoperatioonfa Dohrmann DX2000 when itisusedtoextract fluoridferom variousmatricesT.he fluoridiestypicallcyollecteidnTISAB solutiofnoranalysis withan ionselectiveelectrode. 1.2ApplicableCompounds: Fluorochemicalosrotherfluorinatecdompounds. 1.3rvlatriceBsi:ologicatlissuesp,articularlliyver.
2.0 KEYWORDS
2.1Fluoridef,luorine,xtractiopny,rolysisi,onizatioino,nselectiveelectrodeD,ohnnann, halide, DX2000, fluorochemicals.
3.0 PRECAUTIONS
3.1 Glasswareand exhaustgasescan be extremelyhot. 3.2Glasswareisfragileb,rokenglassmay causeinjuries. 3.3Pressurizedgases,propercompressedgas handlingpracticersequired. 3.4Solventbased samplesmay flashm,ay need toallowthem todrydown beforestartinngm. 3.5Potentiabliohazardsdue tothebiologicamlatrices.Use appropriatpeersonalprotective equipment.
4.0 SUPPLIES AIND MATERIALS
4.1Compressed Oxygen, Hydrocarbon free,regulatetdo30 PSI. 4.2Compressed Helium,High PurityGrade,regulatetdo45 PSI. 4.3QuartzglasssampleboatwithTeflonTmtubing,Dohrmann 890-097or equivalent. 4.4Quartzglasscombustiontube,RelianceGlass G-9405-012 orequivalent. 4.5Orion940999TotalIonicStrengtAhdjustmentBuffer(TISAB II)orequivalent. 4.6Sample collectiovnialsH,DPE. 4.7NElli-QTMwater 4.8Polystyrenepipettes. 4.9ActivatedCharcoalE,. Merck 2005 orequivalent. 4.10HamiltonSyringeor equivalent. 4.11Miscellaneouslaboratorgylassware
5.0 EQUTPNIENT
5.1Rosemount Dohrmann DX2000 OrganicHalideAnalyzer,modifiedforfluorideextraction. 5.2IBM compatible386 or486 computer. 5.3DX2000 softwarev,ersion1.00,modifiedforfluorideextraction. 5.4Excel Spreadshee@version5.0or greater
6.0 INTERFERENCES
6.1 Sample sizeislirriiteodapproximately150mg, dependingon samplemoisturecontent.This may varyfrom matrixtomatrix.
2
7.0 SAMPLE HANDLING
7.1Samples arenottobe handledwithbarehands. Fluoridemay leachfrom theskintothe sample. Use forcepsor probe totransfetrissues. 7.2Samples ofliverarecutfrom frozenliverand placedina taredand labeledweigh boat.Use a cleanscalpeland cuttinbgoard.The cuttinbgoardand scalpeslhouldbe cleanedwithwater, methanol,or methanol-watersolutioanftereachliveriscut.
8.0 CALIBRATION AND STANDARDTZATION
8.1PreparatioonfCalibratiSotnandards
8.1.T1hestandarrdesquirefdoreachprojewcitlnleedtobeapproprifaotrethaitndividuparloject. Refertoprotocolforthatproject. 8.1.2Typically50-500 ppm FC-95 inmethanolstandardsareused. 8.1.3For rabbiltiverstudiesu,sebeefliverasthematrix.Cut a pieceof frozenbeeflive(r100150mg) and weigh itina labeledand taredweigh boat.
8.2 Calibration-Overview
The normal calibratioinsthefluoridceurve(AMDT-M-2). However, ifan optionalspikedliver curveisrequiredtheprocedurelistebdelow isused.
8.2.1A calibraticounrvefortheDX2000 isgeneratedby spflcinsgampleswithknown standards and combustingthem usingthesame methods and matrixtypeasthesamplestobe tested. 8.2.2Typicallyt,hreereplicateosfeachstandardand fiveconcentratioonfsstandardswillbe spiked. 8.2.3Standardcurvewillbe plotteadsMass SpikedF (ug)on thex-axisand StandardMass RecoveredF (ug)on they-axis.Generatea regressiocnurveand calculatteheequationfortheline and ther2 value. 8.2.4Mass SpikedF (u,,=c,()Amount spikedinmL) x (Conc.ofstandardinppm) x (0.6004)*
*FC-95 is60.04% F therefor0e.6004isthefactorusedtoconvertFC-95 toF 8.2.5StandardMass RecoveredF (ug)= (TISAB volumeinML) x (Orionreadinginppm)
8.3Calibratio-nProcedure
8.3.1StartUp 8.3.1.1Run 2 ormore CleanCycleswhen startinignstrumenetachday.More cleancyclesmay be usediftheprevioussamplescontainedhighconcentrationosffluoride.
8.3.2Blanks 8.3.2.1Preparesampleusingthesame methods and typeofmatrixasthetestsample. 8.3.2.2For rabbitstudiesu,sebeefliverasthematrix.Prepareatleast3 samplesofbeefliver (100- 150 mg) forblanks. 8.3.2.3PutsampleinDohrmann boat.Combust each sampleasdescribedinsection9.0and analyzesampleaccordingtomethod AMDT-M-2 fortheionselectiveelectrodaenalysis.
3
8.3.2.4For rabbitstudiest,hemeter readingfora blanksampleshouldbe 0.03 ppm or lower beforeproceedingwiththecalibrationB.um samplesuntitlhislimitisreached,or untilinthe judgement of theoperatorthereadingisstablewithrespecttohistoricarleadings(previous48 hours). 8.3.2.5For non-rabbitstudiest,heblankreadingsshouldreacha predeterminedion concentration beforeproceedingwith thecalibration. 8.3.2.6Itmay be necessarytomix approximately50 mg of charcoalwiththesample toaid combustion.
8.3.3 Standard Curve 8.3.3.1Weigh outatleast15 matrixsamples(5standardswith3 replicateesach)intaredand labeledweigh boats.For rabbitstudiesw,eigh 100-150mg beefliversamples.Record weightsin studydata.Storethematrixsampleson dryiceor icepacks tokeep them frozenuntilused. 8.3.3.2Placeweighed beefliversample inDohrmann sample boat. 8.3.3.3Startwith theloweststandardconcentrationU.sing a Hamfiton syringe,ejecta fixed quantityof thestandardon orin thematrix.For rabbitstudiesu,se 4 uL ofstandardand ejectiton or inthebeefliver. 8.3.3.4At least3 replicatesshouldbe usedforthelowest standardconcentrationm;ore replicates may be used atthediscretioonf theanalyst. 8.3.3.5Combust thesample asdescribedinsection9.3and analyzeaccordingto AMDT-M-2. 8.3.3.6Run all15 standards.Ifone replicatiessignificantdliyfferenftrom theothertwo replicatersu,n anothersample forthatstandard.Indicateindatathatthenew replicatreeplacesthe oldreplicataend thatthenew replicatweillbe used tocalculatteheregressioncurve. 8.3.3.7When allstandardshave been run,calculattehe r2.r2 must be atleast0.95.Ifitisnot at least0.95,consultwith supervisor. 8.3.3.8A new standardcurveshouldbe run when thecombustiontubeorsample matrixis changed. New standardcurvemay alsobe run atthediscretioonf theanalyst.
8.4 StorageConditionsforStandards
8.4.1Storagerequirementsforstandardsaredependenton theindividualstandardsused. Typically,standardsarestoredatroom temperatureinplastisccrew topbottles. 8.4.2New FC-95 standardsshouldbe preparedatleastonce a month.
9.0 PROCEDURES
9.1TypicalOperating Conditions: 9.1.1Combustion tubetemperature= 950'C. 9.1.2Oxygen and Helium flow 50 cc/minute. 9.1.3Vaporization/Dryintgime 240 seconds. 9.1.4Bake time= 300 seconds.
9.2StartUp Procedure: 9.2.1Iftheprogram isnotstarteds,tartheEOX program on thePC. 9.2.2Open theSYSTEM SETUP window. 9.2.3Put thefurnacemodule and thecellintheREADY mode. 9.2.4Close theSYSTEM SETUP window.
4
9.2.5When theoven has reachedtheREADY temperaturer,un theCLEAN found intheCELL CHECK menu.
9.2.6 See AMDT-EP-3 fordetailosftheDohrmann software.
BOAT program
9.3Sample ExtractionProcedure: 9.3.1Open theSAM.PLE HATCH and placethesample intheBOAT. Itmay be necessaryto mix approximately50 mg of charcoalwiththesample toaidcombustion.Ifthisisdone,charcoal should alsobe mixed inwhileestablishintghebaselineand when generatingthestandardcurve. 9.3.2 Close SAMPLE HATCH. 9.3.3Add appropriatveolume ofTISAB solutioonr 1:1TISAB:Milli-QTI"watermixturetoa labeledsample collectiovnial.Typically0.6mL to 15mL areused. For rabbitstudiesu,se 1.0or 2.0niL of 1:1 TISAB:Milli-QT@,wlatermixture.
9.3.4Placethevialsothatthetipof theCOMBUSTION TUBE isintheTISAB atleast0.25 inches.Gases releaseduringpyrolysimsust bubblethroughtheTISAB. 9.3.5Run theEOX-SOLIDS program found intheRUN menu. 9.3.6When theEOX program isfinishedr,emove thecollectiovnialfrom thecombustiontube. 9-3.7IfundilutedTISAB was used tocollecthesample,add an equalvolume ofNfilli-QTwMater totheTISAB tomake 1:1 TISAB:Milli-QTm. 9.3.8Rinse theend of thecombustiontubewithMilli-QTMwaterand wipe with a KIMWIPE to remove any TISAB remainingon thetube. 9.3.9Open the sample hatchand remove any remainingash from theboat. Ash can be removed witha cottontippedapplicatoorr vacuumed out.Itmay be necessaryto scrapparticleosffthe bottom witha spatulaor othersimilardevice.A dropof Milli-QTbwlater may be added tothe boattoaidintheClean Cycle. 9.3.10 Closethehatch. 9.3.11 Run the CLEAN BOAT program. 9.3.12 Sample isready foranalysisby ionselectivelectrod(eAMDT-M-2).
9.4 Sample Calculations
9.4.1 Use thestandardcurvetocalculattehesample value. 9.4.2Sample Mass RecoveredF (ug)= (TISAB volinmL) x LQrionreadinginRpm -intercepo
(Slope)
10.0 VALIDATION
10.1QualityControl 10.1.D1ailyStartUp CheckSamples:Oncethestandarcdurveisestablisheeadc,hdayof analysisisstartedby analyzingQC samples.The QC samples areto be thesame as thelowest concentratiosnpikedsamplesused togeneratethestandardcurve.Each concentratiomnust be done in triplicautnelessthefirsttwo replicateasrewithin20% of thestandardcurve,thena third replicatiesnot necessary.
10.2 Precisionand Accuracy: See method developmentanalysisand sample analysisin FluorideNotebooks 2,3,and 5. Precisionand accuracyvarieswhen analyzingsamplesof different matricesand differenrteferencecompounds.
10.3 Other ValidationParameters:NA
11.0 DATA ANALYSIS
11.1Calculations
11.1.1For thestandardcurve,useregressioannalysisinExcel,version5.0or greater. 11.1.2To calculattehefluoridceontractioinnthesample,seemethod AMDT-M-2.
11.2 Analyzing theData
11.2.1r2must be atleast0.95orgreater".Outliersm"ay be excludediftwo of thethreereplicates arewit@dn20% of eachotherand theoutlieirsgreaterthan200% oftheaverageofthosetwo or lessthan50% of theaverageofthosetwo. Any suchoutliersshouldbe pointedoutinthedataand notedintheFinalReportalongwiththereasonitwas considereadn outlier.
12.0 ATTACHMENTS
None
13.0 REFERENCES
13.1Rosemount Dohnnann DX2000 OrganicHalideAnalyzerOperator'Msanual (Manual 915349,revisioBn, December 1993) 13.2 AMDT-M-2 FluorideMeasurementby Means ofan OrionEA940 ExpandableIon Analyzer 13.3AMDT-EP-3 RoutineMaintenanceof a ModifiedDohrmann DX2000 OrganicHalide Analyzer
14.0 REVISIONS
Revision Numbe
Reason forChancre
Revision Date
3M EnvironmentalLaboratory
Method
FluorideMeasurement by Means ofan Orion EA940 Expandable Ion Analyzer
Method IdentificatioNnumber: AMDT-M-2
RevisionNumber: 0
Adoption Date:
RevisionDate: None
Author Rich Youngblom
ApprovedBy:
G@, Leader
/-3/ Date
QualityAssurance
Date
Software: MS Word 5.1a
AffectedDocuments: AMDT-M-1 Thermal Extractionof Fluorideby Means of a Modified Dohnnann DX2000 Organic HalideAnalyzer
1.0 SCOPE, APPLICABLE COMPOUNDS, AND MATRICES
1.1SCOPE: This method isforthecalibratioannd operationof an Orion EA940 Expandable Ion Analyzer.
1.2APPLICABLE COMPOUNDS:
Fluoride.
1.3APPLICABLE pH of 6.0.
MATRICES:
Liquidsamplesin an appropriatbeuffersolutionP.referred
2.0 KEYWORDS
2.1 Fluoride,fluorinei,on selectiveelectrode
3.0 PRECAUTIONS
--
3.1 No hazardsidentifiewdiththismethod.
4.0 SUPPLIES AND MATERIALS
4.1Orion 940999 TotalIonicStrengthAdjustment BufferII(TISABII) or equivalent. 4.2Orion Model 900001 electrodefillinsgolution(AgCl) orequivalent. 4.3 Orion 940907 100 ppm fluoridestandardor equivalent. 4.4 NElli-QTIlwateror equivalent.
4.5Magnetic stirbars. 4.6 Lab tissues. 4.7 Sample collectiovnials. 4.8Plastic100 mL volumetricflasks. 4.9 Polystyrenepipettes. 4.10 Miscellaneouslaboratoryglassware.
5.0 EQUIPNIENT
5.1 Orion Model EA940 Expandable Ion Analyzer or equivalent. 5.2 Orion Model 960900 SolidStateCombination Fluorideelectrodeor equivalent. 5.3 Magnetic StirPlate. 5.4IBM compatible386 or 486 computer (onlyneeded ifusingOrion 3E software). 5.5Orion RS232 interfacceable(onlyneeded ifusingOrion 3E software). 5.6MicrosoftExcel 5.0(onlyneeded ifusingOrion 3E software).
6.0 INTERFERENCES
6.1 Itisreconunended thatthepH be ator near6.0. A 1:1 mixtureof TISAB and sample/Milli-
Q Tlll water will generally bring sample to pH of 6.0.
6.2 Sample temperaturemay effectfluoridemeasurement. Itisrecorrunendedthatthe sample be
atroom temperatureas the standardswere when the meter was calibrated. 6.3The ratethesamples are stirredatshould be consistentwith the ratethestandardswere stirred.
2
I
6.4Air bubblestrappedunder electrodcean giveerroneousreadings.Make sureno airistrapped under electrode.
7.0 SAMPLE HANDLING
7.1 No specialhandlingnecessary.
8.0 CALIBRATION AND STANDARDIZATION
8.1PreparatioonfCalibratioSntandards 8.1.1Measure50mL ofTISAB IIinto5 100mL plastivcolumetrfilcasks. 8.1.L2abeltheflaskass0.050,.1,0.5,1.0a,nd1.5ppm F-,alongwiththedateandyourinitials. 8.1.P3ipett0e.050,.1,0.5,1.0,and1.5mL of100ppm fluorisdteandaridntotheappropriately labeledflasks. 8.1.4Add approximately30 niL of Milli-QTmwatertoeach flask. 8.1.5Shake theflaskstomix thesolutions. 8.1.6Eliminateairbubblesfrom theflasksby tippingtheflaskson theirsidesand rollingtheairin theflasksover theairbubbles. 8.1.7Bringthevolume intheflasksup tothe100 mL mark withMUI-QTM water. 8.1.8Invertand shake theflasksforthefinalmixing. 8.1.9Record standardsinStandardsLog Book.
8.2 Calibration 8.2.1Ifnecessary,remove tapefrom electrodfeillinhgole. 8.2.2Invertprobe towet topseal. 8.2.3Ejecta few dropsof fillinsgolutionfrom bottomof electrodetowet lower seal. 8.2.4Filltheelectrodweithfillinsgolution. 8.2.5The meter and theF- electrodaeretypicallcyalibratebdy directmeasurement withno blank correctionu,sing standardswithconcentrationosf 0.05,0.1,0.5,1.0,and 1.5ppm F-,following themanufacturer'sinstructions. 8.2.6Record theslopein theappropriatleogbook. 8.2.7Clean theelectrodeby rinsingwithMilli-QTMwaterand wipingthesidesdown withlab tissues.
8.3 StorageConditionsforStandards 8.3.1Calibratiosntandardsarestoredatroom temperature.
9.0 PROCEDURES
9.1Calibrationand infeasurementS,tandard method: 9.1.1The sample to be measured needs tobe n-LixewdithTISAB usingtheproportions recommended by theTISAB manufacturer. 9.1.2Placea stirbar inthesample and placethesample on thestirplate. 9.1.3Allow thesample tomix fora few secondsbeforeinsertintgheelectrodeW.hen the electrodeisinsertedm,ake surethereareno airbubblestrappedundertheelectrode. 9.1.4The sample shouldbe thesame temperatureasthecalibratiosntandardsand stirreadtthe same rateas thecalibratiosntandards. 9.1.5When thereadingshave stabilizerde,cordthereadingintheappropriatleogbook.
3
9.2 CalibrationAnd Nleasurement,Using Orion 3E Software:
9.2.1 Calibration: 9.2.1.1Follow steps8.2.1to 8.2.4. 9.2.1.2PressFunctionKey #8 (F8). 9.2.1.3The computer screenwillask you toconfirm thenumber of standardsto be used, concentratioonf thestandards,and whether ornot a blankistobe includedinthecalibration. Make any necessary changes totheinformationpresentedand clickon CONTINUE. 9.2.1.4Place the electrodeinthe firssttandardon thestirplateand clickon CONTINUE. 9.2.1.5Observe the readingson thegraphicdisplayon thecomputer. When the readingshave stabilizedp,ressACCEPT READING. 9.2.1.6Repeat step9.2.1.4and 9.2.1.5fortheremaining standards. 9.2.1.7Afterthe finalstandard,thecomputer willdisplaytheslopeof thecurve,aswell as the interceptand correlationR.ecord theslope,intercep@and correlatioinnthe appropriatelog book and clickon CONTINUE. The calibratiodnataisautomaticallcyopiedto C:\Orion\Data\Calib.tKt.
9.2.2Data Spreadsheet: 9.2.2.1SelecteitherNEW or OPEN from theFILE menu toopen a new or existingspreadsheet to storedata in. 9.2.2.2Record the name of the spreadsheetused inthe appropriatelog book.
9.2.3FluorideMeasurement: 9.2.3.1Follow steps9.2.1through 9.2.4 9.2.3.2Enter the name of thesample intheappropriateplaceon thescreen. 9.2.3.3Clickon theNEW SA-NTLE button 9.2.3.4When thereadingshave stabilizedc,lickon theRECORD buttonand writetheresultinthe appropriatelog book.
10.0 VALIDATION
10.1 QualityControl:
10.2 Precisionand Accuracy
10.3 Other ValidationParameters AccordingtoReference 13.2,therange of detectionis0.02 ppm fluorideup toa saturatedsolutionof fluoride.
11.0 DATA ANALYSIS
11.1 Calculations None necessary.
11.2 Analyzintg,the Data None necessary.
12.0 ATTACHNIENTS
None
13.0 REFERENCES
4
13.1Orion Model EA940 Expandable IonAnalyzerInstructioMnanual, Orion Research Incorporated1,991.
13.2Orion Model 960900 SolidStateCombinationFluorideElectrodeInstructioMnanual, Orion Research Incorporated1,991.
14.0 REVTSTONS
Revision Number
Reagn forChanee
Revision Date
5
3M EiivironmentalLaboratory
Method
Extractionof Fluorochemicalsfrom Rabbit Livers
SOP IdentiricatioNnumber: AMDT-M-4 RevisionNumber: 0
Adoption Date: RevisionDate: None
Audior.Dave Christenson/CyndiWieaber Approved By:
roupLeader
lo - 3rl-tS Date
QualityAssurance
Date
Software:MS Word, 6.0 AffectedDocuments: M-5, Analysisof RabbitExtractforFluarochemicalUssing Electrospray Mass Spectroscopy.
1.0 SCOPP,
1. 1 Scope: This method isfortheextractioonf fluorochemicalsfrom rabbitlivers. Ethyl acetateisused toextractfluorochemicalsfrom theliversforanalysisby electrospraymass spectroscopy.
1.2 Applicable Compounds: Fluorochemicalsor otherfluorinatecdompounds. 1.3 Matrices: RabbitLivers.
2.0 KEYWORDS
2.1 Fluorochemicals,rabbitliverse,lectrospraymass spectrometer,fluorinated compounds, extraction.
3.0 PRECAUTIONS
3.1 Use gloves when handlingtherabbitliverst,heymay containpathogens.
4.0
SUPPLIES AND MATERIALS
4.1 Supplies 4.1.1 Syringe,capableof measuring 100;iL 4.1.2 Eppendorf typeor disposablepipets 4.1.3 Gloves 4.1.4 Plasticgrindingtubes 4.1.5 Plasticentrifugetubes,15 mL 4.1.6 Labels 4.1.7 Nitrogen 4.1.8 Timer 4.1.9 FiltersT,itannylon syringefilter0s.,2 4. 1.10 Analyticalpipets:glassvolumetricpipets. 4. 1.11 Disposableplastic3 cc syringes. 4. 1.12 Crimp cap autovials.
4.2 Reagents 4.2.1 Aqueous Ammonium Acetate (Aldrich)a,pprox.250 ppm: Preparea 2500 ppm aqueous solutionof ammonium acetateby adding 250 mg ammonium acetatetoa 100 mL volumetricflaskand dilutetovolume withMM-Q water.Dilutethissolution1:10 fora 250 ppm solution. 4.2.2 Sodium carbonate/SodiumBicarbonateBuffer(J.T.Baker), (Na2CO3/NaliCO3) 0.25 M: Weigh 26.5 g of sodium carbonate(Na2CO3) a.nd21.0g of sodium bicarbonate(NaHC03) intoa I L volumetricflaskand bringtovolume with NERI-Q water. 4.2.3 Diluteacetonitrisloelutiond,iluteacetonitril1e:1 with Milli-Qwater. 4.2.4 EthyL Acetate 4.2.5 Methanol 4.2.6 Milli-Qwater 4.2.7 1H,IH,2H,2H - perfluorooctanesulfonaiccid(Aldrich) 4.2.8 FC-95 (3M SpecialtyChemical Division)
2
5.0 EOUIPMENT
S-1 Ultra-TurraTx25 Grinderforgrindinglivesramples. S.2 Vonex mixer 5.3 Centrifuge 5.4 Shaker 5.5 AnalyticaElvaporator
6-0 INTERFERENCES
6.1 There areno known interferenceastthistime.
7.0 SAMPLE HANDLING
7.1 ne rabbitliversarereceivedfrozen,and must be kept frozenuntilthe extractioins performed.
8.0 CALIBRATION
AND STANDARDIZATION
8.1 Preparation of InternalStandards
8.1.1 Prepare an internasltandardof approximately 12 ppm 1H,IH,2H,2H-
perfluorooctanesulphoniacidtobe added toeach liversample. 8.1.2 Weigh atleast0.1 g of 1H,1H,2H,2H-perfluorooctanesulphonicacidintoa
100 mL volumetricflask.Record the actualweight. 8.1.3 Bring itup tovolume with methanol,thisisthestockstandard. 8.1.4 To a 250 mL volumetdc flaska,dd 3 mLs of thestockstandardand bringto
volume with N4illi-wQater.Calculatetheactualconcentrationof the standard.
actualmg perfluoroctane-
sull2honiaccid
X
0.1 L
3 mL 250 mL
actualconcentrationp,pm
8.2 Prepare FC-95 Anion Standards 8.2.1 Prepare FC-95 standardsforthe standardcurve. 8.2.2 Weigh approximately100 mg of FC-95 intoa 100 niL volumetdc flask. Record theactualweight. 8.2.3 Bring up tovolume with diluteacetonitdle. 8.2.4 Dilutethesolutionwith diluteacetonitril1e:10 fora solutionof approximately100 ppm. Dilutethissolution1:10 with diluteacetonitdlfeor a solutionof approx. 10 ppm. 8.2.5 Use the 10 ppm solutiontomake working standardswithvaluescloseto 5.0 ppm, 1.0ppm and 500 ppb.
8.3 Prepare Beef Liver Homogenate to Use for Standards 8.3.1 Weigh 40 g ofBovineliveirntoa 250 niLNalgenebottlceontaining 200 mLs Mlli-Q water.Grind to a homogenous solution. 8.3.2 Add I mL of thesolutiontoa 15 mL centrifugetube.Preparea totalof eight I mL aliquotsof the solutionin 15 mL centrifugetubes.Be suretoresuspend solutionby shaking itbetween aliquots.
3
8.3.3 SpikesevenoftheI mL aliauotwsiththefollowingamounts ofworking standar-disnstep9.12of thiprocedure.One I mL aliquotservesas the blank.
Worldng Yt-a-n-dard -uL (ApproximateConc.)
-
Soo
100
500
200
500 ppb
300
500 pRb
400
I ppm
500
5 ppm
200
5 ppm
300
Approximate final concentratioonf FC-95 inliver
Blank 0.292 ppm 0.584 ppm 0.877 ppm 1.168 ppm 2.924 ppm 5.848 ppm 8.772 ppm
8.4 Calculatetheactualvalueof thestandards:
uL ofstandardx
-. i (inppm)
171 mg liver"1/ ml h-omogenate
finacloncentratio(nppm) ofFC -95inliver
*Average weightofbovineliverinsolutioansdeterminedby weighing I mL homogenates of40 mg liverin200 mL of NIMI-Q water.The amount of FC-95 isrepor-teads equivalentsof FC-95 potassiumsalt.
8.5 Calibration 8.5.1 Extractthespikedbeefliverhomogenate following9.13to9.23of this method. Use thesestandardstoestablisyhour curveon themass
spectrometer. 8.5.2 Alternativelya,standardcurvemay be generatedusingratiosof responses
of theperfluorooctansulfonantieonand theinternasltandardaiiionversus
concentratioonf theperfluorooctanesulfonatneion.
8.6 Storage Conditions for Standards 8.6. 1 New standardsarepreparedwitheach analysisS.tandardsarestoredin coveredplasticentrifugteubesuntiltheanalysison themass spectrometer
isperformed.
8.7 Storage Conditions for Standards 8.7. 1 Beef liverhomogenatesmay be frozenafterpreparation.
9.0 PROCEDURES
9.1 Obtainfrozenliversamples.In spenttissuen,otethattheliverhas notbeen packaged withothertissues.
9.2 Use a dissectinsgcalpeland cutoffapproximatelyIg of liver. 9.3 Weigh thesample directliyntoa taredplastigcrindingtube. 9.4 Record theliverweightinthestudynotebook. 9.5 Put a labelon thevialwiththestudynumber,weight,rabbitID, dateand analyst
initials.
4
9.6 9.7
9.8 9.9
9.10 9.11
9.12
9.13 9.14
9.15 9.16 9.17 9.18
9.19
9.20
9.21 9.22 9.23
9.24 9.25
Add 2.5 mLs water.
Grind thesample.Put thegrinderprobe in thesample and grindforabout 2 minutes,untilthesample isa homogeneous solutionwithno largechunks. Rinse theprobe offintothesample with2.5mLs waterusing a pipet. Take thegrinderapartand cleanitwithmethanolaftereach sample.Follow AMDT-EP-22. Cap thesample and vortexfor15 seconds.
PipetI mL intoa 15 mL centrifugteube.Labelthecentrifugteubewiththeidentical informadonas thegrindingtube.(SeeAMDT-M-4 Worksheet fordocumentingthe remainingsteps.) Spike thebeefliverhomogenates withtheappropriataemount of FC-95 standard as describedin 8.3.
Spike thesamplesand beefliverhomogenates with 100 uL of internasltandard. Add I mL of thesodium carbonate/sodiubmicarbonatbeufferand I mL ammonium acetate. Using an analyticaplipet,add 5 mL ethylacetate. Cap the sample and vortex20 to30 seconds. Put them intheshakerfor20 min.
Centrifugefor20 to25 minutes,untilthelayersarewellseparated.Setthepower on thecentrifugeto25.
Remove 4 mLs of thetoporganiclayertoa fresh15 mL centifugetubewitha 5 mL graduatedglasspipet.Transferthelabeltothefreshtube. Blow thesample down on theanalyticaelvaporatortoneardrynesswithnitrogen, approximately30 to40 minutes.
Bringtheremainingsampleup in I mL dilutaecetonitdlweithan analyticaplipet. Vortex 15 seconds.
Transferthesample toa 3 mL syringeA.ttacha 0.2gm nylonmesh filtearn,d filter thesample intoa freshcentrifugteubeor a autovialL.abel thetubeor vialwiththe studynumber and animalnumber. Cap and holdforanalysisby electrospmymass spectroscopy. Complete AMDT-M-4 worksheetand attachtopage of studynotebook.
10.0 VALIDATION
10.1 QualityControl-notapplicable 10.2 Precisionand Accuracy-not applicable .10.3 Other ValidationParameters-notapplicable
11.0 DATA ANALYSIS
11.1 None
12.0 ATTACHMENTS
12.1 WorksheetAMDT-M-4
13.0 REFERENCES
13.1 ANMT-EP-22 RoutineMaintenanceofUltra-Tun-axT-25
14.0 RE ISIONS
Revision
Number
Reason forChange
Revision Date
5
Study
Sample Number
set Riank T-iver
Worksheet AMDT-M-4
FC-95 approx0.5ppm
actual PPM #W
IfltI)II, 7t)(1)1T. 00 uL 4()0i]T,
FC-95 approx I ppm actual PPM #W
500 tiT.
-
FC-95 approx.5 ppm actual PPM #W
Date and InitialfsorStd.
-
-
200 uL 100 iiT.
qudy numher 3gheretheorivinawlork-gheeit%locatedond nl;iraeconv.
T.ivePrxtrnctinnPmr&-,q-
Pimt 1mT. nfT,iveIr;nliitinn
Pinet100 uL nf 12 nnm Tntern;Ii;ltand;irfi
stri
VnrtpxIi Rt-f-@
PirieIt rnT.nf 750 nnm Ammnnitim Aretntf..
'It;ti
PinetI mT.nf 0 25 NarO,10 25M NaHrO. Riiffer
Pimt i mT.nf FthylAretnti-
Vnrtex?0-30 q&r
,gh;tk7t0- min-
Centrifii7a0e-75 min
Remnye :14 rnT.;ifiniinnftorg;inilraver
Rlnw down tnneiieriryneg(s<O')imL) withN.
Add I m- nf 1-1Ar-etnnitrile,-/14.0
TN#
VnrtexIi ser
Filteur-;inao lee B-D gyringewith2 0-2timgRl filteirntoa I i mT. ;Itito-;:;vminalle
T)ntek. Tniti;il-q
6
3M- Environmental Laboratory. Method
Analysis of Rabbit Liver Extract for Fluorochemicalsusing Electrospray Mass Spectroscopy
SOP IdentiricatioNnumber: AMDT-M-5 Revision Number: 0
Adoption Date: RevisionDate: None
Author. Dave Christenson/CynthiWaeber Approved By:
tup.LroeuapdLeeard"er
Date
QualityAssurance
Dam
Software:MS Word, 6.0 AffectedDocuments: M-4, ExtractionofFluorocherrAcalfsrom RabbitLivers
1.0 SCOPE
1. 1 Scope: This method isfor theanalysisof extractsof rabbitliveror othertissuesor fluidsforfluorochemicalsusingthe electrospramyass spectrometerT.he analysis isperformed by singleion monitoringof FC-95 anion,M/Z= 499, theinternal standardM/Z = 427, and otherappropriatemasses.
1.2 Applicable Compounds: Fluorochemicalsor otherfluorinatecdompounds. 1.3 Matrices:RabbitLivers(samples),Beef Liver(standards)o,thertissuesand
fluids.
2.0 KEYWORDS
2.1 Fluorochemicals,fluorinatecdompounds, electrospraymass spectroscopy,mass spectrometer,rabbitlivers.
3.0 PRECAUTIONS
3.1 Use cautionwiththevoltagecablefortheprobe.When thevoltagecableisplugged intothe probe DO NOT TOUCH THE PROBE, thereisriskof electricaslhock.
3.2 Do not run thepump above it'scapacityof4000 psi.Ifpressuregoes over 4000 psi stopand releasepressure.The peak tubingmay be plugged.Troubleshootback to findtheplug and replacetheplugged tubing.See AMDT-EP-15
3.3 Do not run thepump todryness.
4.0 SUPPLIES AND MATERIALS
4.1 Supplies 4. 1.1 Nitrogen gas regulatedto 140 psi. 4.1.2 Fluofixcolumn orequivalent. 4.1.3 100 uL or250 uL flatfipsyringeforsample injection.
4.2 Reagents 4.2. 1 Diluteacetonitrimloebilephase,diluteacetonitril1e:1 with Milli-Qwater. 4. 2.2 Milli-Qwater,allwaterused inthismethod shouldbe Milli-Qwater.
5.0 EQUIPMENT 5.1 VG Trio 2000 ElectrosprayMass Spectrometeror equivalent. 5.2 ISCO SyringePump 5.3 SpectraphysicsAS300 Autosampler 5.4 100 uL Assembly 5.5 Autovialsor capped centrifugetubes.
6.0 INTERFERENCES
6.1 There are no known interferenceastthistime.
7.0 SAMPLE
HANDLING
7.1 Keep the extractedsamples incapped 15 mL centrifugetubesor incapped autovials
untilready for analysis.
2
8.0 CALIBRATION AND STANDARDIZATION
8.1 Preparationof CalibrationStandards 8.1.1 Seven beefliverstandardsand one blankbeefliverarepreparedduringthe extractiopnrocedure.(SeeAMDT-M-4, section8.0)
8.2 Calibration 8.2. 1 Run thesevenbeefliverstandardstwice,startinwgiththeloweststandard toobtainthestandardcurve. 8.2.2 Typicallyone standardisrunaftereach5 to7 samples.Choose a standard in thesame rangeof concentratioans thesamples.
8.3 Storage Conditionsfor Standards 8.3.1 Freshstandardsarepreparedwitheach analysisS.tandardsarestoredin coveredplasticentrifugteubesuntiltheanalysison themass spectometeris performed.Samples and standardsareNOT refrigerated.
8.4 Storage Conditions for Beef Liver Homogenates 8. 4.1 Beef liverhomogenates may be frozenafterpreparation.
9.0 PROCEDURE
9.1 InitialSet-up 9.1.1 Setsoftwareto"Operateon",Ion Mode ES-. 9.1.2 Record backingpressurein theinstrumentlog. 9.1.3 Fillthesolventcylinderwithmobilephase. .9.-1.4Set thepump to"Run". Settheflow to 1000 uLAnin.Observes droplets coming outof thetipof theprobe.The pressureshouldbe at1700 to 1800 psi. 9.1.5 Check thefusedsilicattheend of theprobe.Use an eye piecetocheck for chips.The tipshouldbe flatwithno jaggededges.Ifany chipsarefound cutoffthetipof thesilicwaitha column cuttearnd pullthesilictahroughto theappropriatleength. 9.1.6 Check your nitrogensupply.Tum on thenitrogenT.here shouldbe no nitrogenleakingaroundthetipof theprobe.A finemistshouldbe coming out of thetip. 9.1.7 Carefullyguidetheprobe intotheopening.Insertitundl itwon't go any fur-theCro.nnect thevoltagecabletotheprobe. 9.1.8 Go tothe"Editot"page,and setIonizatioMnode toES*,and the appropriatemasses to427 and 499. 9.1.9 Ifitisnotinsingleion mode go to"Option"and setSIR. 9. 1.lOStartAcquisiEionA.ssigna filename, MO-DAY-YR + letterR.ecord itin the logbook. 9. 1.11 Run thebeefliversamplesfirstr,unningeachstandardtwiceatthe beginningof therun..Run a QC check by runningone standardafterevery 5 to 7 samples.
9.2 Manual Injection 9. 2. 1 Draw 150 uL of sampleintoa syringe.Injecthesampleintotherheodyne injectiopnort.Injecstlowly.Record thesampleID inthelog book. 9.2.2 Turn thevalveto"On". 9.2.3 Wait two minutes,and injecthenextsample. 9.2.4 Record thescannumber foreich sampleinthelogbook.
3
9.3 Using the Autosampler
9.3.1 Set up sample trayA, B, or C.
9.3.2 Record thesamplesand theirpositionisn theinstrumentlogbook. Up to 17
vialsmay be ineach run.
9.3.3 Set-upthesampler:
9.3.3.1 Push thesample button
9.3.3.2 Setsample loop size= 100 uL
9.3.3.3 Setinject/sampl=e2
9.3-3.4 SetCycle time= 0
9.3-3.5
Name thefileL:ivers
9.3.3.6 Identiftyhetrayused
9.3-3.7 Add thesamplestoQueue by pressing"Enter"
9.3.3.8 Press"Rurf'tostart
10.0
VALIDATION
--
ILO1. Quality Control 10. 1.1Run a standardevery5 to7 samples.Ifa significancthange(50%) in
peak heightoccursstoptherun.Only thesamplesbeforethelastacceptable
standardwillbe used.The remainingsampleswillbe reanalyzed.
10.2 Precisionand Accuracy 10. 2. 1See Method ValidatioRneportnumber AINMT-M-5.0.V 1
10.3 Other ValidationParameters 10.4 RefertoMethod ValidatioRneportNumber AMDT-M-5.0.Vl
11.0 DATA ANALYSTS
11.1 11.2
Calculations Plotthestandardcurve,usingthemean of thetwo valuesobtainedforeach standard. 11. 2. 1Read peak heightsor areasforthesamplesfrom theprintoutU.se linear
regressiontodeterminethesample concentrations. 11. 2.2 Calculatethemg of FC-95 anion,or otherfluorocherriiicnatlhetotarlabbit
liver
mg FC-95 anionin thetotarlabbitliver
mg FC-95-anionfrom std.curve gms of liverusedforanalysis
x Totalmass ofliverg,ms
11. 3 11. 4
Make a resultstableand enteritinthestudybook. Printa chromatogram foreach sample,withthepeakslabeledwiththesampleor standardD:).Write thestudynumber on theprintouti,nitiadla,te,and putitin the studyfolder.Stapleallchromatograms togetherand number pages.
4
12.0 ATTACHMENTS
None
13.0 REFERENCES
13.1 AMDT-EP- 17
14.0 REVTSIONS
Revision Numbe
Reason forchangc
Revision Date
-
5 __ __
3M Environmental Laboratorv
Method
Analysis of Fluoride Using the Skalar Segmented Flow Analyzer With Ion SelectiveElectrode
Method IdentiricatiNounmber: AMDT-M-8
AdoptionDate: /o-s--t5-
RevisionNumber: 0
RevisionDate: None
Author.Deb Wright/ CynthiaWeber Approved By:
up Leader
Date
QualityAssurance
Date
Software:IBM MS Word, 6.0 AffectedDocuments: AMDT-EP-26, Operationand MaintenanceoftheSkalarSegmented Flow
Analyzer
1.0 SCOPE
1. 1 This method isfortheanalysisforfluoridet,hermallyextractedfrom samples using theDohrmann DX2000 (AMDT-M-1), and collectedinTISAB foranalysiswithan Ion SelectiveElectrode(ISE).The analysisisperformed usingtheSkalar Segmented Flow Analyzer with ISE.
1.2 Samples can be tissuess,erum, biologicalmaterialo,rothermaterialsextractedon the Dohrmann.
2.0 KEYWORDS
2.1 Skalar,segmented flow,fluoride.
3.0 PRECAUTIONS
3.1 Follow standardlaboratorysafetypractices.
4.0 SUPPLIES AND MATERIALS
4.1 Supplies 4.1.1 Sample cups,4 mL plasticups withcaps 4.1.2 Autopipets,oxford orequivalentwithplastictips 4.1.3 Polypropylenevolumetricflasks,100 mL 4.1.4 Cartridgecomponents,refertotheSkalarMethods forcomponents and part numbers. 4.1.5 Sample prefilterEsv,ercrreen
4.2 Reagents 4.2.1 Brij35,30% S.F.A.S.Detergent 4.2.2 TISAB IIbuffersolutionP:urchaseTISAB E from Orion.To 1 literof TISAB 11add 2.5mL or 100 ppm fluoridesolutionand 1 mL Brij.
4.2.3 Sampler rinsingsolutionD:iluteTISAB 111:1with Milli-Qwater. 4.2.4 Nitricacidsolutiofnordecontamination,1 N (labgrade):Slowly add 64
mLs concentratenditriaccid(HN03) to250 mLs of Milli-Qwater.Bring
thevolume up to 1 L withMilli-Qwater.
4.3 Standards 4.3.1 Stock solution,100 ppm F: purchased from Orion. 4.3.2 Intermediatestandard,10 ppm: Dilute10 mLs of stocksolutionto 100 mLs with Milli-Qwater.Use polypropylenevolumetricflasks.
4.3.3 Working standard:Make up thefollowingworking standardsby adding the volumes of intermediateor stockstandardindicatedon thetable,using
oxford or pumpmate pipets,to50 mLs of TISAB and dilutingto 100 mLs
with Milli-Qwater.
Working Standard 0.015 ppm PPM 0.06 ppm 0.09 ppm 0.12 ppm 0.15 ppm 0.3 ppm 0.6 ppm
--i=S of Stock Standard
o.3 0.6
mLs of IntermediateStandard 0.15 0.3 0.6 0.9 1.2 1.5 -
1.2ppm
1.2
1.5ppm
1.5
5.0 E!QUTPMENT
5.1 SkalarSegmented Flow Auto Analyzer Sansp"'System equipped with ISE
6.0 TNTERFERENCES 6.1 High concentrationsof alkalinityc,hloride,phosphate,sulfateor ironcan cause interferences.
7.0 SAMPLE HANDLING
7.1 Samples should be storedinpolyethylenebottlesS.amples should be analyzed within30 days.
8.0 CALIBRATION AND STANDARDIZATION
8.1 Preparation of CalibrationStandards 8.1.1 Preparecalibratiosntandardsas in section4.3.
8.2 Calibration 8.2. 1 The standardsare analyzedatthebeginningof therun.
8.3 Storage Conditions for Standards 8.3. 1 Standards arestoredincapped polypropylenevolumetricflasks.New standardsareprepared ata n-dnimum of every sixmonths, oras necessary.
9.0 PROCEDURE
9.1 Start Up Procedure 9.1.1 Clamp down thepumpdecks, airbarsand sampler-pump tubing. 9.1.2 Put thefluorideelectrodesintheelectrodechamber. 9.1.3 Turn on thepower of the sampler,pumps, offsetpotentiometerand heating bath. 9.1.4 Put thereagent-lineisntheappropriatebottles. 9.1.5 Turn on the interfacec,omputer, displayand printer.Make sure you turn on the interfacebefore the computer. 9.1.6 Letthesystemstabilifzoerapproximatel3y0 minutes.
9.2 Startinga Run 9.2.1 Createa sample tableby selectingFILES, TABLE, and CREATE, typein the name of the filea,nd pressENTER. 9.2.2 Printthesample table,insertedinthe system tableby pushing ESC, PRINT, GROUP 1.This willprinttheentirerun. 9.2.3 Dialthesampler settingstotheappropriatenumber of samples,number of seconds forsample wash, and number of seconds forthe sample. 9.2.4 Fillthesample traywith thestandards,samples,washes and driftsr.W and FW/RUNOUT cups on the samplerdo not need tobe filled. 9.2.5 Set thebaseline.
3
9.2.5. 1SelectGRAPHICS, REAL TIME. Ifyou cannot getreal-timey,ou may be inthe Data Handling Panel.Switch totheAnalysisPanelby selectingCONTROL PANEL and pushing F7.
9.2.5. 2 Use thesmallscrewdriverfortheoffsetpotentiometertosetthe base line.Adjustthebaselineuntilitisapproximately3/4 inchfrom the bottom of thescreen.
9.2.5.3Check the higheststandardand adjustthegain,ifnecessary,with theinterfacescrew #3.
9.2.6 Go toCONTROL PANEL, and toanalysispanel.Deselectthe analysisthat willnot be run.(Selector deselectanalysisby pressingENTER.) PressTab toreturnto theAnalysisPanel.
9.2.7 Press thespacebar tobrin-up the localmenu. 9.2.8 SelectSTART tostartheanalysis. 9.2.9 Type your ID (initialst)h,esample tablewhich you createdunder 9.2.1(or
pressENTER forchoices),choose runningwith or without thesystem table and selectSTART ANALYSIS. 9.2. 10 Afterstartintghe software,starthe sampler.Make surethatthe sampleris settotherightnumber of samples and thatthesample/wash/airtimesare OK. 9. 2.11 SelectGRAPHICS, REAL TIME toview theprogressof theanalysis.
9.3 Loading and Printing the Data-File
9.3.1 Go toCONTROL PANEL, pressthe spacebartobrincyup the localmenu
and selecLtOAD. SelectAUTOCALCULATION
and enterthefilename(or
highlicrhtthefiletobe printedand pressENTER).
9.3.2 To view thecalibratiocnurve,go toGRAPHICS, CALIBRATION
CURVE.
9.3.3 To printthehigh levelcurve,push PRINT SCREEN.
9.3.4 To printthelow levelscreen,push ESC togetout of graphics.Select
SET'RINGS. Change themax y value toapproximately900. Go toCAL
CURVE and pressESC, and Enter.PressPRINT SCREEN.
9.3.5 Return toSETMNGS and change the max valueback to4095,go toEDIT,
pressENTER and PRINT SCREEN toprintsample peaks.
9.3.6 To printtheresults-o toCONTROL PANEL, SPACEBAR, OUTPUT,
OUTPUT. SelectPRINTER forthe Epson orPRN for theLaser.
9.4 Shutdown 9.4.1 Put allthereagent-lineisnMilli-Qwater. 9.4.2 Let the system rinseforapproximately30 minutes. 9.4.3 After thesystem has rinsedcompletely,turnoffthesampler,pump and offsetpotentiometerT.urn offtheheatin-bathon weekends. Leave liquidin the lines. 9.4.4 Take theelectrodeout and soak in 100 ppm F overnight. 9.4.5 Release thepump-decks, airbarsand sampler pump-tubinc, 9.4.6 SelectFILES, pressALT F and selectQUIT toexitthe program. 9.4.7 On Friday,turnoffthecomputer, displayand interfaceforthe weekend.
10.0
VALIDATION
10.1
Quality Control
10. 1.f Run a standard(mid tohi0ah concentratione)very 10 samples.Ifa sianificancthange inpeak heichtoccurs,only the samples beforethe last
acceptablestandardwillbe used.The remainin- samples willbe reanalyzed.
4
10.2 Precisionand Accuracy 10. 2. 1See Method ValidationReport number ANMT-M-8.0.V 1
10.3 Other ValidationParameters 10.4 Referto Method ValidatioRneportNumber AMDT-M-8.0.Vl
11.0
DATA 11.1
11.2 11.3
11.4
ANALYSIS
Calculations 11. 1.1 The standardcurve isplottedby the Skalarsoftware. 11. 1.2 All calculationasre done by the Skalarsoftware.r2 should be 0.995 or
better. Prepare spreadsheetstosummarize data.Includesample volume, weights used etc. Write the study number on theprintoutsi,nitiald,atetheprintout,and bind together withallpackage documents and placeinthe studyfolder.Make a copy of the summary sheetand tapeintothestudynotebook.Back up alldataand spreadsheets onto study disk and backup disks. ElectroniDcata 11. 4.1 GLP studies:Electronicdam iscopied onto the Study floppydiskfor each
study,and alsodataiscopied onto a floppydisk thatisstoredin thelab. 11. 4. 2 Other studiesA:ll dataiscopied onto a floppydiskthatisstoredinthe lab.
12.0 ATTACHMENTS None
13.0
REFERENCES
13.1
13.2 13.3
AMDT-M-1, Thermal Extractioonf Fluorideby Means of a ModifiedDohrmann DX2000 OrganicHalideAnalyzer-Liver SkalarMethods, #335, SkalarMethods Manual AMDT-EP-26, Operationand Maintenance of theSkalarSegmented Flow Analyzer
14.0 REVISTONS
Revision Numbe
Reason forchange
Revision Date
5
9.3 QualityAssurance Unit Statement
A=hrmntD
GLP Study
QualityAssuranceStatement
Study Title:Single-doseDermal Absorption/ToxicityStudy of T-6051 and T-6054 in Rabbits
Study Number. AMDT-013195.1
Name ofAuditor:Kari Rambo
This study has been inspectedby theQualityAssurance Unit asindicatedinthefollowingtable. The findingswere reportedtothe studydirectoarnd management.
InspectionDates
EM
12
10/12/95 10/19/95
Phase FinalReport
Date InspectionReported to Man D=t StudyDim
10/19/95
10/19/95
VA Auditor
le-19-@5 Date
9.4 Key Personnel Involvedin the Study
3M Environmental Laboratory
Key Personnel I
Thermal extractiofnollowedby analysiussingOrion Ionanalyzer: Jim Johnson Deb Wright RichYoungblom Deann Plununer
Analysisofliverextractussingelectrospramyass spectrometry: Jim Johnson Dave Christenson
Thermal extractiofnollowedby analysiussingSkalarsegmentednow analyzerwithionselectiveelectrode:
Jim Johnson Deb Wright RichYoungblom Deann Plununer
Documentationand Reporting: Jim Johnson Rich Youngblom
QualityAssuranceUnit: GaleVan Buskirk CynthiaWeber KariRambo
9.11 Data
9.11.1Summary and raw data;ug F- in whole liveras determinedby thermalextractiofnollowedby analysis using Orion ionanalyzer.
Summary ofCombustion Data -Liver AMEDT-013195.1, HWI 6329-133
As Referenced in FinalReport section6.0DATA ANALYSIS Total ug FluorideinWhole Liver Mean per Dose Group*
99 Std.Dev. ControlGroup 16.2 + 5.5 0.128 mg/kg dose (T6054) 11.1 + 2.0 1.28mg/kg dose(T6054) 17.1 + 2.6 12.8mg/kg dose(T6054) 45.2 + 20.5 FabricExposure (T6051) 14.7 + 2.7
*Calculatedasthe mean oftriplicatseamples from each ofthreemale and threefemalerabbits.
RPT1 33L.XLS
FC129 AB
ID
liverblank-3 livesrpike-4 livesrpike-5 livesrpike-6 livesrpike-7 livesrpike-8 livesrpike-9 livebrlank-4 F52873-1 F52873-2 F52873-3 F52885-1 F52885-2 F52885-3 F52898-1 F52898-2 F52898-3 liverblank-1 liverblank-2 livesrpike-I livesrpike-2 F52878-1 F52878-2 F52878-3 F52883-1 F52883-2 F52883-3 F52967-1 F52967-2 F52967-3 F52887-1 F52887-2 liverblank-I liverspike-1 liverspike-2 liverspike-3 liverspike-4 liverspike-5 liverspike-6 F52887-3 F52893-1 F52893-2 F52893-3
% rcvry 83% 83% 102% 94% 84% 83%
91% 95%
69% 85% 83% 109% 101% 101%
Actual ppm Finliver (WNV) 0.230 0.950
1.06 1.28 1.00 2.34 2.49 0.328 0.245 0.334 0.329 0.449 0.222 0.308 0.139 0.131 0.103 0.228 0.298 1.36 0.995 0.286 0.230 0.176 0.211 0.242 0.179 0.158 0.194 0.200 0.252 0.189 0.281 0.968 0.973 0.875 1.29 1.11 1.26 0.173 0.188 0.147 0.175
Average ppm Finliver (WNW)
0.303 0.326 0.124
0.231 0.211 0.184 0.205
0.163
Whole liver liver burned weight (grams) (grams)
0.140 0.132 0.118 0.121 0.142 0.108 0.101
0.116 0.121 74.2 0.107 74.2 0.104 74.2 0.150 69.2 0.114 69.2 0.108 69.2 0.150 73.3 0.148 73.3 0.146 73.3 0.152 0.134 0.101
0.145 0.105 70.2 0.150 70.2 0.151 70.2 0.115 73.8 0.107 73.8 0.135 73.8 0.144 61.5 0.118 61.5 0.108 61.5 0.108 70.6 0.128 70.6 0.129 0.108 0.132 0.143 0.128
0.138 0.121 0.148 70.8 0.133 63.5 0.135 63.5 0.135 63.5
TotalF- in whole liver (ug)
22.4 22.5 9.11
16.2 15.6 11.3 14.5
10.4
Dosage (mg/kg)
0.0 0.0 0.0
0.0 0.0 0.0 0.128
0.128
Page I
RPT1 33L.XLS
FC129 AB
ID
F52897-1 F52897-2 F52897-3 F52876-1 F52876-2 F52876-3 F52882-1 F52882-2 F52882-3 F52901-1 F52901-2 F52901-3 Liverbik 1 Liverbik2 Liverbik 1 Liverbik2 Liverbik 3 Liverspk-1 Liverspk-2 Liverspk-3 F52965-1 F52965-2 F52965-3 F52891-1 F52891-2 F52891-3 F52892-1 F52892-2 F52892-3 F52884-1 F52884-2 F52884-3 F52968-1 F52968-2 F52968-3 F52900-1 F52900-2 F52900-3 F52880-1 F5288G-2 F5288G-3 F52886-1 F52886-2 F52886-3 F52899-1 F52899-2 F52899-3
% rcvry
92% 89% 83%
Actual ppm Fin liver
(WM) 0.156 0.174 0.179 0.117 0.155 0.146 0.112 0.154 0.169 0.126 0.127 0.142 0.331 0.218 1.22 0.322 0.280 1.10 0.869 0.864 0.235 0.205 0.216 0.239 0.197 0.239 0.333 0.270 0.273 0.206 0.255 0.230 0.299 0.261 0.242 0.335 0.390 0.259 0.487 0.548 0.579 0.611 0.728 0.490 0.428 0.366 0.340
Average ppm Fin liver (WNW) 0.169 0.139 0.145 0.132
0.219 0.225 0.292 0.231 0.267 0.328 0.538 0.610 0.378
Whole
liver liver burned weight
(grams) (grams)
0.134
72.4
0.113
72.4
0.123
72.4
0.149
65.2
0.119 65.2
0.138
65.2
0.146 76.1
0.130 76.1
0.112 76.1
0.140
70.5
0.143 70.5
0.112 70.5
0.112
0.137
0.146
0.159
0.139
0.127
0.156
0.145
0.125 68.7
0.163 68.7
0.151 0.114
68.7 64.5
0.144 64.5
0.128
64.5
0.132
68.7
0.134
68.7
0.102 68.7
0.146
65.0
0.101
65.0
0.135 65.0
0.145 66.6
0.116
66.6
0.121
66.6
0.147 61.4
0.115 61.4
0.115
61.4
0.117
59.6
0.142
59.6
0.138
59.6
0.137
75.3
0.114
75.3
0.113
75.3
0.103
89.1
0.115
89.1
0.126
89.1
Total F- in whole liver (ug) 12.3 9.09 11.0 9.29
15.0 14.5 20.1 15.0 17.8 20.1 32.1 46.0 33.7
Dosage (mg/kg)
0.128 0.128 0.128 0.128
1.28 1.28 1.28 1.28 1.28 1.28 12.8 12.8 12.8
Page 2
RPTI 33L.XLS
FC129 AB
ID
%
rcvry
livebrlank 1
livebrlank2
liverblank 3
liverspike-1 87%
liverspike-2 0.7786
liverspike-3 0.7852
liverspike-4 0.9656
liverspike-5 0.8486
liverspike-6 82%
F52889-1
F52889-2
F52889-3
F52894-1
F52894-2
F52894-3
F52895-1
F52895-2
F52895-3
F52874-1
F52874-2
F52874-3
F52879-1
F52879-2
F52879-3
F52963-1
F52963-2
F52963-3
F52877-1
F52877-2
F52877-3
F52888-1
F52888-2
F52888-3
F52966-1
F52966-2
F52966-3
Liverspike-7 60%
Liverspike-8 71%
Liverspike-9 75%
Liverspike-10 98%
Liverspike-11 103%
Liverspike-12 101%
Liverspike-I3 78%
Liverspike-14 107%
Liverspike-I5 102%
Actual ppm Fin liver
(W/W) 0.265 0.327 0.220
0.921 1.05 0.823 1.06 0.859 0.978 0.812 0.896 1.59
0.835 0.794 0.917 0.307 0.523 0.276 0.331
0.249 0.173
0.168 0.194 0.185 0.216 0.175
0.154 0.222 0.190 0.160 0.158 0.211 0.142 0.321
0.277 0.167
0.881 1.05 0.775 0.990 1.15 1.16
2.16 2.46 2.39
Average ppm Finliver (W/W)
1.10 0.849 0.368 0.251 0.182 0.182 0.191 0.170 0.255
liver burned
(grams)
0.125 0.111 0.123 0.143 0.112 0.144 0.138 0.149
0.127 0.114 0.113 0.141 0.127 0.119 0.118 0.151 0.109 0.154
0.144 0.122 0.145 0.134 0.105 0.147
0.130 0.123 0.135 0.119 0.118 0.141 0.144
0.104 0.139 0.123 0.131 0.132 0.102 0.103 0.146 0.150 0.136 0.133
0.110 0.131 0.130
Whole liver weight (grams)
68.7 68.7 68.7 74.0 74.0 74.0 58.1 58.1 58.1 69.7 69.7 69.7 89.1 89.1 89.1 70.2 70.2 70.2 69.9 69.9 69.9 64.2 64.2 64.2 67.6 67.6 67.6
TotalF- in whole liver (ug)
75.4 62.8 21.4 17.5 16.3 12.8 13.3 10.9 17.3
Dosage (mg/kg)
12.8 12.8 12.8 Fabric Fabric Fabric Fabric Fabric Fabric
Page 3
9.11.2Summary and raw data;analysisof liver extractsusing electrospramyass spectrometry.
HWI 0 6329-133
S": ProtocolNumber: Test Matedal: matrix: R Squared Value: Response Factor Amount: Analyst: Date: Method: Instrument:
LABBASE FILE
SingleDoes Dermal Absorpbon TP3016.AB T-6054 & T-6051 inRabbits(FC-129) Uver 0.9889 1.15E-05 DLC 4aW AMDT-M-4 Fams VG 2000 ElectrosprayMS 0403950
A-1 10- 31 -
Group Dome Group 1: Stedle Water 2.0mlkg
Group 2: 0.128 mg /kg
Group 3: 1.28 mgfkg
Group 4: 12.8mgtkg
Group 5: Fabric
Sample
F52883 F52M F52885 F52967 F52873 F52878
F52893 F52887 F52901 F52876
F52892 F52891 F52965 F52BB4
F52895 F52899 F52894 F52880 F52BB6 F52889
F52879 F52877 F52874 F52963 F52888
IonCount Extractedwt Area 9
Dilution Concentradon
factor
@W9
Totalmass of liver
Totalamount of FC-95 per liver
mg
NID
N/D
NID
N/D
NID
N/D
N/D
N/D
N/D
N/D
N/D
N/D
N/D
N/D
N/D
N/D
N/D
NIO
N/D
N/D
N/D
N/D
N/D
N/D
N/D
N/D
N/D
N/D
N/D
N/D
11413
1.0139
1
14922
1.0615
1
8191
1.1217
1
12572
1.0881
1
0.1033 0.1290 0.0670 0.1060
68.707 64.487 68.667 64.989
0.007 0.008 0.005 0.007
51584
1.117
1
58481
1.1894
1
127876
1.0236
1
58961
1.0931
1
84958
1.0915
1
93984
1.0615
1
0.4237 0.4511
1.1462 0.4949 0.7142 0.8124
58.094 89.078 73.983 59.624 75.341 68.670
0.025 0.040 0.085 0.030 0.054 0.056
16734
1.2566
1
26249
1.0106
1
N/D
9735
1.0772
1
N/D
0.1222 0.2383
N/D 0.0829
N/D
89.125 69.913
70.161
0.011 0.017 N/D 0.006 N/D
The concentrationwas calculatedby usingthe standard curve and multiplyingthe resultby 4/5.The 415 factortothe resultofa miscalculationInapplyingformula 8.4InMethod AMDT-M-". 137 mg of liverwas used In thiscalculationratherthanI7l mg. Th* concentradons Inthe standard curve are therefore5/4largerthan they should be. By multiplyingthe calculatedconcentrationIn the standard curve by 415,the correctresultIsobtained.
HWI # 6329-133
Study: ProtocolNumber: Test Material: Matrix: R Squwod Value: Response FactorAmount: Analyst: Date: Method: Instrument: LABBASE FILE
SingleDose Dermal Absorption TP3016.AB T-6054 & T-6051 inRabbits(FC-129) Uver 0.9946 9.1OE-06 DLC 4/"5 AMDT-M-4 Fisons VG 2000 ElectrospraMyS 040495B
Group Dose Group 2: 0.128 mg /kg
Group 3: 1.28 mgtkg
Group 5: Fabric
Sample
F52897 F52882
Ion Count Area
18736 N/D
Extractedwt 9
1.1033 1.1025
Dilution factor
Concentration Totalmass of
pgtg
liver
9
1
0.1236
72.433
1
N/D
76.060
Totalamount of FC-95 per liver
mg
0.009 N/D
F52900
16432
1.3161
1
F52968
27181
1.2011
1
0.0909 0.1648
61.356 66.642
0.006 0.011
F52966
8521
1.1457
1
0.0542
67.02
0.004
Administered as a lo.ocm x 10.0cm pieceof testfabric
The concentrationwas calculatedby using the standardcurve and multiplyingthe resultby 4/5. The 415 factorIsthe resultof a miscalculationInapplyingformula8.4InMethod AMDT-M4-0. 137 mg of livewras used In thiscalculationratherthanl7l mg. The concentrationsInthe standard curve are therefore514 largerthan they should be. By multiplyingthe calculatedconcentrationInthe standard curve by 4/5,the correctresultIsobtained.
DL(-'LIV
Sample DL(:LIV
Operator DLC Run (-late 05-()@)-1995 06:49:44
Ver:3ioti: 12
Printed on 05-09-1995 AT 06:49:56
Straight Line Fit forced throuqii ()ri(7in. ---------------------------------
Ld
47
R,EVEL 1 3
AMOUNT -----------
0.4000 -1.8000 1.2000
Component
1
EXTERNAL
STANDARD CALIBRATICDN
AREA ---------
47743 85693
132059
Y
SL(DPE
x
+ INTERCEPT
---------------------------------------------------
Area Amount
= 1.098SE-*05 9.1012E-06
Amount Area
+ O.OUOOE+00 + O.OOOOE-00
R s,luare@J = 0.9946
FILF-- o,4o-6q,so
F- iZct
5
1 F-- D I.C- L .1k)
iJpierat(3r LLC %
f-.'iljina-te 05-()9-1995 O."@-:4'4:4V5erziori: L;'p
Printed
an 05-09-1995
AT 07:24:56
Straight Line Fit forced throu-.IhOr*iiiii-i. - - - - - - - - - - - - - - ---- - - - - - - - - - - - - - - - --
A-4
x C) m
74069
1.2
EVEL
1 2 3
My'
AMOUNT -----------
0.4000 0.8000 1.2000
Component
EXTERNAL STANDARD AREA
---------
33695 74069 102142
l@ u CALIBRATION
SLOPE
x
+ INTERCEF'T
---------------------------------------------------
Area
m 8.7189E+04
@ln-ioijrit
1.1469E-05
R s-qijartz--=,J0.9889
Amount Area
+ O.OOOOE+00 + O.OOOOE+00
6,32q- 1'33 Fc-i2g
COPY,.F C
tFlifid,.-.'640395DTJ
LAB-BASE - The MS Data System
Sample:6329-133 RABBIT LIVER EXTRACTS; FC-129 (AB)
040395D
ZFS-
777 9 5 085
616 39
25 22
3778
1
37
03
4 44 4
830644' JIL
1245
ZFSlsen
223935112570056788A655I03 925
616
5 -.1880
127816
5848
2 %OF
34489
1 "5L
27 4 22A7,0
-2-o's, i@Gi -0- 3 Cie@ 3500
26 84958-7515 43 k4O9L@'4j594L 4000 45'oo *5
File:040395D
LAB-BASE
The NS Data Sgsten
c
Sample:6329-133 RABBIT LIVER EXTRACTS; FC-129 (AB)
040395D
Los.
319 3 9 j@ 4 J86
146_L66
ZFSisen
38577 49
498
72382 66
7489 596
660
LLi x2.i
95
1218235 P?
14 a 612 95
235768
see
lose
12
b0 1
File:040395D
LAB-BASE
The NS Data System
03
Sample:6329-133 RABBIT LIVER EXTRACTS; FC-129 (AB)
040395D
1 57
loo jL g IS 6.
w-
15
co %r
1
2145
2335
2 +
29
it
100-
98
12 A6 2
51584 15 7
99233 I 11959?522?2
Son
-1610-0-
lose
58481 19 5
age
16734 2305
22'61i
24iiii@-
2@Cili
0-
File:840395D Sample:6329-133 040395D
LAB-BASE
The MS Data System
RABBIT LIVER EXTRACTS; FC-129 (AB)
iss-
31
31 9
34 8
3a 32
37
43 5 4 JL
V.FS-
t4
Uk t4
03
4 94
JLOG-
34489 32 8
x4.9
ZFS-
5325 15
i@,io
386i 0
"tit
.4iicili
84958 43 6
14@Cii
75JL5 44
44F6i
0
File:040395D Sample:63Z9-133 040395D
.too-
925
ZFS-
46 7 5 4656
LAD-BASE - The MS Data System RABBIT LIVER EXTRACTS; FC-129 (AB)
4E 9 4 7
5J.48
L 53 5
54 7 3
r4
261016 46
LNp, L
93984 53 4
x6.9
03
5 65 0 +
ip
ip
ZFS-
lson
11413 4676
4600
14922 4839
4800
5006
8191 51 6
@2@i6
9735 52
12572 5650
A 375 :166
@;ii6
tkVZ 432ck e3
63Zct 1143
E C o py of
lnigal
F'32'1 (II f:52 SSZ
F'52li66
File:0410495B Sample:6329-133 840495B
Is@-
LAB-BASE - The MS Data System
o@
EFC-1291 & 6329-143 IFC-1367F] RABBIT LIVER E)
19616776 22 6
7297995 14 9
0932777 26 6 1
ZFS1850346
37@lgg 611", 7 427 Is 394 410
v.FS-
36 41 62 7 49 7 19
1253
70J6LSt 203 3 2k
I
2v'Wee
1862 2 4 1534
17 7
21
22 6
322 28-41 3 2E 2
3
isen
500
1000
1500
2800
2500
3000
0
File:048495B Sample:6329-133 040495B
161883 2841
LAB-BASE [FC-1291 & 63Z9-143
213251 30 5
xJL. 9
322568 3163
zF-S-
222848445
39270 3121
\
The MS Data [FC-1367F]
(4. Ul@! 26429 33-61JL
System
84
RABBIT LIVER EX
454
37 lei
3!546 42976
38
36
100-
............. 28-42-
. v.FS-
3086
3164
37
32
35 7
Son
2800
3000
3200
3400-
3600
9.11.3Summary and raw data;ug F- inwhole liveras determinedby thermalextractiofnollowedby analysis using Skalarsegmented flow analyzerwith ion selectivelectrode.
This data,althoughsupportivei,ntheopinionof the Study Directorisnot requiredto reachthe conclusion statedin section6.0 and thereforeisnot discussedin detail.
RE: 6329-133 LIUER SRMPLES RMDT 13195.1 Date of Rnalysis:3/28, 3/29 and 3/30/95 Rnalyst: ODW
'li@rlcis
The samples are burned in the Bohrman at 950 C using between 0.1 and 8.2 grams of the liver.The gas iscollectedin 1.0 mL of .1:1TISHB/Milli-Owater then an additional2 mL of 1:1 TISRB/Milli-Oisadded to allow for sufficientvolume for Skalar analysis.The samples are then analyzed on a Skalar Segmented Flow Rnalyzer using the Ion SpecificElectrode (ISE)Method.
TISRB buffer isadded to each sample as itproceeds through the system. The sample then goes through a heated mixing coil before the potentialbetween the ion selectiveelectrodeand the reference electrode ismeasured. The signalisamplifiedand relatedto the fluorideconcentration.
The instrument was calibratedin the ranges of 0.015 - 0.15 ppm and 0.15 - 1.50 ppm fluoride.The standard curve for the high range was plotted using the inverse logarithm option.The standard curve for the low range is linear.Rilstandards and samples were then calculatedby the Skalar software using these curves. Hilresultsbelow 0.0081 ppm appear on the raw data as #.####.
R qualitycontrolstandard was analyzed every 10 samples to check for accuracy and drift.
Raw data istaken from the appropriate calibratedrange of the Skalar printoutand summarized on an Excel spreadsheet. The finalresultsare adjusted for the collectionvolume and any subsequent dilutions.
SUMMARY of 6329-133 LIVER SAMPLES AM DT 013195.1
--------------------------------------------------------------------
Thisisonlya partiasltudy.Allsampleswere notsavedfrom theDohrmann analysis.DDW
F52884-1
ND
F52884-2
ND
F52884-3
ND
3.0
0.1463
ND
3.0
0.1011
ND
3.0
0.1345 ND
F52891-1
ND
F52891-2
ND
F52891-3
ND
3.0
0.1140
ND
3.0
0.1443
ND
3.0
0.1284
ND
GROUP3 Dose Level: 1.28mgtkg
F52892-1
0.02
F52892-2
ND
3.0
0.1322 0.43
3.0
0.1342
ND
F52900-1
ND
F52900-2
ND
F52900-3
ND
3.0
0.1474
ND
3.0
0.1153
ND
3.0
0.1150
ND
F52965-1
0.02
F52965-3
0.02
3.0
0.1246 0.40
3.0
0.1510 0.31
F52968-1
ND
F52968-2
ND
F52968-3
ND
3.0
0.1448
ND
3.0
0.1159
ND
3.0
0.1211
ND
64.9989
ND
64.9889
64.9889
64.4869
ND
64.4869
64.4869
0.20 68.7067 68.7067
61.3555
ND
61.3555
61.3555
0.36 68.6665 68.6665
66.6415
ND
66.6415
66.6415
133-L.SUM
SUMMARY of 6329-133 LIVER SAMPLES AM DT 013195.1
GROUP4 Dose Level: 12.8mp,/kg
F52889-1
0.04
F52989-2
0.05
F52889-3
0.10
F52894-1
0.05
F52894-2
0.06
F52894-3
0.05
F52895-1
0.03
F52895-2
0.03
F52895-3
0.02
F52874-1
0.02
F52874-2
0.02
F52874-3
0.02
GROUPS
F52879-1
0.02
Dose Level 10.0cm x 10.0cm fabric F52879-2
ND
F52888-1
ND
F52963-2
ND
F52963-3
ND
3.0
0.1139
1.17
3.0
0.1125
1.34
3.0
0.1410
2.18
3.0
0.1272
1.20
3.0
0.1183
1.43
3.0
0.1185
1.17
3.0
0.1513
0.62
3.0
0.1091
0.87
3.0
0.1537 0.44
68.6699 1.56 68.6699
68.6699
73.9834 1.27 73.9834
73.9834
58.0944 0.65 58,0944
58.0944
3.0
0.1438 0.46
3.0
0.1221 0.50
3.0
0.1454 0.35
3.0
0.1338 0.34
3.0
0.1050
ND
3.0
0.1438
ND
3.0
0.1228
ND
3.0
0.1345
ND
69.6893 0.44 69.6893
69.6893
0.17 89.1246 89.1246
ND
64.2262
ND
70.1610
70.1610
133-L.SUM
--------------------
I
Tracer
1.50
1.20 800/0
2
Drift
1.50
1.23
82%
3
Wash
ND
4
Std 1
0.015
0.016 104%
5
Std 2
0.03
0.03
101%
6
Std 3
0.06
0.06
97%
7
Std 4
0.09
0.09
99%
8
Std 5
0.12
0.13
104%
9
Std 6
0.15
0.15
98%
10
Std 7
0.30
0.29
98%
11
Std 8
0.60
0.60 101%
12
Std 9
1.20
1.23 102%
13
Sid 10
1.50
1.47 98%
14
Drift
1.50
1.25
83%
is
Wash
ND
16
Blk-I
ND
3
17
Blk-2
ND
3
18
Spk-I
ND
3
19
Spk-2
ND
3
20
Spk-3
0.06
3
21
F52900-1
ND
3
22
F52900-2
ND
3
23
F52900-3
ND
3
24
F52968-1
ND
3
25
F52968-2
ND
3
26
Drift
1.50
1.26
84%
27
Wash
ND
28
F52968-3
ND
3
29
F52884-1
ND
3
30
F52884-2
ND
3
31
F52884-3
ND
3
32
F52892-2
ND
3
33
F52548-2
ND
3
34
F52888-1
ND
3
35
F52963-2
ND
3
36
F52963-3
ND
3
Li33-I.XLS
0.1474
ND
0.1153
ND
0.1150
ND
0.1448
ND
0.1159
ND
61.3555 ND 61.3555 ND 61.3555 ND 66.6415 ND 66.6415 ND
ND
0.1211
ND
0.1463
ND
0.1011
ND
0.1345
ND
0.1342
ND
ND
0.1438
ND
0.1228
ND
0.1345
ND
ND 66.6415 ND 64.9889 ND 64.9889 ND 64.9889 ND 68.7067 ND
ND 64.2262 ND 70,1610 ND 70.1610 ND
Page 1
0.004
63
0.004
63
0.004
63
-------------
37 38 39
Bik Drift Wash
1.50
ND 1.26 84% ND
k;@-
3
Ll33-I.XLS
Page 2 A
L133-2.XLS
--- -------------------------
------------------------------
I
Tracer
1.50
1.21 81%
2
Drift
1.50
1.23
82%
3
Wash
ND
4
Std 1
0.015
0.016 108%
5
Std 2
0.03
0.03
98%
6
Std 3
0.06 0..0578
7
Std 4
0.09
0.09
100%
8
Std 5
0.12
0.12 104%
9
Std 6
0.15
0.15
98%
10
Std 7
0.30
0.29
98%
11
Std 8
0.60
0.60 101%
12
Std 9
1.20
1.23 102%
13
Std 10
1.50
1.47
98%
14
Drift
1.50
1.25
83%
15
Wash
ND
16
Bik-I
0.07
3.0
17
Blk-2
0.02
3.0
18
Blk-3
0.02
3.0
19
Spk-I
0.05
3.0
0.004 63.00
20
Spk-2
0.05
3.0
0.004 63.00
21
Spk-3
0.05
3.0
0.004 63.00
22
F52891-1
ND
3.0
0.1140
ND
64.4869 ND
23
F52891-2
ND
3.0
0.1443
ND
64.4869 ND
24
F52891-3
ND
3.0
0.1284
ND
64.4869 ND
25
F52892-1
0.02
3.0
0.1322
0.43 68.7067 29.31
26
Drift
1.50
1.25
83%
27
Wash
ND
28
F52965-1
0.02
3.0
0.1246
0.40 68.6665 27.78
29
F52965-3
0.02
3.0
0.1510
0.31 68.6665 21.15
30
Drift
1.26
31
Wash
ND
Page I
Ll 33-3.XLS
fffff#Fffafffm=ins m----
I
Tracer
1.50
1.25 83%
2
Drift
1.50
1.28
85%
3
Wash
0.02
4
Sid 1
0.015 0.018 123%
5
Sid 2
0.03
0.03
88%
6
Sid 3
0.06
0.06
100%
7
Sid 4
0.09
0.09
98%
8
Sid 5
0.12
0.12 104%
9
Sid 6
0.15
0.15
98%
10
Sid 7
0.30
0.29
96%
11
Sid 8
0.60
0.61 101%
12
Sid 9
1.20
1.24 104%
13
Sid 10
1.50
1.46
97%
14
Drift
1.50
1.31 87%
15
Wash
0.02
16
Bik-I
0.02
17
Blk-2
0.02
18
Blk-3
ND
19
Spk-I
0.06
20
Spk-2
0.05
21
Spk-3
0.05
22
Spk4
0.06
23
Spk-5
0.06
24
Spk-6
0.06
25
F52874-1
0.02
26
Drift
1.50
1.27
84%
27
Wash
0.02
28
F52874-2
0.02
29
F52874-3
0.02
30
F52879-1
0.02
31
F52879-2
ND
32
F52889-1
0.04
33
F52889-2
0.05
34
F52889-3
0.10
35
F52894-1
0.05
36
F52894-2
0.06
3.0
3.0
3.0
3.0
0.004 63.00
3.0
0.004 63.00
3.0
0.004 63.00
3.0
0.004 63.00
3.0
0.004 63.00
3.0
0.004 63.00
3.0
0.1438 0.46 69.6893 32.13
3.0
0.1221
0.50 69.6893 34.93
3.0
0.1454 0.35 69.6893 24.59
3.0
0.1338 0.34 89.1246 30.17
3.0
0.1050
ND
89.1246 ND
3.0
0.1139
1.17 68.6699 80.31
3.0
0.1125
1.34 68.6699 91.74
3.0
0.1410 2.18 68.6699 149.47
3.0
0.1272
1.20 73.9834 88.64
3.0
0.1183
1.43 73.9834 105.44
Page 1
PA -----------------
37
F52894-3
0.05
38
Drift
1.50
1.28
85%
39
Wash
0.02
40
F52895-1
0.03
41
F52895-2
0.03
42
F52895-3
0.02
43
Drift
1.50
1.31
87%
44
Wash
Ll 33-3.XLS
---------------------------------------------
3.0
0.1185
1.17 73.9834 96.91
3.0
0.1513
0.62 58.0944 36.17
3.0
0.1091
0.87 58.0944 50.64
3.0
0.1537
0.44 58.0944 25.74
Page 2
1995-03-28 17:30
OutPut of : 95032SPI
Software
version 6.1 cl990,93
Operator Date of the Analysis
: DDW : 1995-03-28 15:28
Analysis File Name
: C:\SKALAR\DATA\950328Fl
i3tcks.l
Fluoride 1.5 Calibration order = Inverse Logarithm
Slope
: a = #.#####
Result
6 x - cl -@
0 Aaid&i a
= 105 s
i
x = corrected value of the sample cl = corrected value of the concentration 1 s = Slope of the electrode
a2 al aO -
-0.00000 0.00092
-1.24810
Fluoride L Calibration order = 2
Correlation
r = 0.99716
Result a2
x* + al * x + aO
a2 = al = aO =
0.00000 0.00022 0.00604
Sampler
Type
Number
Sample Time
Wash
Time
Air
Time
Take up
special
needle Height
SA1000 :1 : 50 sec. : 120 sec. : 1 sec. : Single : None : 70 mm.
Diluter
needle Height
: 80 mm
dilution Factor : 10
dilution Volume : 2.5 ml.
Resample
:1
Dilution runs
:1
User file :
TXT
Reproces : No
1995-03-28 17:30
OutPut of
Fluoride 1.5
Path number Signal type Decolor system Number dilute Resample dil Threshold diG output Window event
3 Debubbled Yes 0 No No 4095 0 Off
sl standard
s2 standard
s3 standard
s4 standard
ss standard
S6 standard
s7 standard
S8
standard
S9
standard
slO standard
Order : Inverse
Dimension : PPM
start Value
trigger Limit
Peak shape
start ignore
eNd
ignore
Measure window
Filter
Regeneration
formula
output
Ignore Ignore Ignore Ignore Ignore
0.150 0.300 0.600 1.200 1.500 Logarithm
500 DU 1800 Sec Pointed 60 Sec 120 Sec 75 t No No
Fluoride L
Path number
Signal type
Decolor
system
Number
dilute
Resample
dil Threshold
diG output
Window event
0 : Debubbled : No :0 : No : No : 4095 :0 : Off
950328FI
1995-03-28
17:30
OutPut of
sl standard :
0.015
s2
standard :
0.030
s3 standard :
0.060
s4
standard :
0.090
s5 standard : 0.120
s6
standard :
0.150
s7 standard : Ignore
S8
standard : Ignore
S9 standard : Ignore
slO standard : Ignore Order : 2
Dimension : PPM
start value
500 DU
trigger Limit 1800 Sec
Peak shape
Pointed
start ignore
60 Sec
eNd ignore
120 Sec
Measure window 75
Filter
No
Regeneration No
formula output
C4:=c3
950328PI
199S-03-28 17:30
OutPut of : 9SO328Fl
Fluoride l.S Fluoride L
Page 1 of 3
PPM PPM
Poo Typ Ident
Dil Weight
Ch Result F Cor. Valu Time
wt iw Initial Wash
1 1.000 3 O.OS6 4 0.0060
0 219
65
0
0
0
1t
Tracer
1 1.000 3 1.199 4 0.9756
2065 2282 203
2065
0
0
2d
Drift
1 1.000 3 1.230 4 0.9981
2096 2312 380
2096
0
0
3w
Wash
1 1.000 3 0.056 4 0.0060
0 214 557
0
0
0
-rV,- 7-
-rv- i.-Lpt--
4 sl 5 s2
Standard 1 Standard 2
1 1.000 3 0.062 4 0.0156
1 1.000 3 0.070 4 0.0303
43 258 732
43
0
0
106 322 907
106
0
0
6 s3
Standard
3
1 1.000 3 0.088 4 0.0579
214 432 1081
214
0
0
7 s4 8 s5
Standard 4 Standard 5
1 1.000 3 0.109 4 0.0893
1 1.000 3 0.135 4 0.1250
325 544 1257
325
0
0
440 661 1432
440
0
0
9 s6 10 s7 11 s8
Standard
6
Standard 7
Standard 8
1 1.000 3 0.152 4 0.1469
1 1.000 3 0.293 4 0.2979
1 1.000 3 0.604 4 0.5548
506 728 1606
506
0
0
895 1121 1781
895
0
0
1410 1641 1956
1410
0
0
12 s9
Standard 9
13 slO Standard 10
14 d
Drift
15 w
Wash
1 1.000 3 1.229 4 0.9974
1 1.000 3 1.473 4 1.1797
1 1.000 3 1.248 4 1.0106
1 1.000 3 0.056 4 0.0060
2095 2332 2132
2095
0
0
2335 2576 2305
2335
0
0
2113 2338 2482
2113
0
0
0 226 2661
0
0
0
-T4,L
1995-03-28 17:30
Output of : 95032SP1
Fluoride 1.5 Fluoride L
Page 2
3
PPM PPM
Pon Typ Ident
Dil Weight Ch Result P Cor. Valu Time
16 u
BLK 1
1 1.000 3 too e < 14 240 2779
4 0.0091
14
0
0
Wb
17 u
BLK 2
1 1.000 3 Absen A -32 194 3007
Pb
4 #.####
-32
0
0
18 u
SPK 1 1 1.000 3 Absen A -23 202 3182
4 0.0011
-23
0
0
Pb
19 u
SPK 2
1 1.000 3 Absen A -33 192 3357
4 #.####
-33
0
0
20 u
SPK 3
1 1.000 3 0.087 4 0.0566
209 436 3533
209
0
0
21 u
F52900-1
1 1.000 3 too 1 > 17 242 3765
4 0.0098
17
0
0
22 u
F52900-2
1 1.000 3 too e < -1 224 3820
4 0.0058
-1
0
0
23 u
F52900-3
1 1.000 3 Absen A -33 192 4057
4 #.####
-33
0
0
24 u
F52968-1
1 1.000 3 0.058 4 0.0087
12 236 4184
12
0
0
25 u
F52968-2
1 1.000 3 Absen A -32 192 4407
vb
4 #.####
-32
0
0
26 d
Drift
1 1.000 3 1.259 4 1.0187
2124 2348 4581
2124
0
0
27 w
Wash
1 1.000 3 0.056 4 0.0060
0 224 4751
0
0
0
28 u
F52968-3
1 1.000 3 too e < 32 256 4871
4 0.0131
32
0
0
29 u
F52884-1
1 1.000 3 0.061 4 0.0133
33 256 5089
33
0
0
30 u 31 u
F52884-2 F52884-3
1 1.000 3 0.061 4 0.0135
1 1.000 3 0.061 4 0.0135
34 256 5282
34
0
0
34 256 5435
34
0
0
01 c A)D
1995-03-28 17:30
output of : 95032SF1
Fluoride 1.5 Fluoride L
PPM
PPM
Poo Typ Ident
Dil weight Ch Result F Cor. Valu Time
32 u 33 u
F52892-2 F52548-2
1 1.000 3 0.061 4 0.0144
1 1.000 3 0.061 4 0.0147
38 260 5635
38
0
0
39 260 5805
39
0
0
34 u 35 u
F52888-1 F52963-2
1 1.000 3 0.061 4 0.0140
1 1.000 3 0.061 4 0.0140
36 256 5983
36
0
0
36 256 6159
36
0
0
36 u 37 u
F52963-3
1
1
SA,r@
1.000 1.000
3 0.061 4 0.0140
3 Absen A 4 0.0011
36 256 6333
36
0
0
-23 196 6506
-23
0
0
38 d 39 w
Drift Wash
1 1.000 3 1.257 4 1.0172
1 1.000 3 0.056 4 0.0060
2122 2340 6684
2122
0
0
0 218 6858
0
0
0
wt rw RunOut Wash
1 1.000 3 0.056 4 0.0060
0
0 7159
0
0
0
Page 3 of 3
.A-t
'AID
.0 %4"L-
,vp OJ-L-
.0
1c-)L
Raw ctats of SS032WI
: FILsorida I.S
10
0 Esc-F-Xit I Fl-Help
I Crtl@P-Edit
peaks
T i.. I
437S
4000
Raw data of SSCK328FI FILsorlds 1.5
L,v 0
2423
F-sc-Exit I Fl-Help
@L%3
I Crtl-P-Edit
peaks
Ti.. I
6798
-
1.8804347-
Calibraticounrveof 9503213FFIluorid1e.5
4 L. c
O.OS64972 0
Order
Inverse Logerithn MaasLred
400i)
s
3381
2.E=1643.
Calibration curve of SSCG28FI
Fluoride L
5 1
C3
0.0060376
Order
2
Measured
4000
r
0.98716
1995-03-29 12:46
OutPut of : 950329Al
Software
version 6.1 cl990,93
Operator
: DDW
Date of the Analysis : 1995-03-29 10:24
Analysis File Name
: C:\SKALAR\DATA\950329Al
Fluoride 1.5
Calibration order
= Inverse
Logarithm
.@lope
: B = #.#####
Result
6 x - cl c@
0 didddd 0
= 10&
s
i
x = corrected value of the sample cl = corrected value of the concentration i s = Slope of the electrode
a2 m al m aO =
-0.00000 0.00087
-1.21638
Fluoride L Calibration
order
=2
Correlation
r = 0.99645
Result
a2 = al aO -
= a2
x* + al * x + aO
0.00000 0.00020 0.00843
Sampler
Type
Number
Sample Time
Wash
Time
Air
Time
Take up
special
needle Height
: SA1000
:1
: 50 sec.
: 120 sec.
:1
sec.
: Single
: None
: 70 mm.
Diluter
needle Height
: 80
mm
dilution Factor : 10
dilution Volume : 2.5 ml.
Resample
:1
Dilution runs
:1
User file :
TXT
Reproces
: No
1995-03-29 12:46
OutPut of
Fluoride 1.5
Path number Signal type Decolor system Number dilute Resample dil Threshold diG output Window event
3 : Debubbled : Yes :0 : No : No : 4095 :0 : Off
sl standard : Ignore
s2 standard : Ignore
s3 standard : Ignore
s4 standard : Ignore
S5
standard : Ignore
s6 standard :
0.150
s7 standard :
0.300
S8
standard :
0.600
S9
standard :
1.200
slO standard :
1.500
Order : Inverse Logarithm
Dimension : PPM
start Value
: 500 DU
trigger Limit : 1800 Sec
Peak shape
: Pointed
start ignore
: 60
Sec
eNd
ignore
: 120 Sec
Measure window : 75
Filter
: No
Regeneration
: No
formula
output
Fluoride L
Path number Signal type Decolor system Number dilute Resample dil Threshold diG output Window event
0 : Debubbled : No :0 : No : No : 4095 :0 : Off
950329AI
1995-03-29
12:46
output of
sl standard :
0.015
s2 standard :
0.030
s3 standard :
0.060
s4 standard :
0.090
ss standard :
0.120
s6 standard :
0.150
s7 standard : Ignore
s8 standard : Ignore
S9 standard : Ignore
sio standard : Ignore
order : 2
Dimension : PPM
start Value
500 DU
trigger Limit 1800 Sec
Peak shape
Pointed
start ignore
60 Sec
eNd ignore
120 Sec
Measure window 75
Filter
No
Regeneration
No
formula
c4:=c3
output
950329Al
7-1
1995-03-29 12:46
output of : 950329AI
Fluoride 1.5 Fluoride L
PPM PPM
Pos Typ Ident
Dil Weight
Ch Result F Cor. Valu Time
wt iw Initial Wash
1 1.000 3 0.061 4 0.0084
0 216
65
0
0
0
1t 2d 3w
Tracer Drift Wash
1 1.000 3 1.209 4 1.1307
1 1.000 3 1.234 4 1.1510
1 1.000 3 0.061 4 0.0084
2068 2285 208
2068
0
0
2091 2308 382
2091
0
0
0 218 555
0
0
0
4 sl
Standard 1
1 1.000 3 0.065 4 0.0162
37 258 732
37
0
0
5 s2 6 s3
Standard 2 Standard 3
1 1.000 3 0.073 4 0.0294
1 1.000 3 0.091 4 0.0578
96 320 901
96
0
0
208 436 1086
208
0
0
7 s4
Standard 4
1 1.000 3 0.112 4 0.0902
320 552 1260
320
0
0
8 s5 9 s6
Standard 5
Standard
6
1 1.000 3 0.136 4 0.1244
1 1.000 3 0.152 4 0.1470
425 660 1436
425
0
0
489 728 1608
489
0
0
10 s7 11 s8
Standard 7 Standard 8
1 1.000 3 0.293 4 0.3207
1 1.000 3 0.603 4 0.6246
893 1136 1784
893
0
0
1415 1664 1957
1415
0
0
12 s9
Standard 9
1 1.000 3 1.228 4 1.1457
2085 2342 2131
2085
0
0
13 siO Standard 10
14 d
Drift
1 1.000 3 1.474 4 1.3519
1 1.000 3 1.247 4 1.1617
2308 2570 2309
2308
0
0
2103 2356 2483
2103
0
0
15 w
Wash
1 1.000 3 0.061 4 0.0084
0 256 2663
0
0
0
Page -ro
-TV
1 of 3
1.995-03-29 12:46
output of : 950329Al
Fluoride 1.5 Fluoride L
Page 2 of 3
PPM PPM
Poe Typ ident 16 u
Dil Weight Ch Result F Cor. Valu Time.
W060-0-:@aLf
BLK 1
1 1.000 3 0.100 4 0.0709
255 512 2829 ZJ. ixrl-%
255
0
0
17 u
BLK 2
1 1.000 3 0.070 4 0.0230
68 321 3010
68
0
o .3s%
18 u
BLK 3
1 1.000 3 0.067 4 0.0186
48 300 3185
48
0
0
19 u
SPK 1
1 1.000 3 0.086 4 0.0503
180 432 3357
180
0
0
20 u
SPK 2
1 1.000 3 0.087 4 0.0519
186 436 3533
186
0
0
21 u
SPK 3
1 1.000 3 0.085 4 0.0485
173 422 3711
173
0
0
22 u
F52891-1
1 1.000 3 Absen A 13 260 3883
4 0.0111
13
0
0
o 3 3 -3
23 u
F52891-2
1 1.000 3 Absen A 13 258 4058
4 0.0111
13
0
0
24 u
F52891-3
1 1.000 3 0.064 4 0.0142
28 272 4231
28
0
0
25 u 26 d
F52892-1 Drift
1 1.000 3 0.067 4 0.0188
1 1.000 3 1.252 4 1.1653
49 292 4410
49
0
0
2107 2348 4584 'TV
2107
o
0
27 w 28 u
Wash F52965-1
1 1.000 3 0.061 4 0.0084
1 1.000 3 0.066 4 0.0168
0 240 4747
0
0
0
40 280 4938
40
0
0
29 u 30 d 31 w
F52965-3 Drift Wash
1 1.000 3 0.065 4 0.0155
1 1.000 3 1.263 4 1.1752
1 1.000 3 0.061 4 0.0084
34 274 5110
34
0
0
&o@46 S
2118 2358 5284 -rV-.i.-L
2118
o
0
0 240 5455
0
0
0
1995-03-29 12:46
OutPut of : 950329AI
Fluoride 1.5 Fluoride L
PPM PPM
Poo Typ Ident
Dil Weight Ch Result F Cor. Valu Time
wt rw RunOut Wash
1 1.000 3 0.061 4 0.0084
0 256 S759
0
0
0
Page 3 of 3
R40C)o
FLIDW cliato of 95032SAt
Fluoride
1.5
0 nK1m2zE3mmL--
14
CIO '7
0
Ese-Exit
Fl-Help
I Crtl-P=Edit
Peaks
T 1.. I
4375
Z5
4000
Raw date of SS032SAI
FILmoricia 1.5 l@64
C)
0
423
Tine
6798
Ese-Fxit
3 Fl-Help
I Ortl-P-Edit
Peaks
off 2.4168969-
Calibration curve of SS032SAI
@miiriviTNTr@
s
Fluoride t.S
4 6
0.0607697
Order
M..urd Inverse Logarithn
4006
s
3()34
2,-7
3.4480882--
Calibration curwe of SSM28AI
Fluoride L
c ci
0.0084278
a
Order
2
Measured
4000 r 0.98645
1995-03-30 10:59
output of : 95033OAl
Software
version 6.1 C1990,93
Operator
: DDW
Date of the Analysis Analysis File Name
: 1995-03-30 08:43 : C:\SKALAR\DATA\95033OAl
cai -T@ ,akct
-,33
Fluoride 1.5 Calibration order = Inverse Logarithm
Slope Result
: s = #.#####
6 x - cl l@
a dclag&A a
= 101 s
i
x = corrected value of the sample cl = corrected value of the concentration 1 s = Slope of the electrode
a2 = al m aO =
-0.00000 0.00088
-1.12348
Fluoride L Calibration order n 2
Correlation
r = 0.99781
Result = a2 x* + al * x + aO
a2 = al = aO =
0.00000 0.00033 0.01842
Sampler
Type
Number
Sample Time
Wash Air
Time Time
Take up
special
needle Height
SA1000 1 : 50 sec. : 120 sec. : 1 sec. : Single : None : 70 mm.
Diluter
needle Height dilution Factor dilution Volume Resample Dilution runs
80 mm 10 2.5 ml. 1 1
User file :
TXT
Reproces : No
-ZC(
1995-03-30 10:59
OutPut of
Fluoride 1.5
Path number Signal type Decolor system Number dilute Resample dil Threshold diG output Window event
3 : Debubbled : Yes :0 : No : No : 4095 :0 : Off
sl standard : Ignore
s2
standard : Ignore
s3
standard : Ignore
s4
standard : Ignore
ss
standard : Ignore
s6 standard :
0.150
s7
standard :
0.300
s8
standard :
0.600
S9
standard :
1.200
slO standard :
1.500
Order : Inverse Logarithm
Dimension : PPM
start Value
: 500 DU
trigger Limit : 1800 Sec
Peak shape
: Pointed
start ignore
: 60
Sec
eNd
ignore
: 120 Sec
Measure window : 75
Filter
: No
Regeneration
: No
formula
output
Fluoride L
Path number Signal type Decolor system Number dilute Resample dil Threshold diG output Window event
0 : Debubbled : No :0 : No : No : 4095 :0 : Off
95033OAl
1995-03-30
10:59
OutPut of
sl STandard
0.015
s2 standard
0.030
s3 standard
0.060
s4 standard
0.090
S5 standard
0.120
s6 standard s7 standard
0.150 Ignore
s8 standard
Ignore
S9 standard slO standard
Ignore Ignore
order : 2
Dimension : PPM
start Value
: 500 DU
trigger Limit : 1800 Sec
Peak shape
: Pointed
start ignore
: 60 Sec
eNd
ignore
: 120 Sec
Measure window : 75
Filter
: No
Regeneration
: No
formula
C4:=c3
output
95033OAl
1995-03-30 10:59
OutPut of : 95033OAl
Fluoride 1.5 Fluoride L
PPM PPM
Poo Typ Ident
Dil Weight Ch Result F Cor. Valu Time
wt iw Initial Wash
1 1.000 3 0.075 4 0.0184
0 155 65
0
0
0
1t
Tracer
1 1.000 3 1.248 2101 2274 211
4 b.8362 2101
0
0
2d
Drift
1 1.000 3 1.279 2139 2329 386
4 0.8533 2139
0
0
3w
Wash
1 1.000 3 0.075 4 0.0184
0 208 569
0
0
0
4 sl
Standard 1
1 1.000 3 0.075 4 0.0184
0 209 755
0
0
0
5 s2
Standard 2
1 1.000 3 0.079 4 0.0264
24 234 906
24
0
0
6 s3
Standard 3
1 1.000 3 0.096 4 0.0599
124 336 1084
124
0
0
7 s4
Standard 4
1 1.000 3 0.113 4 0.0882
207 420 1262
207
0
0
8 S5
Standard 5
1 1.000 3 0.137 4 0.1248
313 528 1435
313
0
0
9 s6
Standard
6
1 1.000 3 0.154
4 0.1472
377 594 1612
377
0
0
10 s7
Standard 7
1 1.000 3 0.287 4 0.2835
753 976 1785
753
0
0
11 S8
Standard 8
1 1.000 3 0.606 1308 1540 1962
4 0.4990 1308
0
0
12 s9
Standard 9
1 1.000 3 1.242 2093 2338 2137
4 0.8327 2093
0
0
13 siO Standard 10
1 I.GOO 3 1.461 2383 2636 2312
4 0.9645 2383
0
0
14 d
Drift
1 1.000 3 1.306 2173 2392 2487
4 0.8686 2173
0
0
15 w
Wash
1 1.000 3 0.075 4 0.0184
0 220 2729
0
0
0
Page 1 of 3
1995-03-30 10:59
OutPut of : 95033OAl
Fluoride 1.5 Fluoride L
PPM PPM
Poo Typ Ident
Dil Weight
Ch Result P Cor. Valu Time
16 u
blk 1
1 1.000 3 0.076 4 0.0204
6 224 2822
6
0
0
17 u
blk 2
1 1.000 3 0.074 4 0.0161
-7 208 3013
-7
0
0
18 u
blk 3
1 1.000 3 0.072 4 0.0115
-21 192 3183
-21
0
0
19 u
spk 1
1 1.000 3 0.095 4 0.0572
116 328 3363
116
0
0
20 u
spk 2
1 1.000 3 0.091 4 0.0505
96 304 3536
96
0
0
21 u
spk 3
1 1.000 3 0.093 4 0.0539
106 312 3706
106
0
0
22 u
spk 4
1 1.000 3 0.097 4 0.0606
126 330 3888
126
0
0
23 u
spk 5
1 1.000 3 0.098 4 0.0623
131 332 4063
131
0
0
24 u
spk 6
1 1.000 3 0.096 4 0.0589
121 320 4235
121
0
0
25 u
F52874-1
1 1.000 3 0.077 4 0.0221
11 208 4410
11
0
0
26 d
Drift
1 1.000 3 1.265 4 0.8456
2122 2316 4587
2122
0
0
27 w
Wash
1 1.000 3 0.075 4 0.0184
0 192 4766
0
0
0
28 u
F52874-2
1 1.000 3 0.076 4 0.0204
6 196 4935
6
0
0
29 u
F52874-3
1 1.000 3 0.075 4 0.0171
-4 184 5116
-4
0
0
30 u
F52879-1
1 1.000 3 0.074 4 0.0151
-10 176 5274
-10
0
0
31 u
F52879-2
1 1.000 3 0.073 4 0.0131
-16 169 5464
-16
0
0
Page 2 of 3
1995-03-30 10:59
OutPut of : 95033OAl
Fluoride 1.5 Fluoride L
PPM PPM
Poo Typ Ident
Dil Weight Ch Result F Cor. Valu Time
32 u
F52889-1
1 1.000 3 0.088 4 0.0444
78 261 5640
78
0
0
33 u
F52889-2
1 1.000 3 0.091 4 0.0501
95 276 5812
95
0
0
34 u
F52889-3
1 1.000 3 0.122 4 0.1023
248 426 5990
248
0
0
35 u
F52894-1
1 1.000 3 0.091 4 0.0508
97 274 6164
97
0
0
36 u
F52894-2
1 1.000 3 0.094 4 0.0562
113 288 6340
113
0
0
37 u
F52894-3
1 1.000 3 0.089 4 0.0464
84 258 6514
84
0
0
38 d
Drift
1 1.000 3 1.276 4 0.8519
2136 2308 6688
2136
0
0
39 w
Wash
1 1.000 3 0.075 4 0.0184
0 170 6872
0
0
0
40 u
F52895-1
1 1.000 3 0.081 4 0.0314
39 208 7034
39
0
0
41 u
F52895-2
1 1.000 3 0.082 4 0.0317
40 208 7212
40
0
0
42 u
F52895-3
1 1.000 3 0.077 4 0.0227
13 180 7388
13
0
0
43 d
Drift
1 1.000 3 1.310 4 0.8708
2178 2344 7565
2178
0
0
44 w
Wash
1 1.000 3 0.075 4 0.0184
0 165 7796
0
0
0
wt rw RunOut Wash
1 1.000 3 0.075 4 0.0184
0 138 8040
0
0
0
Page 3 of 3
4000 mzma@
Raw data of 95033OAt 0
Fluoricto I.S
Ezc=Exit
Fl-Holp
Crtl-P-Edit
peaks
Ti" 1
437S
4 coo
Raw data of 950330AI : FILoorlds 1.5
4 D
\ell
np
0
2423 'Eac-Exit I Fl-Help
I Crtl-P-Edit
Peaks
Ti I
6798
4000
Raw data of 950330AI
Fluoride 1.5
0 8798
Ese-Exit I FI=Help
I Crti-P-Edit
Peaks
Time
"A'Lol12
1.2520844,
Calibration curve of SS033GAI
FILsoricis 1.5
0.0752354i 0
Orcgmr
Inverse
Heamuremi Logarithn
a
4921
1.7848539-
Calibration curve of 950=Al
Fluoride L
c a
0.0184248;
a
Order
2
fleasured
r
0.99781
4000