Document KRVyaVEON05pnKK1MMkq0OEjx
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TWE-Z-IlnlAI,Y49
ANALYTICAL REPORT
K0iv 1 9
NIO,
TITLE: QUALITATIVE INVESTIGATION OF THE IN
VITRO METABOLISM
OF T-62929 T-62939 T-6294
AN]) T-6295 BY RAT AND HUMAN HEPATO-
CYTES USING ION SPRAY LC/MS AND LC/MS/MS
DATE:
November 12, 1996
REPORT:
96ADEM01.3M
AUTHORS:
Daniel E. Mulvana, B.S. Jack Henion, Ph.D.
PREPARED FOR:
NO. OF PAGES:
3M Medical Department, Toxicology Services, St. Paul, MN 55133
45
15 Catherwood Road a Ithaca, New York 14850 n (607) 266-0665 o Fax (607) 266-0749
2
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Title: QUALITATIVE INVESTIGATION OF THE IN VITRO METABOLISM OF T6292,T-6293,T-6294 AND T-6295 BY RAT AND HUMAN HEPATOCYTES USING ION SPRAY LC/MS AND LC/MS/MS
Reported by:
DanielE. Mulvana,B.S.
Date
SeniorResearchScientist
Reviewed and
Approved by:
Mary Ringwood, BQ
Date
QualityAssuranceManager
Authorized for Release by:
1157@
Jack Henion,Ph.D.(@'q
Date
LaboratoryDirector
Advanced BioAnalyticaSlervices
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QUALITATIVE METABOLISM AND HUMAN LC/MS/MS
3
INVESTIGATION
OF THE IN VITRO
OF T-6292,.T-6293, T-6294 AND T-6295 BY RAT
HEPATOCYTES
USING ION SPRAY LC/MS AND
ABSTRACT The in vitrometabolism of T-6292, T-6293, T-6294 and T-6295 was investigated usinga sensitivaend highlyspecifiacnalyticamlethod developedby Advanced BioAnalyticaSlervicesI,nc.,IthacaN,Y. Thismethod involvesa simpledirect injectioLnC/MS analysisof 'processedhepatocyteincubate. Siliconized polyethylenteransfepripetsand polypropyleneautosamplervialswere used forall samples.LCIMS andLC/MS/MS experimentwsere performedinthenegativeion mode usingan ionsprayinterfaceC.hromatographywas performedon a 2 rinnx 100mm BetasilODS column usinggradienetlutiownitheitheraqueous ammonium acetatweithmethanolor waterwith methanol.Using a directinjectiomnethod, ratherthanone usingextractioenn,ableddetectioonf a wide varietyof metabolites ina singlienjectioInn.cludedinthisreportaremetabolismdatafrom individuarlat and human samples.Severalmetabolitewsere foundintheratand human samples and differencewsere observedbetweenthespecies.
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TABLE OF CONTENTS
SIGNATURE PAGE
2
ABSTRACT PAGE
3
1- INTRODUCTION
7
1.1 Introduction
7
1.2 Study Objective
7
2. EXPEREQENTAL
7
2.1 Chemicals and Materials
7
2.2 LC/MS Instrumentation
7
2.3 StandardSolutions
8
2.4 HPLC Eluent Preparation
8
2.5 Sample Preparation
8
2.6 Sample Analysis
9
2.7 Data Handling
10
3. RESULTS AND DISCUSSION
11
3.1 Mass SpectrometriRcesultsforTestArticles
11
3.2 Metabolism by Rat Hepatocytes
.11
3.3 Metabolism by Human Hepatocytes
15
4. CONCLUSIONS
16
5. REFERENCES
16
FIGURES
Figure 1. Structureosf thestudytestarticles.
17
Figure2. Negativeionizatiomnass spectraobtainedfrom thetestarticleTs-6293 ([M-
H]-= 650.1),T-6294 ([M-H]-= 526.1)and T-6295 ([M-H]-= 498.9).
18
Figure3. Production spectraobtainedfrom the deprotonatetdestarticleTs-6293, T-
6294, and T-6295.
19
Figure4. Proposed CID fragmentatiomnechanism forT-6293.
20
Figure5. Proposed CID fragmentatiomnechanism forT-6294.
21
Figure6. Proposed CID fragmentatiomnechanism forT-6295.
22
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Ficru7r.e Totalion and extractedfragmention chromatogramsforT-6292 obtained
from Rat ControlSample 13.
23
Figure8. Totalion and extractedfragmention chromatogramsfor T-6292 obtained
from Rat 1,0-Hr sample.
24
Figure9. Extractedion chromatogramsof fragmentpeaks for T-6292 homologous
seriesinRat 1,0-Hr sample.
25
Figure 10a. Proposed structuroef parentcompound forT-6292 homologous seriesfrom
Figures8 and 11.
26
Figure 10b. Proposed structuroef glucuronidefor homologous seriesfrom Figures 12
and 13.
26
Figure 11. Totalion and extractefdragmention chromatograms for T-6292 obtained
from Rat 1,6-Hr sample.
27
Figure12. Extractedion chromatogramsof putativeglucuronidepeaks for T-6292
homologous seriesinRat 1,6-Hr sample.
28
Figure 13. Extractedion chromatogramsof putativeglucuronidepeaks for T-6292
homologous seriesinRat 1,0-Hr sample.
29
Figure 14. Proposedstructureosfthesulfonamideand carboxylicacidmetabolitesforT-
6292 from Rat 1.
30
Figure 15. Extractedion chromatogramsof sulfonamide(nVz 498) and carboxylicacid
(nVz 584) metabolitefsorT-6292 from Rat 1,0-Hr (top)and 6-Hr (bottom)
samples.
31
Figure16. Production scanforcarboxyliaccidmetabolitoef T-6292 in Rat 1, 6-Hr
sample and proposedfragmentstructures.
32
Figure17. Total ion and extractedparent(nVz 650) and proposed metaboliteion
chromatograms forT-6293 obtainedfrom Rat ControlSample 13.
33
Figure 18. Totalion and extractepdarent(M/z 650) and proposed metaboliteion
chromatograms forT-6293 obtainedfrom Rat 1,0-Hr sample.
34
Figure 19. Totalion and extractepdarent(nVz 650) and proposed metaboliteion
chromatogramsforT-6293 obtainedfrom Rat 1,6-Hr sample.
35
Figure20. PossiblestructurefsortheobservedmetaboliteosfT-6293 with [M-H]- of
542 and 556 amu from Rat 1.
36
Figure 2 1. Extractedionchromatogramsof sulfonamide(nVz498) and sulfonate(nVz
499) ionsforT-6293 fromRat 1,0-Hr (top)and6-Hr (bottom)samples.
37
Figure22. Extractedionchromatogramsof proposed metabolitewsithnVz 327 and 419
forT-6293 from Rat 1,0-Hr(top)and 6-Hr(bottom)samples.
38
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Figure 23. Total ion and extractedparent(m/z 526) and proposed metaboliteion
chromatograms forT-6294 obtainedfrom Rat ControlSample 13.
39
Figure 24. Total ion and extractedparent(m/z 526) and proposed metaboliteion
chromatograms forT-6294 obtainedfrom Rat 1,0-Hr sample.
40
Figure25. Total ion and extractepdarent(m/z 526) and proposed metaboliteion
chromatograms forT-6294 obtainedfrom Rat 1,6-Hr sample.
41
Figure 26. Product ion scan for perfluorooctanesulfonamide metabolite
(CF3(CF2)7So2NH2, m/z 498) of T-6294 inRat 1,6-Hr sample and proposed
fragment structures.
42
Figure 27. Totalion and extractepdarent(m/z 499) and homolog ion chromatograrnsfor
T-6295 obtainedfrom Rat ControlSample 13.
43
Figure 28. Totalion and extractedparent(nVz499) and homolog ion chromatograms for
T-6295 obtainedfrom.Rat 1,0-Hr sample.
44
Figure29. Totalion and extractedparent(m/z499) and homolog ion chromatograms for
T-6295 obtainedfrom Rat 1,6-Hr.
45
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INTRODUCTION
1.1 Introduction The invitrometabolismofT-6292,T-6293,T-6294 and T-6295 in ratand human hepatocytiencubateswas investigatuesdingion spray LCFMS and LC/MS/MS. The quenchedincubatewsere directliynjecteadnd separatedon an HPLC column. Chromatographicresolutioonf thevariousconstituentwsas accomplishedusing gradientelutionwithmethanoland eitherwateror 2 mN4 ammonium acetatein water.The mass spectrometewras operatedinthefullscan(M/z 100to800) single MS mode and peaks of interest'wetrheenstudiedby MS/MS techniquesfor confirmatioonfselectemdetabolitpeeaks.
1.2 Study Objective The objectivoef thisstudywas todetectand characteriztehemetabolismofT-6292, T-6293,T-6294 and T-6295 by ratand human hepatocytes.
2. EXPERIMENTAL
2.1 Chemicals and Materials T-6292,T-6293,T-6294 and T-6295 (Figure1)were providedby 3M Medical Department,ToxicologyServicesS,t.Paul,MN 55133.
Siliconizepdolypropylenaeutosamplervialc:at# 500 102,Sun Brokers,Inc., WilmingtonNC 28402.Siliconizbeyd EaglePicherIndustrieIsn,c.M,iami, OK 74354
Siliconizepdolypropylensecrew-captubes:16 X 101 mm, Cat# 60.541,Sarstedt Inc.,Newton, NC 28658,siliconiziend-house.
2.2 LC/MS Instrumentation Liquid chromatographywas performedusing eithertwo Shimadzu LC-IOAD pumps (ShimadzuScientifIincstrumentsI,nc.,Columbia,MD 21046) with a WatersWISP 717 plusautosample(rWaters,MilfordMA 01757)or a HewlettPackard1090L liquicdhromatograph(Hewlett-PackarAdv,ondale,PA 19311).A BetasilC18 column,2 mm x 100 mm, was obtainedfrom KeystoneScientific,
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Inc.,BellefonteP,A 16823. The mass spectrometerussed were an API III'and API 300 from PE-SCIEX, Concord,Ontario.
2.3 Standard Solutions Sincecertificatoefsanalysiswere not availablfeor the testcompounds, 100% puritywas assumed,althoughinthecaseofT-6293,thepuritywas known todiffer significantflryom thisvalue. Stocksolutionosf T-6292,T-6293,T-6294 and T6295 were preparedata concentrationf 10 mM indimethylsulfoxide.Working solution(s10 gg/mL) of each standardwere preparedin 1:1 acetonitrilmeM:2 ammonium acetate.AU stocksolutionasnd working solutionswere storedat4'C and were allowedtoequilibratteoroom temperaturebeforeuse.
Preparation of AnalyticalStandard Stock Solutions
Stock Solutionsof T-6292, T-6293, T-6294 and T-6295 (10 mM): Accuratelyweigh eachtestarticloen a micro balanceand transfeirtto a 16 X 101 nun siuconizepdolypropylenetube. Dissolvethe solidsample in an appropriate amount ofDMSO toyielda 10mM solution.
Working Solutionsof T-6292, T-6293, T-6294 and T-6295 (10 gg/mL): Dilutean appropriataeliquootf 10mM stocksolutiotno 10 mL with 1:1 2 mM ammonium acetataec:etonitrilnea 16 X 101 mm siliconizepdolypropylene tube.
2.4 HPLC EluentPreparation 2 mM Ammonium acetateA:nunonium acetate(154.2 mg) was weighed and transferreidntoa I litegrraduatedcylinderA.fteraddingwatertothe I-L mark, the stiffesdolutionwas filtereudnder vacuum througha 0.45gm filter.
Methanol:Methanol was filtereudnder vacuum througha 0.45Jimfilter.
2.5 Sample Preparation The metabolismstudywas carriedout atSRI InternationaMle,nlo Park,CA. The incubateswere quenched with an equalvolume of ice-coldmethanol,centrifuged and shippedpacked indry iceto Advanced BioAnalyticaSlervices(ABS). The sampleswere storedatABS at-20*C and were removed only for transfeorf
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supematant to an autosamplervial. Aftersampling,theautosamplervialswere maintainedinan ice-waterbathatalltimesexceptduringinjection.
2.6 Sample Analysis The samples analyzed includedRat I (alltestarticles0, and 6-Hr and control sample 13 (no testarticlea)n)d Human #H-1 16 (alltestarticles0,and 6-Hr). These were extensivelystudiedunder a varietyof chromatographicand mass spectrometricconditions.
HPLC Conditions: InitiaHlPLC analyseswere successfullpyerformed using gradientelutionwith waterand methanol only. Laterinthestudy,itwas found that ammonium acetatewas requiredfor elutionof T-6293. Thus, water was replaced by 2 mM ammonium acetateforfurtheranalyticawlork. Because two different gradientpumps were used forthiswork, itwas difficultto reproducethe gradient obtainedusing theBP-1090L with theShimadzu LC-IOAD, thus for consistency withingradientsystems,the same gradientprogram was used for both systems. Although thisresultedin some variabilitiyn retentiontimes between days, depending on the system used,allcomparable samples were analyzedwith the same system.
GradientProgram:
Time (Min) 0 5 9 10 15
%Methanol 20 95 95 20 20
%Water
(2mM Amm.Acetate) 80 5 5 80 80
Mass SMtrometer Conditions: The mass spectrometerwas operatedin the ion spray mode with negativeion detection.The curtaingas was ultra-higphuritynitrogen. Although MS and MS/MS conditionswere variedfor differenatnalytest,hemain differencewsere in ion sprayvoltage,orificveoltageand collisioennergy.No positiveionizationwork was performed,as theanalytesof interesdtid not ionizeunder theseconditions.It
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is conceivablethatadditionamletabolitecsould be detectedusing positive ionizationa,nd thisshouldbe a partoffurtherexperimentation.
The approximateMS and MS/MS acquisitiopnarametersused fortheAPI HI' are listebdelow. Similarparameterswere used forthework performedon theAPI 300.
MS Mode
MS/MS Mode
IonSpray Voltage
-3600 V
-3600 V
OrificVeoltage
-70V
DeclusterinPgotential
42V
-70V 42V
CurtainGas (U.H.P.N2)
1.2LPM
1.2LPM
NebulizerGas (N2)
60 PSI
60 PSI
CollisioEnnergy
18 eV
CGT Scan Range
100-800 amu
250 variable
Step Size
seeNote below
variable
Dwell Time
3 msec
4 msec
Note: InitiaLlC/MS stepsizesof I amu were usedtolocatethechromatographic
peaks of potentiamletabolitesO.nce located,stepsizesof0.1 amu were used for
mass confirmation.
Instrumentmass axiscalibratiownas performedby infusionofPPG-425 calibration solutio(npolypropylengelycols,averagemolecularweight425, dissolvedin 1:1 methanol:2niM ammonium acetatecontaining0.1% fomiic acid and 0.1% acetonitrialtea)flowrateof 10 pumin inthepositivieo'mnode of detection.Peak widthswere approximatel0y.6 amu at half-heighitn thesingleMS mode. A calibratiocnheckwas performedfortheanalyteson Ql and Q3 by infusionof a 1 ggftnlsolutionin 1:1 acetonitrilmeM:2 arrunoniumacetataeta flow rateof 10 gumin. The mass spectrometripcarametersand sensitiviwteyre optimizedusing
thissolutioant50 pljhiin.
2.7 Data Handling Allraw chromatographiacnd mass spectrometridcatawere storedon theABS file serverABSI-FS.DATA inthefilehierarch"yRA)VDATA: Development:3M: 3M
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Metabolism".All pertinenetxperimentalinformationwas storedin ABS notebook No. 1067.
3. RESULTS AND DISCUSSION Initiailnvestigatioonfstheinvitrometabolismofthetestarticlewsere performed usingdirectinjectioonf thequenched hepatocyteincubatesratherthan sample extraction.The reasonforthisisthat,due tothepolarnatureofthesecompounds and suspectedmetabolitesi,twas feltthatextractiornecoverieswould be low and importantmetabolitescould be missed. Most ofthemass spectrometricinformation obtainedinthisstudywere from Q I scanningexperiments,followedby production scans.Precursorion scansof logicalCID productionswere used but resultedonly inconfirmationofpreviouslyfound metabolitespresentathighlevels.Neutralloss experimentswere even lesssensitivuender theconditionsused and provided little information.
3.1 Mass Spectrometric Analysis Results for Test Articles Structuresof T-6292, T-6293, T-6294 and T-6295 are shown in Figure 1. The negativeionizatiomnass spectraobtainedfrom infusionof the individualanalytes areshown inFigure2. Itshouldbe noted thatT-6292 could notbe ionizedineither thenegativeionizatiomnode, sinceithas only a very weakly acidicalkylhydroxyl group or thepositiveionizatiomnode, sincethemost basicsiteisa tertiarnyitrogen of a sulfonamide.
The factthatT-6293 existsmainly in the diphosphoestefrorm' (K =1204), comprising82% of T-6293 solids,accountsfor the reducedresponse seen for the monoester (M, = 65 1),when compared toT-6294 and T-6295. The diesterwas not detectableunder theconditionsused inthisstudy.The negativeionizatiocnollision induceddissociatio(nCID) full-scasnpectraof the compounds are presentedin Figure3. T-6295 was found tobe extremelystableand requiredboth a high orifice voltageand high collisioennergyforfragmentation.A summary descriptioonf the proposed plausibleCIODfragmentationpathways areshown in Figures4-6. Several of thesefragmentswere diagnosticformetaboliteidentification.
3.2 Metabolism by Rat Hepatocytes Metabolism ofthetestarticlebsy rathepatocyteswas examined using a Sciex API III'mass spectrometer.
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3.2.1Metabolism of T-6292 by Rat Hepatocytes AlthoughT-6292 did not ionizeunderthe conditionussed,and was thus not detectablien theseexperiments,severalpotentiamletaboliteswere nonetheless found. When comparingthe totalion chromatogram(TIC) obtainedfrom the controlratsample (Figure7, top;no testarticlaedded)with thatobtainedfrom the Rat 1,0-Hr sample (Figure8, top,reactioqnuenchedatapproximatelytime0), severallargepeaks areobservedinthelatteorver therangeof 7.2to 8.5 min which areabsentin the controlsample. Itshouldbe noted thatthereis a 0.5 min differencbeetweentheTICS, due to operatorerror;thecontrolTIC peaks are0.5 min earlierT.he 0-Hr peaks were'foundtocontainmasses in a homologous series which are compound relatedbut which may alsobe impuritieosr degradation products.Each of theobservedpeakscontainsmasses which differby 80 and 107 amu. An example isgiveninFigure9. Itissuspectedthatthedifferenitonswithin each chromatographicpeak were generatedby CID inthesamplingorificreegionof themass spectrometersinceno collisiognas was used. In theexample given,the lowestmass ion,rri/3z19, isa characterismtaiscs forperfluoroalkyclompounds, namely, C6F,3, The second ion,ni/z426, is 107 amu higher,which has been previouslydescribedforthesecompounds as a lossofEtNS02 (Figure5). The ion observedatnVz 506 is 80 amu higher,which correspondto S03, a common loss under theseconditions.Thus,theproposedstructureosf thisand theotheranalogs areshown inFigure10a. Itmay'be somewhat surprisintghat0-Hr sample would containmetaboliteastsignificalnetvelsh;owever, forrapidreactionst,hesampling and quenchingatthistimepointmay be crucial.
Summary extractedionchromatogramsof thefragmentions analogousto nitz319, differinognly by CF2 groups,are shown in Figure 8. As predictedn,o correspondingpeak appearsfornilz469 (C9F,9),sincethiswould exceed the perfluoroalkyclhainlengthofthepar-enmtolecule.Chromatographicpeak splitting isevidentin thelateelutingpeaks,probablydue to chromatographicresolutioonf thebranchedisomersofthesecompounds. CorrespondingspectrafortheRat 1, 6Hr sample (Figure11)indicatae decreasedresponseforthesecompounds, except for the parentCF,7 fragment(nVz 419). The controlsample containedno significanltevelsof theseions(Figure7).
An additionahlomologous seriesof proposedmetaboliteosf theparentcompound and impuritiehsas been observedwhich appearto be glucuronicacidconjugates.
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The masses ofthesecompounds match thoseof the0-glucuronides(Figure10b)of thesecompounds. Figure12 shows theextracteidonchromatogramsforthe [MH]- of the suspectedintacgtlucuronideisn the seriesfor Rat 1, 6-Hr. The glucuronideosf theC3 analogthroughtheparentcompound, the C8 analog,are presented.By comparison,the peaks are greatlydiminishedin the 0-Hr sample (Figure13)and absentinthecontrolsample(datanotshown). No evidencewas found forany of thepossibleN-glucuronides.
An additionamlajor metabolitweas theN-di-dealkylatpeedrfluoroalkyslulfonamide (Figure14)withan [M-H]-ofm/i 498. For thiscompound, a homologous series was alsoobserved,butonlyfortheC7 and C6 homologs (datanot shown). A carboxyliaccidmetabolitweas alsofound (Figure14)with an [M-H]- of nVz 584. A homologous serieswas found for thismetabolitwehich includedthe C4-C8 homologs (datanotshown). Extractedionchromatogramsof theC8 homologs of thesemetabolitefsrom Rat 1,0 and 6-Hr arepresentedinFigure15. To support theproposed structuroef thecarboxylicacidmetabolitea,n MS/MS production scanwas performedforprecursorion nVz 584 (Figure16). The fragmentions formedwere consistenwtiththestructuren.e parention isnot observedbut a conceivablleossof thethree-memberedlactoneCH2C02 from thecarboxylicacid anionwould producetheionatnVz 526.
3.2.2Metabolism of T-6293 by Rat Hepatocytes T-6293 alsounderwent significanmtetabolismby rathepatocytes.'Me TICs obtainedfrom thecontrolsample,Rat 1,0-Hr and Rat 1,6-Hr arepresentedatthe topof Figures17,18 and 19,respectivelyA.s withT-6292,a 0.5 n-@ndifference existsbetween theTICS,due to operatorerror;thecontrolTIC peaks are0.5 n-iin earlierS.everalpossiblemetabolitewsere found intheratsamples. The extracted ionchromatogrwnsfortheanionsof thesemetaboliteasrealsoshown in Figures 17-19.None of themetabolitefsound in the6-Hr samplewere found ineitherthe 0-Hr or controlsamples.The parentanionatm/z 650 was found inboth the0 and 6-Hr samples,althoughreducedby halfinthelatter.
PossiblestructurefsornVz 542 and 556 areshown inFigure20. Very littl"eup front"CID occurredforthesepeaks,thusMS/MS experimentswould be required to supportthe proposed structures.The observedretentiotnimesare consistent with theproposedstructuresw,ith the acidelutingearlietrhanthe alcohol.The
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metaboliteobservedwithan [M-H] ofm/z 584 was shown tobe thecarboxylicacid previouslyseenforT-6292 (seeFigure14)by aMS/MS production scan (datanot shown). The glucuronidperoposedforT-6292 was alsoseen in T-6293 (Figure 19,m/z 746).
The ions498 and 499 were presentatsignificanltevelsinboth 0 and 6-Hr samples, althoughtheybothhad higherresponsesinthe6-Hrsample(Figure2 1).The Rely structureosf thesecompounds areperfluorooctanesulfon(amt/ez 499, T-6295) and perfluorooctanesulfonam(imd/ez 498). From Figure21, itcan be seen thatfor both0 and 6-Hr samples,thelatemr/z 499 peak coincideswiththe498 ion.This is believedtobe an artifadcute to theisotopicontributionf the ni/z498 ion and incompletemass resolutiobnetween m/z 498 and m/z 499. Additionallyt,he observedretentiotnimeforthefirspteak inthenVz 499 ion chromatogram iscloser to thatroutineloybservedfor perfluorooctanesulfontahtaen for the second (see Figure28). Thus, itisassumed thatthesecondnVz 499 ion is actuallMy/z 498 being detectedas nL/z499.The nVz 499 ion was found atsignificanthliygh levels in allcontrolsamplesexamined (datanot shown) atthesame retentiotnime as in thesesamples. Thus, whileitmay alsobe a productof metabolism,thereisan endogenous backgroundlevelas well.
Two additionailonswere found intheTIC, m/lz327 and nVz 419 (Figure22).The ionatnVz 419 isa common fragmention (seeFigure4) and an easilyconceivable productof degradatioannd/ormetabolismwhile m/z 327 is more difficultto rationalizaend may be a productof"up front"CID witha parentionhigherthanthe scan range used. Furtherexperimentatiownould be required.In the control sample,neitherionwas detected(notshown).
3.2.3 Metabolism of T-6294 by Ra't Hepatocytes The TICs and extracteidonchromatogramsfortheproposed metaboliteosf T-6294 from thecontrol0,-Hr and 6-Hr samplesforRat I arepresentedin Figures23-25, respectivelyT.he parentcompound ([M-H]-= 526) was observedinboth 0 and 6Hr samplesatapproximatel8y.7 min. Severalmetabolitewsere found in therat hepatocytesamples for T-6294. The main metabolitewas perflurorooctane sulfonamide([M-H]-= 498,8.0min),theN-dealkylatiopnroduct.This metabolite was observedin boththe0 and 6-Hr samples,althoughitwas much largerin the latterA. MS/MS productionscanwas performedon the6-Hr sample forprecursor
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ion m/z 498 (Figure26),and allobservedfragmentsupportedthe proposed structure.The stnicturefsor the radicalspeciesshown in Figure 26 are not proposed tobe themost stableconfigurationsT.he metaboliteobserved atnvz 483 (6.6min) ispostulatedto be thesame as thefragmentionproposed inFigure 16. The remainingmetaboliteastm/z 542 and 556 arepostulatedto be those in Figure 20,with oxidationoccurringon theterminalmethylgroup.
3.2.4 Metabolism of T-6295 by Rat Hepatocytes The controlblank,0-Hr and 6-Hr TICs for T-6295 in Rat I are presented in Figures27-29,respectivelyA.s previouslystated(Section3.2.2)t,he499 ion was observed observedin allcontrolsamples. The remainingions in the extractedion chromatograms aremembers of thehomologous seriesseenpreviouslyfor T-6292.. Itisdifficultto believethattheseareproductsof metabolismsincetheirformation would requiredeletionof CF2 unitsfrom the chain. Apparently,T-6295 is metabolizedminimallyby rathepatocyteincubates,asjudged by the high levelsof parentinboththe 0 and 6-Hr samples.
3.3 Metabolism by Human Hepatocytes Metabolism of the testarticlebsy human hepatocyteswas similarto thatof the rat but fewer typeswere seen.The human samples were examined using a Sciex API 300 mass spectrometerh,owever, the investigatiownas lessextensivethanthatof theratsamples. Furtherwork iscertainlwyarranted. Since no new metabolism was discoveredforthehuman samples,theresultswillonly be discussedusing text;no figuresarepresented.
3.3.1 Metabolism of T-6292 by Human Hepatocytes The homologous seriespresentedin Figure 10a was not observed in the human. Interestinglhyo,wever, theglucuronideseriespresentedin Figure 10b was seen in the 6-Hr samples. The sulfonamideinFigure 14 was observed atvery low levels and the acidinFigure 14 was not detectedatall.
3.3.2 Metabolism of T-6293 by Human Hepatocytes The parent ion was the only compound-related moiety seen in these samples; however, with optimizatioonf themass spectrometerfocused on T-6293, further informationshouldbe attainableB.ased solelyon abundance the parention isone-
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thirdlower inthe6-Hr sample thaninthe0-Hr sample, thus some metabolism may have occurred.
3.3.3 Metabolism of T-6294 by Human Hepatocytes The parent and sulfonamide metabolite(nVz 498, see Figure 14) were the only compound-relatedionsobserved in the samples. The abundance of the parention in the 0-Hr sample was reducedapproximatelyby halfin the 6-Hr sample and, conversely,the abundance of the sulfonamidein the 0-Hr sample was approximatelydoubled inthe6-Hr sample.
3.3.4 Metabolism of T-6295 by Human Hepatocytes There were no discemable differencebsetween the0 and 6-Hr sample forT-6295.
4. CONCLUSIONS Severalpotentiamletabolitesand impuritieswere determinedfrom theLC/MS data in the study. FurtherMS/MS experimentationp,ossiblyin conjunctionwith a sample cleanupand concentratiosntep,would be requiredto furthersupport the postulatedstructureisn theratsamples. Additionallyf,or the human samples, furtherhigh sensitivitdyetectionexperimentatioins required for complete preliminaryinvestigatiofno,llowedby MS/MS experimentatiofnor confirmationof the metabolitestructures.
5. REFERENCES 1. Gordon, StevenC.,Ph.D.,D.A.B.T.,HealthHazard Summary of A=onium SaltsofMono-, Di- and Tri[N-ethyl(perfluorooctane)sulfonarnidoethyplh)osphate(FC-807). September 14,1994. Suppliedby 3M Company.
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17
Figure 1. Structuresof the study testarticles
T-6292 Mr= 571
0
F3C-CF2-CF2-CF2-CF2-CF2 CF2-CF2-S-< 11 0
CH2-CH3 CH2-CH2-OH
T-6293 Mr = 651
0 ll_
F3C-CF2-CF2-CF2-CF2-CF2-CF2-CF2-19
<
11 0
CH2-CH3 0
11
CH2-CH2-0-P-OH 1 Uri
T-6294 Mr= 527
0 1<
F3C-CF2-CF2-CF2-CF2-CF2-CF2-CF2-S-
11 0
CH2-CH3 H
T-6295 Mr= 500
0
11
F3C-CF2-CF2-CF2-CF2-CF2-CF2-CF2-S-OH
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Figure 2.
Negative ionizationmass spectra obtained from the testarticles T-6293 ([M.Hl- = 650.1), T-6294 ([M-HI" = 526.1) and T6295 ([M-Hl- = 498.9)
Spectrum from T-6293 ql.Ol
UCL) l.8e6. 220.0
1.2e6.E 6.Oe5-
255.2
650.1 1.95e7 cps
200
360
400
Spectrum from T-6294 ql.02
co 9.Oe6CLL)
6.Oe6-
3.Oe6-
Soo
600
m/z, amu
526.1
700 1.96e7 cps
2@O
380
400
5;0
600
m/z, amu
Spectrum from T-6295 ql.03
9.Oe6-
498.9
CL
6.Oe6-
-E 3.Oe6220.0
399.1
200
300
460
560
600
m/z, amu
700 1.93e7 cps
700
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Figure 3. Product ion spectraobtainedfrom the deprotonatedtestarticles T-6293, T-6294, and T-6295.
T-6293 Product Ion Scan 10()
Z@ 7550-
251
123 cc 0 1 4 li
100
200
495,000 526
650
419
I-
300
400
500
600
700
rrl/z
T-6294 Product Ion Scan 10D
75-
50CD
25
126
100
169
219
200
269
300
ni/z
419
400
405,000 526
500
600
T-6295 Product Ion Scan
ioa 2t, 75.
50. (D
25
a: 0 1
80 99
1, 1 100
130
11
169
11
230
I- 1 -
200
280
-, i
300 rrvz
330
41.
40* 0
1,620,000
499
I
500
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20 Figure 4. Proposed CID fragmentationmechanism for T-6293.
T-6293 m/z 650
F3C-CF2-CF2-CF2-CF2-CF
0
1 CH2-CH3 0
2-CF2 -CF2-S-<
ii
11
-CH2-0-P-OH
0
PC@H
(Ox (124amu)
m/z 526 F3C-CF2-CF2-CF2-CF2-CF2-CF2-CF2-S
Et-N=S02 (107 am u)
0 CH -CH3
-N
0
m/z 419
F3C-CF2-CF2-CF2-CF2-CF2-CF2-CF2
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21 Figure 5. Proposed CID fragmentationmechanisms for T-6294.
T-6294 m/z = 526
F3C-CF2-CF2-CF2-CF2-CF2-CF2-CF2-S
11 14-@0
H2-CH3
0 F-S-N
CH2-CH3
Et-N=S02 (107amu)
M/z 126 (pathway notshown)
m/z = 419
d@ c b@ a@ F3C-C;F.2;-CfF,;I-rC?F, -CF -CF2-CF2-CF2
d
c
F3C-CF2 M/z = 119
F3C-CF2-CF2-
m/z = 169
\a a b
F3C-CF2-CF2-CF2-CF2
F3C-CF2-CF2-CF@-
m/z = 269
m/z 219
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Figure 6. Proposed CID fragmentationmechanisms for T-6295.
T-6295 m/z 499
F3C-CF2-CF2
-CF2-CF 2-C,IF2-CF2-
0
11 *CF',2 -)s 0 -
Pathway A
Pathway B: Homolyticcleavages along perfluoroalkcyhlain
S03 (80 amu)
m/z = 419
d b@ a F3C-CF CF CF CF -CF2-CF2-CF2
/dd
c
F3C-CF2
m/z= 119
F3C-CF2-CF2-
m/z = 169
\aa b
F3C-CF2-CF2-CF2-CF2
F3C-CF2-CF2-CF@-
M/z 269
m/z = 219
CF2(CF2)4SCF3
m/z = 330
CF2(CF2)3SCF3' M/z = 280
-CF2(CF2@S03- m/z = 230
CF2CF2SO@
CF2SO3 -S03
m/z = 1'80 m/z = 130 M/z = 80
0 11 F-S-0
0 m/z = 99 (pathwaynotshown)
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Figure 7.
Total ion and extractedfragment ion chromatograms for T6292 obtainedfrom Rat Control Sample 13.
TIC ofallmasses, 100 to 800
controlsample 13,no TA
too-
75-
50-
> 25-
n
1
101
0.0
2.5
controlsample 13,no TA 169/169
201
301
4.9
7.3
Scanrrime(min)
2,805,000
401 9.7
590,000
219/219
110,000
269/269
A@ 319/319
.
-
.
45,000 10,000
369/369
590,000
419/419
-
-
469/469
0.0
2.0
1
84
ACDVANCED BIOANALYTICAL SERVICES. INC.
55,000
i -A
boAcibmiL
590,000
4.0
6.0
165
248
Time (min)/Scan
8.0
10.0
331
414
REPORT: 96ADEMOI.3M
24
Figure 8. Total ion and extractedfragment ion chromatograms for T6292 obtained from Rat 1, 0-Hr sample.
TIC of allmasses@ 100 to800
T-6292 Rat 1,0-Hr,lo ulini
100.
75-
50-
25
1.4
cc n- c--1
0.0
1691169
3.
101
2.4
5.1
39
201 4.8 ScanMme (min)
8.4.
75
5,090,000
301
401
7.2
9.6
7.25
820,000
219/219
7.54
765,000
269/269 319/319
7.75 8.09
485,000 645,000
369/369
4191419 469/469-
833 FL
185,000
605,000 820,000
0.0
2.0
4.0
6'0
8.0
10.0
1
84
167
250
333
416
Time (min)/Scan
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Figure 9. Extractedion chromatograms of fragment peaks for T-6292 homologous seriesin Rat 1, 0-Hr sample.
T-6292 Rat 1,0-Hr,10 ulini 319/319
10(@ 7EP
cc 25
426/426 1 00@
75 5G cc 29
506/506 100 7.5 50 cc 2
0.0
2.0
1
84
4.0
6.0
8.0
167
250
333
7ime (min)/Scan
645,000
125,000
280,000
10.0 416
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Figure 10a. Proposed structure of parent compound homologous seriesfrom Figures 8 and 11.
for T-6292
0
1
F3C-(CF2)n-CIF'2-S<
11 0
CH2-CH3
03-
Mass ofParentAnion
n
356
1
406
2
456
3
506
4
556
5
606
6
CorrespondingFragment Ion in FiL-ures8 and II
169 219 269 319 369 419
Figure 10b. Proposed structureof glucuronide for homologous series from Figures 12 and 13.
0 11
F3C-(CF2)n-CF2-S-<
11 0
CH2-CH3
CH2-CH2-0--GIU-
Mass of Parent Anion
n
496
1
546
2
596
3
646
4
696
5
746
6
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Figure 11. Totalion and extractedfragmention chromatograms for T. 6292 obtainedfrom Rat 1, 6-Hr sample.
TIC ofallmasses, 100 to800
T-6292 Rat 1,6-Hr,10 ulini
100
75
50,
25,
cc n-
1
101
0.0
2.4
169/169
201
301
4.8
7.2
ScarvTime(min)
7.27
4,295,000
401 9.6
575,000
219/219 269/269
319/319
A
k,4@-
7.49
IL
IL 8.05
195,000 160,000
170,000
369/369
4191419
469/469
8.33
A=A
200,000
840,000
840,000
0.0
2.0
4.0
6.0
80
10.0
1
84
167
250
333
416
Time (min)/Scan
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Figure 12. Extractedion chromatograms of putativeglucuronidepeaks for T-6292 homologous seriesin Rat 1, 6-Hr sample.
T-6292 Rat 1, 6-Hr,10 ulinj
496/496
lo
50
a: 0
546/546
lool 50cc 0.
596/596 0 50
cc
0
646/646
lo 50
0 696/696
10
50
cr_ 0 746/746
lool
50,
CD
0-
0.0
2.0
1
84
5.56 5.97
6.21
6.43
6.57
6.69
4.0
6.0
8.0
167
250
333
7ime (min)/Scan
155,000 180,000 50,000 100,000 10,000 90,000 10.0 416
MMM
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Figure 13. Extractedion chromatograms of putativeglucuronidepeaks for T-6292 homologous seriesin Rat 1, 0-Hr sample.
T-6292 Rat 1,0-Hr,1o ulini
496/496 10 50
0 546/546
105,000 45,000
ioo50,
0. 596/596
100. 50-
10,000
0.
646/646
25,000
100, 50. ir 0.
696/696
10 50
01 746/746
105,000 10,000
10 50
cc 0.0
2.0
4.0
6.0
8.0
10.0
1
84
167
250
333
416
Time (min)/Scan
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Figure 14. Proposed structuresof the anions of the sulfonamide and carboxylicacid metabolitesfor T-6292 from Rat 1.
Sulfonamide Metabolite(m/z498)
0
11 F3C-(CF2)6-CF2-S-NH
CarboxylicAcid Metabolite(m/z584)
0 I F3C-(CF2)6 -CF 2-S-<
11 0
CH2-CH3
CH2- 0 0
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Figure 15. Extractedion chromatograms of sulfonamide (m/z 498) and carboxylicacid (ni/z584) metabolitesfor T-6292 from Rat 1, 0-Hr (top)and 6-Hr (bottom)samples.
T-6292 Rat 1,0-Hr,10 ulini 498/498
100.
50
(D cc
584/584
100.
5D
cr_
0.0
2.0
1
84
T-6292 Rat 1,6-Hr,10 ulinj 498/498
10&
50 a:
5841584 10(@ Ile
5D
0.0
2.0
1
84
4.0
6.0
167
250
7ime (min)/Scan
4.0
6.0
167
250
Time (min)/Scan
55,000
30,000
8.0
10.0
333
416
425,000
490,000
8.0
10.0
333
416
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Figure 16. Product ion scan for carboxylicacid metaboliteof T-6292 in Rat 1, 6-Hr sample and proposed fragment structures.
Product IonScan , Parent=584 T-6292 Rat 1,6-Hr.10 ul ini
100
19,615
419
526
219 75
c 5D 169
ID
a:
25
269
83
483
o-
.- - I
I
I
I
I . ..
1DO
200
300
400
500
600
m/z
CarboxylicAcid MetaboliteProductIonAssignments
rn/z(amu) 169,219,269,419,526
483
Descril2tion See Figure5
0
11 F3C-(CF2)6-CF2-S -
0
83
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F-S
0
REPORT: 96ADEMOI.3M
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Figure 17. Total ion and extractedparent (m/z 650) and proposed metaboliteion chromatograms for T-6293 obtained from Rat Control Sample 13.
TICofallmasses,100 to800 controslample13, no TA
100 75-
50-'@O-i0.31636 25-
4.43 2.50 3.49 L 55..1100 55.-887@ 7-.2
cc 1 0.0
101
201
301
2.5
4.9
7.3
Scanrrim(emin)
controslample13,no TA
542/542
2,805,000 8.64
9*.87
401 9.7
0
556/556
0
584/584
0
650/650
0
746/746
0
0.0
2.0
4.0
6.0
8.0
10.0
1
84
165
248
331
414
Time(min)/Scan
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Figure 18. Total ion and extractedparent (m/z 650) and proposed metaboliteion chromatograms for T-6293 obtained from Rat 1, 0-Hr sample.
TIC ofallmasses 100 to 800 Rat 1,0-Hr,10 ulinj
100-
75-
50-
CD
25-
(D
a:
Of
1
0.0
1.40
Rat 1,0-Hr, 10 ulinj
642/542
2.94
101 2.4
4.89
4.02
L 5.55 6.55
6.70
7.74
201
301
4.8
7.2
Scan/1-ime(min)
2,680,000 8.89 8"89
401 9.6
315,000
556/556
315,000
584/584
315,000
650/650
746/746
0.0
-
2.0
1
84
6.70
4.0
6.0
8.0
167
250
333
Time (min)/Scan
315,000
315,000
10.0 416
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Figure 19. Total ion and extractedparent (ni/z650) and proposed metaboliteion chromatograms for T-6293 obtainedfrom Rat 1, 6-Hr sample.
TIC of allmasses 100 to800 T-6293 Rat 1,6-Hr,10 ulinj
..7 100,
75-
50.
25-
cc 0 1 0.0
f1l2.@288
101 2.4
T-6293 Rat 1,6-Hr,10 ulinj 542/542
4.89
850
3..3377@
6@46.14.1
5u
201
301
4.8
7.2
Scan/Time (min)
7.95
5561556
6 6.48
584/584
6.67
2,910,000
401 9.6
310,000 -lp
65,000
M=96
165,000
650/650
6.70
140,000
746/746
0.0
2.0
1
84
6.63
490
6.0
8.0
167
250
333
rime (min)/Scan
125,000
10.0 416
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Figure 20. Possiblestructurefsor the observed metabolitesof T-6293 with [M-H]- of 542 and 556 amu from Rat 1.
Mr = 543 [M-H]- 542
0 CH2-CH20H
1-< F3C-CF2-CF2-CF2-CF2-CF2-CF2-CF2-S
11 0
mr 557 [M-H]- 556
0
CH2-COOH
ll-< F3C-CF2-CF2-CF2-CF2-CF2-CF2-CF2-8
11 H 0
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Figure 21. Extractedion chromatograms of sulfonamide (M/z 498) and sulfonate(m/z 499) ions for T-6293 from Rat 1, 0-Hr (top) and 6-Hr (bottom)samples.
Rat 1,0-Hr,10 ulinj
498/498 1
260,000
50.
0i 499/499
100
100,000
50.
CD cc
0
Li
0.0
2.0
4.0
6.0
8.0
10.0
1
84
167
250
333
416
7ime (min)/Scan
T-6293 Rat 1,6-Hr,10 ulinj 498/498
100
645,000
so. a:
0 499/499
ioa
50.
265,000
ol
16
0.0
2.0
4.0
6.0
8.0
10.0
1
84
167
250
333
416
Time (min)/Scan
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Figure 22. Extractedion chromatograms of proposed metaboliteswith m/z 327 and 419 for T-6293 from Rat 1, 0-Hr (top) and 6-Hr (bottom) samples.
Rat 1,0-Hr,10 ulinj
327/327 100.
85,000
50.
ol 419/419
10&
d@OA
110,000
50.
Al &A A A ol
0.0
2.0
4.0
6.0
8.0
10.0
1
84
167
250
333
416
Time (min)/Scan
T-6293 Rat 1,6-Hr,10 ulinj 327/327
10&
50-
cc
A 0.
419/419
100.
50-
cc
0
0.0
2.0
1
84
A
4.0
6.0
8.0
167
250
333
Time (min)/Scan
215,000
370,000
10.0 416
MMM
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Figure23. Total ion and extractedparent (m/z 526) and proposed metaboliteion chromatograms for T-6294 obtained from Rat Control Sample 13.
TIC of allmasses, 100 to 800
T-6294, Control,no testarticle1,0 ulinj1,090
100 75
50 2 a: 0
1 0.0
7.3 5.0
1.5 3.2 4.2 5.0
101
201
301
2.4
4.9
7.3
ScanMme (min)
T-6294,Control,no testarticle1,0 ulinj1,090
483/483
2,905,000
401 9.7
10,000
498/498
10,000
526/526
10,000
542/542
10,000
556/556
10,000
0.0
2.0
4.0
6.0
8.0
1
83
166
245
328
412
Time (min)/Scan
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Figure 24. Total ion and extractedparent (m/z 526) and proposed metaboliteion chromatograms for T-6294 obtainedfrom Rat 1, 0-Hr sample.
TIC ofallmasses, 100 to 800
T-6294, Ratl, 0-hr,10 ulinj,1090
10D 75 50 2& cc n
1 0.0
3 .1
101 2.4
T-6294, Rati, 0-hr,10 ulinj,1090 483/483
5.0 4.1
201 4.8 Scan/Time (min)
5,295,000 8.6 7.4
301
401
7.2
9.6
1,895,000
498/498 526/526 542/542
7.90
180,000
8.64
1,895,000
10,000
556/556
0.0
2.0
1
84
4.0
@.0
167
250
Time (min)/Scan
1,895,000
8.0
10.0
333
416
MMM
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Figure 25. Total ion and extractedparent (m/z 526) and proposed metaboliteion chromatograms for T-6294 obtainedfrom Rat 1, 6-Hr sample.
TIC ofallmasses, 100 to800
T-6294, Ratl,6-hr,lo ulini,109o
1 oc@
75-
50.
3.0
*Pc!i 25 a.- - --4l"1".5 - -
a4:) 0.
1
101
0.0
2.4
T-6294, Ratl,6-hr,10 ulinj,1090 483/483
e.r
4.9
-A -
201 4.9 Scan/Time (min)
8.1 7.3
8.7
301 7.3
7,595,000
401 9.7
6.58
80,000
49a/498 526/526
3,535,000 B. 3
8.73
1,350,000
542/542
556/556
0.0
2.0
1
83
8K
6.75
A
4.0
6.0
80
165
248
331
Time (min)/Scan
30,000
50,000
10.0 414
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Figure 26. Product ion scan for perfluorooctanesulfonamidmeetabolite (CF3(CF2)7SO,NH., m/z 498) of T-6294 in Rat 1, 6-Hr sample and proposed fragment structures.
-PmfileDAUGHTER Parent 498
T-6294 Rat 1,6-Hr,10 ulinj 1 DO-
398,750 498
7578
r 50-
cc 25-
169
219
259
100
200
qw
460
nVz
N-DealkylatedMetaboliteProductIonAssignments
m/z (amu) 169,219
478
259
Description See Figure5
0
F3C-(CF2)g-6F-11-N
11 0
0 11 F2C-(CF2)2-CF-S-N
11 0
478 500
0
78
11
S=N -
11
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Figure 27. Totalion and extractedparent(m/z 499) and homolog ion chromatograms for T-6295 obtainedfrom Rat Control Sample 13.
TIC of allmasses, 100 to800
controlmedia (nota),10 ul,gradient7
100 -
1.09
75-
E 5025-
22..6688@
a:
1
101
0.0
2.4
6.80 4.73
201
301
4.8
7.2
Scanfrime(min)
720,000 8.94
401 9.6
controlmedia (no ta),10 ul,gradien7t 4991499 449/449 399/399 349/349
6.80 6.58 6.34
299/299
0.0
2eO
4.0
6.0
8.0
1
84
167
250
333
Time (min)/Scan
440,000 15,000 50,000 440,000 440,000 10.0 416
MMM
ADVANCECD BIOANALYTICAL SERVICES, INC.
REPORT: 96ADEMOI.3M
44
Figure 28. Total ion and extractedparent (m/z 499) and homolog ion chromatograms for T-6295 obtainedfrom Rat 1, 0-Hr sample.
TIC ofallmasses, 100 to 800
T-6295,ratl,0-hr,10 ul,gradient7
:::z.- IOD 75
50 1.06
2Ll.o6
(D
cc
1
101
0.0
2.4
T-6295,ratl,0-hr,10 ul,gradien7t 499/499
6.86
4.91
201
301
4.8
7.2
Scanfrime(min)
6.86
2,060,000
8.96 401 9.6
1,420,000
449/449
180,000 6.62
399/399
375,000 6.36
349/349
135,000 6.00
299/299 5.25
25,000
0.0
2.0
4.0
6.0
8.0
10.0
1
84
167
250
333
416
Time (min)/Scan
MMM
ADVANCED
BIOANALYTICAL
SERVICES,
INC.
REPORT: 96ADEMOI.3M
45
Figure 29. Total ion and extractedparent (nVz 499) and homolog ion chromatograms for T-6295 obtainedfrom Rat 1, 6-Hr.
TIC ofallmassea 100 to800
T-6295,ratl,6-hr,10 ul,gradien7t
.e ico
75-
.594
(D 25
108
cc 0 1 101
0.0
2.4
T-6295,ratl,6-hr,10 ul,gradien7t
4991499
6.94
6.0366@.9 39
4.69,.j 6.03
A
201
301
4.8
7.3
ScanMme (min)
6.94
2,830,000
401
9.7
1,960,000
449/449
275,000 6.66
399/399
11
349/349
6.39 k 6.03
535,000
220,000
29gi299
5.24
65,000
0.0
2.0
4.0
6.0
8.0
10.0
1
84
167
249
332
415
Time (min)/Scan
MMM
ACDVANCED BIOANALYTICAL SERVICES. INC.
REPORT: 96ADEMOI.3M