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SDRIPTSTH-6295.8, T-6316.4, T-6868.2, T0711 T-7132.1 3M MEDICAL DEPARTMENT, CORPORATE TOXICOLOGY `Title: Comparative Molecular Biology of Perfluorooctanesulfonate (PFOS,
T-6295), N-cthyl perfluorooctanesulfonamido ethanol (N-E{FOSE, T-6316), N-Ethyl perfluorooctanesulfonamide (N-ECFOSA, T-6868), Perfluorooctanesulfonamido
acetate (FOSAA, T-7071), and/or Perfluorooctanesulfonamide (FOSA, T-7132) of in Rats and Guinea Pigs following Oral dosing.
Final Report Date: May 25, 2004 Study Numbers. T-6295.8, T-6316.4, T-6868.2, T-7071.1, T-7132.1 Strategic Toxicology Study Number: DT-15-B
Sponsor: Study Location(s):
Study Director: Study Toxicologist: In-Life Start Date In-Life End Date In-Life Start Date In-Life End Date In-Life Start Date In-Life End Date
3M Specialty Chemicals Division 3M Center, Building 236 Saint Paul MN 55133-3220
1. 3M Strategic Altemative Toxicology Laboratory 3M Center, Building 270-SB-181 Saint Paul, MN 55133-3220
2. UniversityofMinnesota, Duluth Dept. ofBiochemistry and Molecular Biology Schoolof Medicine 10 University Drive Duluth, MN 55812-2496
Andrew M. Seacat Ph.D, DABT Toxicology Specialist 3M Medical Dept. Corporate Toxicology and Regulatory Services
Deanna Luebker M.S Senior Toxicologist 3M Medical Dept.
Protocol: Protocol: Amendment #1: Amendment #1: Amendment #2: Amendment #2:
11/16/1998 1120/1998 03/01/1999 03/05/1999 02/19/2001 02/23/2001
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SDRIPSTHT6295, T6316.4,T-6868., T-107L1, T-7132. Summary Adult male and female Sprague-Dawley rats and Harlan guinea pigs received oral gavage dosesofvehicle control (2% Tween 0), 40 mg/kg/day (mkd) perfluorooctanesaulfonate (PFOS, T-6295), 40 mkd or 160 mkd N-Ethyl perfluorooctanesulfonamido ethanol (NE{FOSE, T-6316), or40 mg/kg/day N-Ethyl perfluorooctanesulfonamide (N-E(FOSA, T6868) for four days and were humanely sacrificed on the fifth day. Male SpragueDawley rats received oral gavage dosesof vehicle control (propylene glycol), 160 mkd perfluorooctanesulfonamidoacetate (FOSAA, M556, T-7071),or40 mkd perfluorooctansulfonamide (FOSA, T-7132) for four days and were humanely sacrificed on the fifth day. Al animals survived. The percent initial body weights were significantly decreased in rats by 40 mkd PFOS and 160 mkd N-E(FOSE significantly reduced body weight compared to controls to 85% and 87% inital body weight, at average liver PFOS concentrations of> 600 ug/g. 40 mkd FOSA and 160 mkd FOSAA significantly reduced body weight to 93% and 95 % of initial body weight, respectively, at average liver PFOS concentrations of 140 ug/g and 200 g/g, respectively. Neither 40 mkd NEtFOSEof 40 mkd N-EtFOSA had a significant effect on body weight in ats. In the rat, liver to body weight ratios were significantly increasbeyd 40 mkd PFOS at average liver rPaFtsOfSrcoomncalelntortahteriodnossoe gf>ro6u0p0s,ubg/ugt.thIenscercehaasendgelsivwererteo bnootdysiwgeniifgihctanrtatcioosmpwaerreedftoountdhein control. "The guinea pig percent body weight was significantly decreased by 160 mkd N-E(FOSE and40mkd PFOS 10 91% and 93% initial body weight, at average liver PFOS concentrationsof419 g/g and 171 g/g, respectively. Guinea pig liver to body weight ratios were unchanged. Guinea pig kidney to body ratios were significantly increased by treatment in all the dose groups measured, i. 40 mkd N-EFOSE, N-EFOSA, or PFOS. In rats, cholesterol (CHOL), riglycerides (TRIG), alkaline phosphatase (ALKP), and aspartate aminotransferase (AST) were significantly lowered in rats treated with40 mkd PFOS and 160mkd N-EGFOSE. Significant decreases in serum potassium (K") occurred in rats treated with 40 mkd PFOS,40 mkd N-E(FOSE and 40 mkd N-E(FOSA. In rats, 40 mkd PFOS caused asignificant increase in hepatic palmitoyl CoA oxidase (PCoAO) activity, but 160 N-EXFOSE did not. Exposureof ats to 160 mkd N-E-FOSE caused a doublingofthe specific activity of lauryl CoA oxidase (LCoAO) and a 2-fold increase in the concentration ofmRNA encoding for PCAO in rat liver, but catalase activity and catalase mRNA were unchanged. Exposure of rats to 40 mkd PFOS caused a 2-fold increase in LCoAO activity and a 3 to 6-fold increase in PCOAO mRNA expression in rats. Treatmentwith40 mkd FOSA or 160 mkd FOSAA caused a significant increase in hepatic cytochrome P430 content and Acyl CoA oxidase activity in male rats.
PFOS was apparentlay more potent peroxisome proliferator than N-EFOSE. PFOS significantly induced PCOAO activity whereas N-EWFOSE increased, but did not significantly induce PCOAO activity, even though both treatments achieved similarly high liver PFOS concentrationsofgreater than 600 g/Kg. PCoAO activity was not
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DSRTPITST-B6295.8, T-6316.4, 68682, T-1071.1, T-7132.1 determined for the 40 mkd FOSA and 160 mkd FOSAA treated male rats, but a 2-fold induction of acyl CoA oxidase activity occurred at relatively lower average liver PFOS concentrations of 193pig/gand 140 ug/g , respectively, with an equivalent or greater fraction of the total liver fluorochemical was contributed by the parent compound or the metabolite FOSA from the FOSAA treated rats. These data suggest that FOSA may be an equally potent peroxisome proliferator to PFOS, but not the N-acetyl metabolites of N-Et FOSE. In the guinea pig, potassium (K*) values were significantly reduced by 40 mkd PFOS and N-EtFOSA. Neither 40 mkd PFOS or N-EtFOSA, nor 40 mkd or 160 mkd N-EWFOSE. caused peroxisome proliferation in either gender ofguinea pigs. `These results showed that PFOS, N-EtFOSE, FOSA and FOSAA all caused indications ofperoxisome proliferation in rats, but not in guinea pigs. Theseresults are in concordance with effectsofclassical peroxisome proliferators, in that the response is specific to certain species
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SDRTPITST-B6295.8, T6316,T-6868.2, T0711, T-7132. Introduction: `The objectiveofthis study was to investigate and compare the molecular mechanisms of peroxisome proliferation in rats and guinea pigs. Three compounds derived from perfluorooctane sulfonate and known to cause peroxisome proliferation in the rat were initially tested, perfluorooctanesaulfonate (PFOS), N-Ethyl perfluorooctanesulfonamide (N-EtFOSA) and N-Ethy! perfluorooctanesulfonamido ethanol (N-EtFOSE). By amendment, two other compounds, perfluorooctanesulfonamido acetate (FOSAA) and perfluorooctanesulfonamide (FOSA) were added to the study. The ultimate metabolite of N-EFOSA, N-E(FOSE, FOSAA and FOSA was presumed to be PFOS, however there is some debate about that. The hypothesis that these fluorochemicals would induce peroxisome proliferation in the rat, but not the guinea pig, was based on several lines of evidence indicating that guinea pigs and primates are resistant 0 peroxisome proliferation. However, the molecular and biochemical mechanisms that differentiate the response of these species to peroxisome proliferators for the perfluorosulfonamiwdaess unclear. The specific aimsofthis study were to: 1. To elucidate the molecular response in both rats and guinea pigs by measuring the
induction of mRNAofgenes that are associated with peroxisome proliferation. 2. To measuring the hepatic activityofperoxisomal enzyme systems and fatty acid
binding proteins. 3. To perform standard toxicity testsof serum clinical chemistry and to examine the
liver for histological changes which may indicate an explanation for the species differences seen in response to these compounds. 4. To correlate any observed alterations of the above functions to liver and serum levels ofperfluorosulfonamides and their metabolites.
`This study was part ofa seriesofinvestigations designed to understand the `molecularand biochemical mechanisms for the effectsofthese compounds observed invivo. This study was carried-outi collaboration with other investigators. Dr. Ken `Wallace, Universityof Minnesota Duluth, who has been engaged in studies designed to understand the effectsofthese perfluorosulfonamides on mitochondrial bioenergetics, `performed molecular and biochemical analysesofthe inductionofgenes associated with peroxisomal proliferation and/or cell replication. Dr. Kris Hansen and Lisa A. Stevenson ofthe 3M Environmental Technology and Safety Services lab performed quantitative serum and liver perfluorosulfonamide metabolite analyses. Dr. Lin Xu performed quantitative liver perfluorosulfonamide metabolite analyses on some samples in Dr. Marion Anders lab at the Universityof Rochester Study Timelines: `This study (DT15-B) was conducted in three parts, the protocol and protocol amendment numbers 1 and 2. The protocol had an in-life start date of 11/16/98 and an in-lfe end date of 11/20/98. Amendment number 1 had an in-life start date of 3/1/99 and an in-life end dateof 3/5/99. Amendment number 2 had an in-life start dateof2/19/01 and an inlife end date of 223/01. Amendment #3 was procedural only.
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SbRTPITSTH-62958, T-6316.4, 68682, T0711, T-7132.1 Regulatory Compliance: "This was an exploratory study and thus classified as non-GLP as explained in TOX SOP 0950, Strategic Toxicology Lab GLP Program Procedure. Test Material: "The sponsor provided samplesofall luorochemicals to the investigators. Analytical `documentationofthe stating material was the responsibilityofthe sponsor. A chemical `composition specification sheet was kept on file. Compoundswere stable at room temperature. Test material was stored tightly sealed at room temperature. "The T-numbers, chemical names, abbreviations used for these samples, and the chemical structuresofeach ofthe compounds that were tested in this study are given below. The currently accepted abbreviations for each compound are in bold
1. Vehicle control: 2% Tween 80, or propylene glycol.
2. T-6295: Perfluorooctane sulfonic acid, potassium salt (perfluorooctanesulfonate), POS, FC-95, Formula: C4fsS0s- K', MW = 538.1 mole).
3. T6316: Necthylperfluorooctane sulfonamido ethanol, (narrow Range N-
Ethyl Perfluorooctanesulfonamido ethyl alcohol), N-EFOSE, Formula: C,fsSO:N(C:HICH,CHOH, MW = 571.06).
EtFOSE,
FC-10,
4. T-6868: Neethyl perfluorooctane sulfonamide, (perfluorooctane sulfonyl ethylamide), PFOSA (as sated in the protocol, but not used for ths compound in this report), N-EtFOSA, PFOSEA (abbreviation used by the 3M Environmental lab), FX-12, Formula CifSO:NHCHi, MW = 527.2).
5. T7071: Perfluorooctanesulfonamido acetate, FOSAA, MSS6, (Formula iFSONHCH,CO0, MW -- 556 g/mole)
6. T-7132 Perfluorooctanesulfonamide , FOSA, PFOSA (abbreviation used by the 3M Environmental Lab), Formula CsF17SO;NHs, FOSA, MW = 499.06 gmole).
7. Wyeth-14643 (WY, MW =323.79 g/mol) was obtained from Chemsyn Science Laboratories, Lexena, KS. Wyeth-14643 (WY), was added to DTISA as positive control dose group for hepatic peroxisome proliferation.
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DSRTPITST-B6295.8, T6316, T-6868.2, T107L1, T-7132.1
Methods `The methods and dose groups for eachpart ofthis study are summarized below. Detailed methods are given in the protocol and amendments. Deviations to the protocol are listed. in Appendix | DTIS-B Protocol Procedures "Theprotocolhad an in-lfe start date of 11/16/98 and an in-life end date of 11/2098. Under the protocol, eight male and eight female Sprague Dawley Rats, 10-12 weeks old weighing approximately 250-300 grams at the timeofinitiation were obtained from Harlan Laboratories, Inc. Eightmaleand eight female Hartley Guinea Pigs 10-12 weeks old and weighing approximately 600 to 750 grams at the timeofinitiation were obtained from Harlan Laboratories, Inc. Each dose group contained 2 animals/sex/species. The dose groups were vehicle control (2% Tween 80), 40 mg/kg/day N-Et FOSE, 40 mg/kg/day N-EFOSA, and 40 mg/kg/day PFOS. A 20 mg/mL suspensionofcach test compound was prepared in 2% Tween 80 in a glass tissue grinder. The animals received four consecutive daily doses. The dayofthe first dose was designated day zero, thus the doses were administered on days 0,1,2 and 3ofthe study. Rats receive the test compound suspended in 2% Tween 80 or the vehicle control by oral gavage at a volume of2 ml/kg body weight. The guinea pigs received their daily oral dose volume of2 mk by droplet in the back of the mouth. The animals were humanely sacrificed on day4 Amendment Number 1 Procedures Amendment number 1 had an in-life start date of 3/1/99 and an in-life end date of 3/5/99. The purpose of amendment 1 wastoadd groups ofboth male and female rats and guinea pigs treated with vehicle control, N-E(FOSE (T-6316) or PFOS (T6295). The histological and clinical chemistry resultsofthe treatment groups under the protocol were not remarkably different than in the controls, and the tissues for northern blot analysis were delayed during shipping and were degraded. Therefore, amendment 1 was designed to replace the specimens that were lost and elevate the dose of N-E(FOSE administered to achieve a more effective level, `Twelve rats and twelve guinea pigs total (6 male, 6 female/species) were used under the protocol amendment #1. Each dose group contained 2 animals/sex'species. `The dose groups were vehicle control (2% Tween 80), 160 mg/kg/day N-Et FOSE and 40 mg/kg/day PFOS. For N-EtFOSE, a suspension of 80 mg/ml N-E(FOSE in 2% Tween 80 was prepared and a volume of2 ml/kg was administeredbyoral gavage to the rats and by droplet in the back of the mouth to the guinea pigs on days 0 through day 3 ofthe study. `This dose was comparable to the cumulative doseofN-ECFOSE that induced peroxisomal PCOAO activity in the rat in a 4 week feeding study with 300 ppm N-EWFOSE (Ref. 3M Medical Dept. T-6316.1), and was less thanhalfofthe LDS0.
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SDRTPITST-B6295.8, T-6316.4, T-6868.2, T0711, T-7132.1 For PFOS, a suspension of20 mg/m of PFOS in 2% Tween 80 was prepared, anda volume of2 mU/kg was administered by oral gavage to the rats and by droplet in the back. of the mouth to the guinea pigs on day zero through day 3of the study. The cumulative dose of PFOS delivered under protocol amendment #1 was ~160 mg/kg, as wasused in the protocol. The cumulative dose was below the LDS0 for PFOS and well above the threshold for inducing peroxisome proliferation in the rat Amendment Number 2 Procedures "The purposeofamendment 2 was to add groups male ras treated with vehicle control, perfluorooctanesulfonamidoacetate (FOSAA) or perfluorooctanesulfonamide (FOSA) at doses equivalent to the doses of N-EFOSEand PFOS, respectively, in protocol amendment #1 in order to compare the effects and metabolite profilesofthese compounds in ats at equivalent doses. Amendment numbe2r had an in-life start date of 2/19/01 and an in-life end date of2/23/01. Nine male rats were used under the protocol amendment #2. Each dose group contained 3 male Sprague Dawley Rats, 10-12 weeks old weighing approximately 250-300 grams at the timeof initiation were obtained from Harlan Laboratories, Inc. The dose groups were vehicle control (propylene glycol), 160 mg/kg/day FOSAA, and 40 mg/kg/day FOSA. The vehicle control was delivered by oral `gavage ata volumeof S mUkg body weight on days zero through da3yofthe study. A larger volume of 5 ml/g was used than in protocol amendment #1 because only rats were dosed by oral gavage, whereas the guinea pigs cannot be dosed by oral gavage. For FOSAA, a suspension of 32 mg/ml FOSAA in propylene glycol was prepared and a volume ofS ml/kg was administered by oral gavageto the rats on days 0-3. This dose achieved a cumulative dose of 640 mg/kg FOSAA. For FOSA, adoseof40 mg/kg body weight was administered via gavage to rats on day 210 through day 3of the study. A suspension ofmg/ml ofFOSA in propylene glycol was prepared, and a volume of5 ml/kg was administered by oral gavage to the ats. This dose achieved a cumulative dose of 160 mg/kg aftr four daysofdosing. The dose of FOSA was the same as the dose of PFOS administered under amendment #1 ofthis apdromtioncioslt.eTrehdeuLnDdeSr0hfiosr pFrOotSoAcoilswnaost kbneolwonw,thbeutLtDhSeOcufmourlPatFiOvSeodfo2s5e1ofmFgO/kSgAfor POS. in com oil, as a pointofreference.
Specimen Handling: Liver and sera were collected and frozen rapidly after euthanasia according to the details described in the protocol and amendments. A one to two gram aliquotofthe liver samples shipped in dry ice to the analytical laboratories listed in the protocol and amendments. The identificationofeach liver sample sent to each lab is listed in Appendix 2.
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DSRIPITST-H6295.8, T-6316.4, 6868.2, T-707L1, T-71321
Analytical methods Certain liver samples were sent for analysis by previously published methods for P450 content, Lauro] CoA oxidase activity (Poosch and Yamazaki 1986) and protein content (Bradford 1976) in the laboratory of Ken Wallace Dept of Biochemistry and Molecular Biology at the University ofMN by the following methods:
Enzyme Sample Preparation ~ The enzyme fraction consisted of the 6,000 g. supermatantof a 10% (wt/vol) homogenate of 0.5-1.0 g frozen liver tissue in 300 mM mannitol-10 mM HEPES-1 mM EGTA (pH 7.2). Protein concentration was estimated according to the method of Bradford using commercial bovine serum albumin as standard. L-Cod Oidase Assay ~ The equivalent of ca., 5 pg/ml tissue homogenate was suspended in 60 mM KH:PO-0.02 % Triton X100 (pH 7.4) containing 1 mM phydroxyphenylacetate (PHPA), 4 units/ml peroxidase, 20 uM FAD, and 60 uM lauryl-CoA (LCOA). The reactions were allowed to incubate at 37C for 30 min in a shaking water bath and terminated by adding 3 volumes of 2 mM KCN in 100 mM sodium carbonate (pH 10.5). The concentration of HO; generated during the reaction was estimated from the fluorescence of PHAP as measured with an excitation wavelength of 317 nm and emission at 405 nm. The fluorescence was calibrated with commercial HO; and the results are expressed as nmol peroxide generated/min/mg mitochondrial protein. Protein was `quantitated by the Bradford method. Catalase Assay - The activity of catalase was estimated by a modification of the original method published by Claiborne and Fridovich (J. Biol. Chem. 254, 424552,1979), which is based on the direct measurement of H0, disappearance as quantified spectrophotometrically at 240 nm. In this procedure, the tissue sample: was diluted in 50 mM potassium phosphate (pH 7.0). The medium was warmed 10 27C and the reaction initiated by adding 10.3 mM H0x. The progress of the reaction was monitored at 240 mm for min. Catalase activity was estimated pfrrootmeinth(eTaibnilteial1).liOnenaer urnaitte o(facEt*i=vi4t3y.i6s dmefMincemd TMas)thaatndameoxupnrteosfseednzasymueniwthsi/cmhg catalyzes the decomposition of| mole of HO; per min. Northern Blot Analyses - Quantitation of mRNA for both acylCoA oxidase (ACOAO) and catalase were performed by Northern blot analysis of quick frozen liver samples from treated rats and guinea pigs. Approximately | goffrozen liver was powderized in liquid nitrogen using a mortar/pestle. Total RNA was.
recovered using the PERFECT RNATM isolation kit and the concentration
quantified spectrophotometrically at 260nm. The RNA was electrophoresed on a 1% agarose gel, blot transferred t0 a cellulose membrane and hybridized to the cforrormespproinmdeirnsgtoracnad,om3l5y0 [b*a?sPe] lsaebqeuleendceoolifgtohnueclreeostpiedcetsivtehartatwelirveerPgCenRe.ampmlRifNieAd
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DSRTPITSTB.62958, T-6316.4, 68682, T-1071L 7132.1
band density was quantified autoradiographically using phospho-imaging software.
Certain Liver samples were sent for analysis for the parent compound (s) and the `metabolites by the 3M Environmental Technology and Safety Services using published `methods (Hansen et al. 2001). The detailsofthe methods used and the resultsofthe analyses that were completed were issued in an analytical report from the 3M Environmental Lab on May 8, 2003 (3M Study No. FACT-TOX ~107, 3M Laboratory LIMS No.E01-0129). The resultsof analyses that were completed are included in this report and integrated with the body weight and liver weight data. The abbreviations that the 3M Environmental lab used to identify compounds were different than the ones listed above, and are found associated with the primary data tables from the lab. The lab analyzed foar metabolite, perfluorooctanesulfonamidofethylacetate (PFOSAA), that was never dosed. The abbreviations used for cach analyte that the lab used as standards and analyzed for in liver samples are given below, followed by the chemical formula and the abbreviation used in this report.
PFOS= PFOSA = PFOSAA =
EIFOSE= MsS6= PFOSEA=
Perfluorooctanesulfonamide (Formula C4F;,S0;-, PFOS) Perfluorooctanesulfonamide (Formula CsFi7SO:NH;, FOSA) Perfluorooctanesulfonamidoethyl)acetate. (This compound was also referredtoas Perfluorooctanesulfonamidoacetate in the raw data tables of FACT TOX 107). (Formula CyF17SO:N(C:HsJCH,COO', N-EtFOSAA), narrow Range N-Ethyl Perfluorooctanesulfonamido ethyl alcohol (Formula CiFy:SO:N(C:H,CHCHOH, N-EtFOSE) Perfluorooctanesulfonamidoacetate (Formula C.F,SO:NHCH,CO0" FOSAA) Perfuorooctane sulfonyl ethylamide (Formula C.F,SONHCH, ,NE(FOSA)
Certain other liver samples were analyzed for parent compounds and metabolitesof the fluorocarbons by LC-MS/MS by Dr. Lin Xu in the laboratory of M. W. Anders DepartmentofPharmacology and Physiology, University of Rochester using previously published methods (Hansen et al. 2001). The results are reported in this report and integrated with the body weight and liver weight data. Certain other liver samples were sent to Covance in Madison WI and were analyzed for palmitoyl Co-A Oxidase activity as an indicatorofperoxisome proliferation using a validated methodbasedon published methods (Lazarow 1981). The principleof the assay is that in the presenceof palmitoyl-Co-A, the third step of the b-oxidation spiral involves the reduction of NAD to NADH, which can be measured spectrophotometrically a1:340 nm. The results were reported the 3M on October 22, 2002 ina letter report from Covance and the data is included in this report. No formal report was written by. Covance.
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DSRTPITST-B6295.8, T-6316.4, 68682, T-7071.1, 7132.1 Results Biological Parameters All animals survived to the end of the study. No gross observations were noted during the in-life phaseor at necropsy. `The cumulative doses ranged from approximately 33 to 53 mg fluorochemical in rats, and from approximately 67 to 123 mg fluorochemical in guinea pigs receiving 40 mg/kg/day. `The 160 mg/Kg/day dose group animals received proportionally higher cumulative doses (Table 1). The body weights ofthe guinea pigs that were dosed at different times were really different, which accounted for the wide range in cumulative dose in the guinea pigs. Individual and summary cumulative dose data are shown in Appendix 3. Average body weights decreased significantly over the dosing period for female rats given 40 mkd PFOS and 160 mkd N-EtFOSE (Table 2). Average body weights decreased significantly over the dosing period for male rats given 40 mkd PFOS or FOSA and 160 mkd N-EFOSE or FOSAA (M556). Individual and summary body weight data are shown in Appendix 4. `The male rats given N-E{FOSE at 40 mkd had significantly increased liver weights (Table 3). Male rats given PFOS at 40 mkd had a significant increase inliverto body weight ratios. Male rats treated with PFOS, N-EtFOSE and N-EFOSAat40 mkd all had significantly lowered kidney weights and Kidney to body weight ratios. Female kidney `weight and kidney 10 body weight ratios were not significantly different from control values. Kidney weight data was not obtained for the other dose groups. Individual and `summary body weight data are shown in Appendix
Male and female percent of initial body weights on day four were combined for each dose group and analyzed together. The combined rat percent body weight was significantly decreased by 40 mkd PFOS, FOSA, and FOSAA,andby 160 mkd NEtFOSE (Table 4). The combined guinea pig percent body weight was significantly decreased by PFOS, N-E{FOSA and N-EFOSA at 40 mkd, and by N-E(FOSE at 160 mkd. `Organ weight ratios (liver to body weight and kidney to bodyweight where available) were combined for males and females independently from each dose group in all parts ofthe study and analyzed together. Combining the relative organ weights was done to increase theN for each dose group for analysis and isjustified because the organ `weights have been normalizedbybody weight. PFOSat40 mkd significantly increased liver weight to body weight ratios in the rat combined data (Table 5). The combined male and female guinea pig liver to body weight ratios were not significantly different from the control group values for anyofthe treatments given. Significantly increased kidney to body weight ratios were found in guinea pigs treated with NEFOSE, N-E(FOSA, or PFOS at 40 md.
nu
SDRTPITST-B6295.8, T-6316.4, T-68682, T-10711 T-7132.1
Liver Fluorochemical Concentrations "The liver fluorochemical concentrations in rats and guinea pig livers are summarized from the analyses performed at the Universityof Rochester (Table 6), and at the 3M Environmental ab (Table 7). The individual and summary liver fluorochemical concentrations data are presented in Appendix 6. The 3M Environmental lab analyzed liver samples from the PFOS 40 md and the N-EtFOSE 160 mkd rat dose groups and did not measure fluorochemical levels in the guinea pig livers. Aliquots ofthe livers that were analyzed by the 3M Environmental lab were also analyzed by Drag Andres lab at the UniversityofRochester. The individual rat liver data showed that one lotofthe samples analyzed at Rochester had a high background of FOSA in the control group. The Rochester analyses tended to have higher PFOS and FOSA determinations than the 3M Environmental ab, however the values for PFOS are listed as 35% accuracy, for FOSAA + 50% accuracy, and for FOSA, FOSAA, EtFOSE and N-EFOSA the values are. listed as qualitative only in the final report (FACT TOX 170). Therefore, the differences in the measurement of PFOS and FOSA fall within the experimental error inherent with the methods used. "The percentofthe dose that was in the liver was calculated for each dose group from the amountofthe total liver PFOS containing species, derived from the sum of the. concentrationsofall luorochemical species detected in the liver and designated TLPFOSX, and for the amountof PFOS itselfin the liver. The amount (mg)ofall fluorochemical species detected in the liver was derived from the TLPFOSX times the liver weight. The percent of fluorochemical dosed present in the liver was derived for both the TL PFOSX and for PFOS itself for the values derived from both the University of Rochester lab and the 3M Environmental lab (Appendix 6, B and D). In rats dosed with PFOS, the percent of PFOS dosed present in the liver as PFOS ranged from about 17 1023 percent in both male and female rats, andwas consistent between labs. In guinea pigs dosed with PFOS, the percentage of the total amount of PFOS dosed that was present in theliverswas far less than in the rat, between 3% and 5%. Guinea pig livers were only analyzed at the University of Rochester so a comparison between labs for the fluorochemical content in the livers ofguinea pigs cannot be determined. However, it can be seen from the data presented in Tables B and D in Appendix 6 that the TL PFOSX values derived at the UniversityofRochester and at the 3M Environmental for rats treated with 160 mg/kg/day N-EXFOSE are about the same at cach lab. "The UniversityofRochester analyzed both rat and guinea pig livers from animals treated with either 40 mkd PFOS, N-EtFOSE or N-E(FOSA, or 160 mkd N-E(FOSE. The TLPFOSX in guinea pigs treated with 160 mkd N-ECFOSE was lower than in the rat, particularly in the males guinea pigs. The percentofthe dose that was present in the liver as PFOSX was approximately 2-fold the percentofthe dose present in the liver as PFOS itself, in both guinea pigs and in most rats treated with N-EtFOSE and FOSA. However, the female rats treated with 160 mkd N-EWFOSE had greater than 70%ofthe TLPFOSX as PFOS in thei livers. Conversely, the percentageofthe dose that was present as PFOS in the liver of rats treated with 160 mkd FOSAA had high levels of FOSAAitselfand FOSA, with low levels of PFOS,
n
SDRTPITTS.H6295.5, T6316.4, T68652, F-70711, T7132
Clinical Chemistry Serum clinical chemistries for rats and guinea pigs are presented in Appendix 7. Clinical chemistry values were combined from males and females in each species and statistics were performed.
In rats, cholesterol (CHOL), triglycerides (TRIG), alkaline phosphatase (ALKP), and aspartate aminotransferase (AST) were significantly lowered in rats treated with 40 mkd iPnFrOatSs atnredat1e6d0wimtkhd4N0-mEk{dFOPSFEO.S,S4ig0nimfikcdanNt-dEec(rFeOasSeEsaninds4e0rummkpdotNa-sEsWiuFmOS(KA',)woictchurthreed `most significant decreases occurring inthe 40 mkd PFOS dose group. Albumin (Alb) and total protein (TP) were significantly increased by 40 mkd PFOS, and creatinine (CREAT) was significantly increased in the 40 mkd PFOS and 40 mkd N-E(FOSA dose `groups. These changes in clinical chemistry are consistent with previous studies with PFOS and N-EtFOSE. None of theotherclinical chemistry parameters were significantly different from control values in rats. In the guinea pigs combined male and female clinical chemistry analysis, there were no significant changes in cholesterol, triglycerides, alkaline phosphatase, or aspartate aminotransferase. Albumin, total protein and creatinine were not significantly changed. Potassium (K') values for male and female the guinea pigs combined were significantly reduced by 40 mkd PFOS and 40 mkd N-E(FOSA, similartothe rat. Alanine aminotransferase (ALT) was significantly increased by treatmentofguinea pigs with 40 `mkd PFOS.. None of the other clinical chemistry parameters were significantly different from control values in ats
Palmitoyl CoA oxidase (PCoAO) activity Hepatic palmitoyl CoA oxidase (PCoAO) activity data for males and females from cach dose group was combined and analyzed together. PFOS at 40 mg/kg/day for four days caused a significant increase in hepatic PCOAO activity in rats (Table 8). N-EWFOSE at c1h6a0nmgkedocfcuorr4reddayinstdhiedgnuoitnseiagpniigf.icIanndtilvyiidnucarleaasnedhseupamtmiacrPyCPOCAoOAiOn vraatsl.uesNoforsimganlifeiscaanntd females separately are shown in Appendix .
Peroxisomal enzyme activity and gene expression The effects of four days of oral dosing of 160 mg/kg/day N-EFOSE or 40 mg/kg/day PFOS for four on catalase and acylCoA oxidase gene expression and enzyme activity in liver tissue from exposed rats and guinea pigs are presented in Appendix 9. These data were presented as a poster at the 2001 Society of Toxicology meeting (Wallace ef al. 2001). Acute exposure of rats to 160 mkd N-Et-FOSE caused a doubling of the specific activity of LCOAO and a 2-fold increase in the concentration of mRNA encoding for
5
DSRTPITSTB.62958, T-6316.4, T:68682, T1071, T7132. PeoAO in liver from both male and female rats (Appendix 9). Catalase activity and catalase mRNA were unchanged by exposure to 160 mkd N-Et-FOSE in livers from both sexes. Exposure of ats 10 40 mkd PFOS caused a 2-fold increase in LCoAO activity for both sexes, and possibly a slight increase in catalase activity in liver from male, but not female, rats. Acute exposure of rats to 40 mkd PFOS caused a 3- to 6-fold increase in PCA mRNA expression that was more pronounced in female compared to male rats. Exposure of guinea pigs to N-Et-FOSE and PFOS did not stimulate LCoAO activity or catalase activity in either sex. The guinea pig mRNA encoding for PCOAO was undetectable, even following exposure to N-Et-FOSE or PFOS (Appendix 9). Treatmentofrats with 40 mkd FOSA caused significant increases in hepatic cytochrome P450 content and Acyl CoA oxidase activity (Appendix 10). Treatmentofrats with 160 mkd FOSAA caused significant increases in hepatic cytochrome P450 content and Acyl CoA oxidase activity (Appendix 11). The induced the expressionoftheseof these proteins in liverofrats indicated that FOSA and FOSAA were peroxisome proliferators in rat. For the 40 mkd FOSA and 160 mkd FOSAA treated male rats, a 2-fold induction ofacyl CoA oxidase activity occurred at average liver PFOS concentrations of 193 ug/g. and 140 ug/g, respectively. These liver PFOS concentrations were lower than the liver concentrations in the PFOS treatment group. In FOSA treated rats, the parent compound, FOSA, contributed an equivalentorgreater fractionofthe total liver fluorochemical as did the FOSA metabolite PFOS and cach of these fluorochemical species represented approximately 0.3%ofthe dose in the liver. In contrast, the FOSA-glucuronide present in FOSA treated rats contributed only a small fractionofthe TLPFOSX (Appendix 10). In FOSAA treated rats, the metabolite FOSA, and the parent compound, FOSAA, cdoindttrhiebumteetdabaonli2tteoP3FOtiSm,esa,nrdesrpeepcrteisveenltye,dtahepparmooxuinmattoeftlyh0.t1o4ta%l alnivder0.fl2u4o%roocfhetmheicdaolsethiann the liver, respectively (Appendix 11). Taken together, these data suggest that FOSA may be an equally potent peroxisome proliferator to PFOS in rats, and that the N-acetyl metabolites of N-Et FOSE (NE{FOSAA, and FOSAA) are weaker peroxisome proliferators than either POS or PFOSA. The compounds FOSA and FOSAA, were not tested in guinea pigs. Discussion "The analytical data showed that FOSA was consistently identified as a metabolite of PFOS, whether PFOS was administered directly or formed as a metabolite, but the source. ofthe amino group is not readily apparent. FOSA was present in someofthe control ssuabmmpiltetsesduabtmdiitftfeedrefnotrtainmaelsy.sTehseatforgmiavteinontiomfe,PbFuOtSnAotfirnoomthPeFrOgSroturpesaotfedcoanntirmoallsswamapsles determined in all ofthe liversofall PFOS treated animals that were analyzed at the Universityof Rochester, and at the 3M environmental lab for the same samples, which
1
SDRIPTSTH-62955, T-6316.4, T6868, T707L1,T7132. had no background PFOSofPFOSA in the concurrent control from cither lab. Clarification of the formationof the FOSA following treatment with PFOS should be: obtained in further studies. Whatever its routeofformation, FOSA was metabolized to FOSA N-glucuronide. Nco-uElWdFaOrSisEe aflrcoomhotlhegiNv-edseertihseyltaotaiornaongfeoN-fEmaFjOoSrEaanldcomhionlo,ramnedtaNb-oEli(tFesO.SAFAOScoEuladlcaorhiosle by the oxidation ofthe alcohol to the carboxylic acid. Glucuronidation of the parent NEtFOSE alcohol would give the observed N-EtFOSE alcohol glucuronides. FOSAA could be formed by the N-deethylationof N-EIFOSAA or by the oxidationofFOSE alcohol, or both. FOSA could be formed by the N-decthylation of N-EtFOSA or by the removalofthe carboxymethyl group of FOSAA as glyoxylate. FOSA N-glucuronide mFaOySAbeAfwoorumledd bgiyvethFeOglSuAcuorronliodsasotfiotnhoefgFlOycSiAn.e mLooisestoyftwohuelcdagribvoexyPmFeOtShydlirgercotluyp. from
"cTohnececnotrrraetliaotniosnwoerfae faenawolyfztehdebmyodsotsseiggnriofuipcainnt rtaotxsicandengdupionienatspitog.s (liAvpeprePnFdiOxS 12). "PTFheOSdeactre4a0semkindtahendpeNr-cEenWtFiOnSitEialatbo16d0ymwekightto wa5s%maonsdt8s7tr%onignliytiaelffbeocdtyedwienigrhatts,bayt average liver PFOS concentrationsof > 600 ug/g. The percent initial bodyweightwas also decreased in rats by FOSA at 40 mkd and FOSAA (M556) at 160 mkd to 93% and 95% of initial body weight, respectively, at average liver PFOS concentrations of approximately 140 t0 200 g/g. A greater fractionofthe total fluorochemicalin the liver oFfOtShAe.FSOiSmiAlaArltyr,eattheedFaOniSmAaltsrewaatsedparneismenatlasshathdeaphairegnhtlcivoemrpcoonucnedntorrataisotnhoefmtehteabolite unmetabolized parent compound. Thus these perfluorosulfonamide fluorochemical species likely contributed to the body weight effec to a greater degree than the metabolite PFOS in the FOSAA and FOSA treatment groups. "bTohdeyrwaenikgohrtdeirnorafttshweaesffPecFtOofStahte4d0ifmfkerden>t FtrOeSatAmeantt4g0rmoukpds >onNi-nEc(reFaOsSesElaitve1r6w0emigkhdt >to FOSAA at 160 mkd occurring at average liver PFOS concentrations o>f 600 pig/g for tPrFeOatSedaanndimNa-lEst,FrOesSpEe,ctiavpeplry.xima~Atlelldyo1s9e3 gurgo/ugpsfohraPdFiOnScrAe,asaenddli1v4e0r tuog/bgodfoyrwFeOigShAtAratios, but only the liver to body weight ratiosofthe PFOS treated rats were significantly increased compared to control values by Dunnett's t-test ~ Correlationofthe clinical chemistry endpointsofpotassium, cholesterol and triglyceridteos liver PFOS concentrations in rats are not shown due to the limited numberofdata points for cach determination. `The decrease in the percent initial body weight was most strongly effected in guinea pigs by N-EFOSE at 160 mkd and PFOS at 40 mkd andto 91% and 93% initial body weight, ataverage liver PFOS concentrations of 419 and 171 g/g, respectively. A greater fraction of the total fluorochemical in the liverofthe N-E{FOSE treated guinea pigs was present as the metabolites FOSAA and N-EtFOSAA than occurred in rats. Thus, these:
1s
SDRIPTSTH-6295.8, 6316.4,T-6868.2, T0711 T-7132.1 perfluorooctanesulfonamide fluorochemical species likely contributed to the body weight effect in guinea pigs. These data suggest that rats metabolize N-EtFOSE to PFOS more quickly than guinea pigs, perhaps due to the inducibilityofcytochrome P430s in rats, as were shown in this report for rats, but was not determined for guinea pigs `The percent initial body weight was also decreased in guinea pigs to 94% initial body weight by N-Et FOSA at 40 mkd and growth was held to 99% initial body weight by 40 `mkd N-E{FOSE, at average liver PFOS concentrationsofapproximately 100 ug/g in the N-EIFOSA treatment group and 66 g/g in the N-EXFOSE treatment group, respectively. Opingls.y HPoFwOeSvearn,dtFheO4S0AmwkedreNa-nEa(lFyzOeSdEftorreiantmtheentligvreoruopftghueinNe-aEpWigFOliSvAerstrheaadtead lgaurigneea fractionofthe total fluorochemical in the liver present as the metabolites N-E(FOSAA and FOSAA which when combined, were equal to or greater than the concentration of PFOS in the liver and thus may have made a significant contribution to the observed effects on body weight. The liver weight to body weight ratios in guinea pigs, in contrast to rat, were all rdeacnrkeoarsdeedr,oafltthhoeudgehcnreoansoefd tlhiveesretcohabnogdeyswweeirgehtsiegfnfiefcitcianntgluyidniefafpeirgenstwtahsan Nco-nEtr(oFl.OSTAheat 40 mkd > N-EXFOSEat40 mkd > PFOS at 40 mkd > N-E(FOSE at 160 mkd. This order is roughly the inverse orderof the decreased body weight effect in guinea pigs for cach of these dose groups. Given the lack of the liver responses in guinea pigsofeither htheaptaatnomIengtraalpyeroirtoinnedaulctiinojenoctfiopneroofx1i0s0ommeg/prKogliPfFerOaStincgaeusnezdymdeeastchoiunplgeuidnweiatphitghsebfuacntot in ats (See DTIS A), suggests that the peroxisome proliferation in the rat sa protective mechanism. Correlation of the clinical chemistry endpoints in guinea pigs showed that the rank order oPfFtOheS eaftf4ec0tomfktdhe> dNi-ffEeWreFnOtStAreaattm4e0ntmkgdr,ouopcscuornridnegcraetaasveedrasgeerulmivperotPaFsOsiSumcolnecveenltsrwataisons of 148 ug/g and 100ug/g, respectively. In contrast, treatmentof guinea pigs with 40 mkd N-EXFOSE had no effect on the Serum potassium levels at average liver POS. concentrationsofapproximately 45 g/g in female and 88 g/g in male guinea pigs. dCihfofleersetnetrtohlaanncdonttrriogllyvcaelruiedse,s caonndcesnhtorwateidonnso ipnargtuiicnuelaarptirgesndwebreetwneotensidgonsiefigcranotulpys or strong correlation to liver PFOS concentrations.
Conclusions All treatments caused increased liver to body weight ratios in rats but not guinea pigs, with the increase caused by PFOS being the greatest among all the fluorochemicals tested. The evidence revealed the classical signs of peroxisome proliferation in rats, but not guinca pigs, caused by these acute exposures. These data provide strong evidence that: 1) N-E-FOSE and PFOS stimulate both the transcriptional and translational expression of acylCoA oxidase in ats in vivo, and 2) there is a marked difference in the
16
bSRTPITST-B6295.8, T6316, T-6868.2, T0711, T-7132.1 response of rats and guinea pigs 10 in vivo exposure to these two fluorochemicals. These results are very consistent with the suggestion that these fluorochemical compounds are: "peroxisome proliferators" in rats and, much like what has been demonstrated for the classical "peroxisome proliferator" chemicals, guinea pigs are resistant to ths effect of fluorochemical exposures.
n
pSPiTthT6295, T:6316.4, 68082, T0711, 171321 Signature Page Prepared by:
_ nhs . SAtnuddryeDwirMe.ctSoeracat, Ph.D, DAB.
S/25/0y Dae
MN
SIRPSTTB-6295.8, T-6316.4, T-68682, T0711, T7132.
Summary Tables
Variable =
`Table 1. Average CumulativeDose
Cumulative Dose_ng)
soerectes
005E_GRO
rsex u
cont
NMeaon a0.0 a0.0
N-BtROSMORKA sNXo 02 0 02.0
e5an 938..96 10.202.5
N-ELFOSEIGOMKA NeX an 2163.4 2163.8
N-EeROSEAORKA NX 42 3 a2 s
Mean 10.062.2 14.70.6
erOSd0mkd
N Meana66.7 475.0
Mss6-leomkd sNo M3i2s.4sing a3 le
MseDan MMiissssiinngg 11.656.1
cont
dNeana0.0 70.0
FOSMOmkg sNo i0.s0sing 03.0
Mseban MMiissssiinngg 41.03.0
N-Btrosadomkd NMXean 236.6 251.2
N-ELROSELGOMKA sNXo 12 b 20.5
Mseoan 12.284.3 16.739.5
NELFOSEAOMKA MNean 239.1 252.6
Prosdonkd
sNo a1.4 04.1
Mseoan 33.33.2 43.62.8
1
SDTIRSB PTTT-631-6.4,6T-62868.92,T75071..1, 8T-71,32.1
`Ta2.bSumlmaery ofBody weights and BWchan
eFs
w
SPECIES DOSE_GRO
BWDO BWDA(g) BW.DO IEWDD BWDA(g) BW_DO
oe cont
Ns( a
a
4 4
4
Mseoan 243541 2a243 1607 26196 254003 6110
E-FOSA4OmKS No 2
2
2
2
2
2
Mean 61187 25587 915 71 0 7426 91
E-FOSE160mkd N2
2
2
2
2
2
Mseoan 2653 2a33 0a2 5255 12033 13)
-EXFOSEOmkd Nz
2
2
2
2
:
Mseoan 0635 2CI 0
37036 7313 0100
Prosdomkd MNeana425 39a 8 9 03 haz 401
MS56-160mkd sNo M2i1s3sing M1i9s5sing M2issing 2378 23 3 83
Mean Missing Missing Missing 258 ogg! gg!
cont
SND aMissing Miissing Miissing 87
21s
19
Mseoan 2704 7am 2103 1297 12897 2107
FOSAdOmkg Vean MMiissssiinngg MMiissssiinngg MMiissssiinngg 2353 33s! 3gg
-
SND zMissing M2issing M2issing 26 216 2a
EXFOSAGOmKd Mean 214 208 97 303 310 102
N=
v so 28
32
22
I2
21
21
EXFOSE160mkd mean 201 st ert 286 os! est
N-
sNozs
12
32
82
229 28
EtFOSE40mkd Mean 228 20 101 32 36 100
Prostomkd sND 46
31 hl4
11
1a
01
Mean 205
se 290 ot grt
sp 1a
15 4
12 15 3
Significantlydifferentfromcontrol valuesbyDuets Lest.
0
DSRTPITSTB-62958, T-6316.4, 6868.2, T0711, T7132.1
`Ta3.bSumlmaery ofOrgan weights and Organto BodyWeightRatios.
A RLF M
SsPECIE DGORSPE
LV WLw WB KW KnWoBW LW LWWB KW WwKWB
ap
Nt
Na Mem 196
4 0043
42 3
20006 4 197 40032 9 46 02006
NEFOSA NsD 277 0E00s 201
0001 2
101 2
0003 2
09 2
0001 2
soma
sMDem 11488 0o0o2 4055
00000018
22667
0037 005
55 01
0008 0000
N16E0FmOkdSE N 2 2 0
0 220 0
MSeDan 9053 00000430 MMiissiinngg MMiissiinngg 0816 00000317 MMiissiinngg MMiissssiinngg
NAoEmFkOdSE N 2 2 2
z 222 2
Mean 208 sD 1s
003 s2 om 00
0008 000
264 18
003 ool
Ss 01
0007 000
APoOmSkd ON 4 4 2
2
42 2
SMDem 61398 00003053 4011 000070 91564 00003084 0S1O 00000018
3 1M60SmSkd N Missing Mising Missing Mising 3 3 0 0
SMeDan MMiissssiinngg MMiissiinngg MMiissssiinngg MMiissssiinngg 01008 00000434 MMiissssiinngg MMiissssiinngg
CONT N Mema81 4008 219 0z000 7 121 700a 229 02 09
FOSA SND 0Mi9sing M0i0s0s3ing M0i1ssing 0M0i0s0ig 314 30005 000 00000
omg
SMeDan MMiissssiinngg MMiisssiinngg MMiisssiinngg MMiisssiinngg 01107 00000436 MMiissssiinngg MMiissssiinngg
ANoEmFkdOSA N 2 2 2
2 222 2
Men 80 sD 04
00% 18 oom 02
0008 0001
141 0046 25 03 0001 01
ooos' 000
N16B0FmOkdSE N 2 2 0
0 220 0
MSeDan 7014 0000402 MiMsissiinngg MMiissiinngg 11231 00004080 MMiissssiinngg MMiissssiinngg
oNmBkFdOSE N 2 2 2
2
222 2
Mem 99 0043 20 000 1sol 0047 27 gos!
PROS OsND 401 400 z02 omkd
20001 $ 12 a00s 021 02 00
Mem 82 oo! 17 000 132 go! 22 os!
SD__07___oo0 01
000 12 000+ 00 000
Significantlydiffrent from control values by Dunnett's vest
2
DSRTPITST-B6295.8, T-6316.4, T-6868.2, T-107L1, T7132.1
oSFPECTES
DOS`ETaGbRlOe. 4. PercentInitial B5od4y DWei0ght,
Cont
T MeanF108
N-EFOSMOmKE N so d6
Mean gt
N-EFOSEIGOmKd MsNeoan g14at
N-ECFOSE4OMKE sMNoean 24gt
PrOS4Omkd
sNo os1
Mean gf
so 5
Rr
cont
Neanou106
N-EtFOSEAORKE sNo 34
Mseoan 1201
N-EtFOSAMOmKE eN an 4100
Msse-l60mkd sMMNoean 33gg!
FOSA4OmKg
Nso o39
ean gt
N-EtFOSEL6OmKA sNeoan g44st
PFOS4Omkd
s Neo ansgg!
sp 3
"Significantlydiffrent from control values by Dunnett' test
Combined Data
zn
fSiTt sTissTosaTo TA
Table 5. Liver- and Kidney- to Body Weight Ratios, Combined Data.
Yow Bou bone
woes gm
`Significantly different from control values by Dunnett's t-test
x
S DTIR SB PTT-T 6316-4,T6 -68682.2, 9 T-10751.1,8 T713,2.
`Table 6. Liver Perfluorosulfonamides and Metabolite Values from Rats and Guinea
Pigs. Analyses performed at the University of Rochester.
(SAPlECitsSaErXe DOSE
FOS FOSA_ FOSAR FIFOSAR FOSE ELFOSE WETFOSE FOSA
ES
ore
Roc _RoC _R ROC MRCoC ROC _gluc. _gluc
wf om Mea_n TNA N7A NCA R]WA N[ M Wmo wn
osNO 2MA N2A NoA oNA o Moow oWm N2m
EdtornoksA
Mseoan 13004..6 0ol.s6 NwAm WoAm MMOoMm oomm 00.:20
N EtFoSN E 2 2 2 2
22 2
2
T6omkd Mean 350.2 16.2 217.9 388.2 28.7 1.9 6.1 0.3
NNso 32391s 72.00 120300 s2 ed 20.8 02 7 235 0B 1
E0tmFkOdSE
Mseoan 4445.37 73.s1 3e0z.4 2100.55.0 31..42 00.19 10.22 00.03
p0rmoksd NW 3 3 oo
00
wsepan 114100.085 2347..35 Wwwm WmAA mMomMMom Nn
Mo cor oMNean 10.1 0NA NoA oNA m0 ow0 o0m n0m
sonO N2A N2A MoWoA M ooN W0m N2A
E0tnFodsA
sMoean 2963.03 00.25 wWmA mWAA Mmoomw oomm 00..10
EtFosE on 2 2 2 2
22 2
2
T6omkd Moan 488.6 8.2 129.4 261.6 16.0 2.3 2.0 0.5
NWsp 529.8 42l6 s26.4 2113.8 820.3 20.2 21.1 02 0
E0tmFkodsE
vsepan 8884.04 04.39 288..62 51.46.0 31.65 1o.s3 0o.n4 00.04
p0rmoksa nN 4 a oo
oo
Msepan 11934.85 4313..71 NNAA WmAA mMoowM oomm nNmA
RF car XMNean 01.0 24.4 WoA oWA mooom o0m N0A
sono W2M 204 m2 om2 M2 ow2 o2m #
ETt6FoomskEd
sMoean 839.16.9 1184.1 s6.78.5 23031d.5 4274.62 61.s4 00.12 00.:20
pros N 2 27 0 0
00 0
0
u
SDRTPITSHT6295, T-63164, T-6868.2, T-10711, T-1132.1
Toned vean 866.4 18.3 NA WA mow om n
M wsse Nsp03130 23.2 swmo
M ON0
om o
NA o
L60mkd ean 140.3 316.8 $55.2 WA mow om wa
cor NsXp 28s. s 11411o11308 W0w NLNO)N 0
NA o
Mseoan 00.00 11039.s2 M NA WNA mMOoNw oomm NNAA
r0omskag N03 30
oo o
3
espan 12963..84 1167.72.9 NNA AMWA mMooww oomm 00.14
EtFosE oN 2 2 2 2
22 2
2
T6omkd vean 1124.3 18.5 94.3 294.6 12.1 3.8 0.3 0.1
pros WsNp 2166. 29.5 0237 nsl8 o 2.5 o1.2 00.0 0o.0
0nd vean 969.9 17.8 NA mA mom om A
sp 88.2 19:5 WA wa NNW NA
2
SDTIRSB PTT-6T316.-4, 6686822,T9-70751.1,T8713,2.
`Table 7. Summary of Liver Perfluorosulfonamides and Metabolite Values from Rats and Guinea Pigs. Analyses performed at the 3M Environmental Lab.
STPEsEC SEX TaOrBeE
CEO3S F3OMS ECFOSM T ECFOST E 3RM WECROSA_3M
TF ww FT
7=u 7EN TO
Mseoan N0A.151 00.00 00.02 MNAM N 0.1 mNM
N EcrosN e 2
22
2 21
L6omkd Mean 604,000 109.0 244.5 302.5 118.5 0.9
pros sWNo 52.657 1271.3 220.7 601.2 213.4 N0a
a0mka Mean 803.500 0.1 0. WA 0.4 mA
car Nso 2ers 200 200 w0m 010 0ma
Mseoan 00.12938 00.00 00.12 NwAm 0N.A1 mWWA
NEtroosen 2
22
2 22
160mkd Mean 908.000 89.0 317.5 147.0 169.5 0.4
pros sWwD 02 .510 92.5 127.7 402.4 210.6 00.1
a0mkd Mean 800.000 0.1 0.3 NA 0.1 ma
sb 16.57 00 00 wa 00 wa
2
SDRIPTSTH.62958, T6316.4, T68682, T707LL T7132.
`Table Hepatic Palmitoyl CoA Oxidase Activity, Combined Data
S2PECIES C0o%r GRO
CI]FORT
Nseoan 20.8
N-EtFOSMMOmKA N eand2
N-BtFOSElOmkd sNo 13.0
esoan 03.6
NeEtEOSEAOmKd N Meand2
erose0nkd x 07.6
dseoan 31.6
con
exan76
N-EROSEIGORKE sNo d3.2
dseoan 113.6
erosd0nkd v eansgt
so 5. Significant diferent from control values by Dunner' List.
zn
SDRIPTSTH.62958, T-6316.4, T8682, T-7071.1, T7132.1
Appendix 1. Deviations to the Protocol `The 3M Medical Department identification number for N-Ethyl perfluorooctanesulfonamide, T-6868, was not listed in the protocol. `The protocol used abbreviations for N-Ethyl perfluorooctanesulfonamide (T-6868) of PFOSA and FX-12. Protocol amendment numbe2r lists the abbreviations for perfluorooctanesulfonamide (T-7132a)s FOSA, PFOSA and FOSAmide. The abbreviations used in this report for N-Ethyl perfluorooctanesulfonamide was N-E(FOSA and for perfluorooctanesulfonamide was FOSA. "The protocol stated that the animals would be dosed on days "zero through 4of the study". That was atypographical error, as evidenced by the fact that even the example calculation in the protocol was for a 4-day dosing period, nota 5-day dosing period. The actual dosing period was for days zero through threeofthe study, and the animals were sacrificed n day fourofthe study. Animals were not weighed in most cases on day oneofthe study, and in some cases on day threeofthe study. In those instances, the previous days' body weights were used for determinationofdosing volume. Protocol amendment #2 stated the Dr. M. Wempe at the University of Rochester would `perform the metabolite analysisof the liver samples from animals treated with T-7071.1, T-7132.1. Due to personnel changes, Dr. Xin Lu at the University of Rochester `performed these metabolite analyses instead. Kidney weight was not obtained during necropsy under amendment number 2 on 3/5/99. Clinical chemistry was not performed on all serum samples. Histological evaluation ofliver, kidney and tests were not performed. Serum `perfluorosulfonamides and metabolite values were not obtained. Induction of mRNA for the following genes associated with peroxisomal proliferation andor cell replication were not analyzed for in liver: Peroxisome Proliferation Activating Receptor (PPAR), Liver fatty acid binding protein (L-FABP) and Proliferating Cell Nuclear Antigen (PCNA).
=
Appendix 2 -- Analytical Liver Sample Lab Identification.
(Study / [Record
[Dose group
ne |Necropsy|Specimen|Amt [Amtsent
[Date [Type sentto [to
[Amt [Amt sent to|sentto
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|OR00460F [Cont | 3/5/99liver | 07471~1g
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|-1g|~1g |
18
|
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pss Eom [_8[1R00749|M_|FOSAA| 2/23/01fliver
\Veh ~ |___[1RO0TSOM |FOSAA| 2;23/01fiver
NA |~1g NA |=1g
INA |~1g | NA |-1g |
|6[1R00747|M [FOSA|2/23/01fiver NA |-1g INA |~1g |
.
DSRTPITSTB-62958, T-6316.4, T6868, T-7071.1, T7132.1 Appendix 3. Cumulative Dose Individual and Summary data.
oF Toon
88Gc0oTrAiE8Se 00 99660000005512 Mxean 40.0 ES 00
N-ECFOSMORkd
880G1O4L49808 91601 xMean 298.6 5 pt)
N-BCFOSE160RKd 99600000005543 116660 xdean 2163.4 sp a3
N-BCFOSEAOmkd 880G0o11448878 110032 xMean 2102.2 so 0.6
PrOSdOmKd
88G6o011449912 9954 99660000005556 3389 xMean 166.7 5 32.4
u con
s8G0011447787 0 6960000004456 xean 40.0 5 0.0
N-ELFOSMOmkd
s8cGoOrLi4eEz1 112233 xean 2122.5 5 0.0
N-ECFOSEL6ORKA 99660000004478 116671 xMean 2163.8 0 a5
N-ECFOSEAOmKd 88060011447890 111250
3
DSRTPITST-B6295.8, T-6316.4, 768682, T-1071.1, T-7132.1
SPECIES SEX DOSE_GRO
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118R0O00774498 N1800750 Msepan be1s00782 11880000774483 88R0042003332 9800463
C2umulativebose_ (7g) 0117.6 111057 3399 I75.0 als 0 0 40.0 00 3386 236.6 15 112262 2124.3 2.9 4308 239.1 14 3385 3219 333.2 3.3 116656 1568 116.65.1 Cu0mulative Dose_(ng) 00 00 0
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bSRTPITST-H6295.8, T6316, T-6868.2, T0711, T-7132.1 E. Technical Report: Liver Fluorocarbon Metabolites -- University of Rochester.
Title: Summaryof Quantitative Analysis of Fluorocarbon Metabolites in Rat Liver Samples
Lin Xu and M. W. Anders "The paren"tThaisndim.ebtrabioflsituemsmoaftrhyeofutohreocaanaslbyosnissowefrievedretsearmmpilneesdfiromivreartssgaimvpelnesabryaLnC-oMffSlAuMoSro,caTrhboen, resus are presented below: control rt"sT,hrferogmroruatpssgoifivevne4r0smagm/pklge/sdwaeyreFOanSaAlyozerda:lyT,haendfifsrtogmroautps(gGivreonup1610) mcogn/skigs/teddaoyfFliOvSerAsAfom ((TMaSbSl6e)1)o.ralTlyh.e dTahtea scohnocwenttartatPioFnOsSofpwaarsetnhtecmoamjoproumnetdasboalnidtethfeorunmdetiabtohleitleisveirnsfovferrastswegirveemneFaOsuSrAeGd oFfOaStAs gNi-vgelnucFuOroSnAidAe(vMa3s6i)de:ntPifFiOedSaasnadmFiOnSoAr.metIatbioslintoet.ewTorwtohymethtaatbotlhietceosnwtreorleaindiemnatlifsi(edIRiOn0t7h42v,ers F1iRs0c0h7e4r33,44anadts1RmOa0i7n4ta3i)nceodnitaitnheedUnsiigvneirfsiictaynotfcRonoccehnetsrtaetiroVnisovafrFiOumSAd.id nAotpasrahlolweldsenteacltyasbsloefvers from concentrations of FOSA. fiom cont"rTohlerstcsc,onfdrogmroausp (gGirveonup402)mogf/rkagt/sdwaaysPtFrOeSadanailnlyN,ofvreommberrat,s g19i9v8e.n 4G0romugp/k2g/cdoanytaNin-eEdFlOivSeErs a`cloombpoolunrdasla,ndaniddernoifmcdrtmsetgaibveonli4t0emagreksghdoawny iNn-TEaIbFlOeS2.A oTrhalelyd.atTahsehocwotnhactelnivterrs afortfopimaorarntstsgiven sPiFvOenS Nc-onEtAaFiOnSdEpaalrceonhtoclocmopntoauinndedPsFeOveSr;alFmOeStaAbowlaitsesa.lsoThfeomuanjdoirn mtehetsaebosalmiptleesw.erTehNe-fEiIvFeOsSfAoAm, aPtFsOS, aanndd FFOOSSAAAN-(lMuScSu6r)o.niTdhe.e mPiFnOorSmweatsabtohleitmeasjwoerrmeetFaObSaAl,icFiOnSlEivaelscofhraolm, rNa"tsEgFiOveSnENa-lEc(oFhoOlSAgh;ucFuOroSnAide, aconndtrFoOlSrAtsNd-igdluncotarcoonnitdaeinwdeertecitdaebnlteifcioendcaesntmriantoironmsetoafpbaolrietnets.coImnpcoonutnrdasstoomGertaobuopli1t,ets.he ivrs rom ats, from"Trhiesthgiirvdegnr4o0upm(gGkrgodupay3)PwFaOsSteorsatleldy,iannMdarfcrho,m r1a9t9s9.givGernou1p603mc/okntea/idnaedylNi-veErAsFfOrSoEm acolnctorhooll oarnadllyo.wTchoencconnicretnitroantsioofnFs OofStAhewcehreemiicdeanltiafnieddmietlaivbeorlsifcoamrersahsogwinveinnPTFabOlSe.3.InAtshewivtehrGsroofrupas2,gFivOeSn Ath-eEmIiFnOoSrEmeatlcaobhoolli,te\s-iEdIenFtOifSiAedA,wePrFeOFSO,SnAd, FFOOSSEAAalc(oMhSolS,6)V-wEeIreFOiSdeEntailfcioehdoalsgmlaujcourromneitdaeb,oalnidcF,OaSnAd Nslucuronide. Similar to Group I, control animals showed detectable hepatic concentrationsofFOSA. DSicshceumses)i,onb:utThdeonseotdaatlaloawloiwnfceornecnlceussiaobnosuatbhoeuetxhaectvreorutaesomeftmestbaobloiliuteeoffortmhaetifolnu.orFoOcaSrAbownasstudied (sc mcoentsaibsotleinttel,ybiudtentthiefsieoduracseaofmetthaeboalmiitneoofgrPoFuOpSi, wnhoetrheeardiPlyFapOpawreanst.admWihnaitsetveererdidsirocuetyeoofrffoorrmamteidoans,a FOSA was metabolized to FOSA N-ghucuronide aise fromNt-hEFNO-SdEcEthayllcaohtoilongoifves-EisUeF0O.S2Eraanlcgoehoolf,maajndorNa-nEdtmFiOnSoArAmectoaubloldiatreiss.e bFyOtShEe oaxlicdoahtoilocnooufltdhe aNl-kEoAhoFlOtSoEtahleccoahrobloxgylulciucraocniidd.es.GluFcuOrSonAiAdactoiuolndofbethfeorpmarecdnbtyN-thEeFNO-dSeEctahlycloahtoilonwoofulNd-EgiCvFeOtSheAAoobfsberyvedthe orxeimdoavtailonooftfhFeOcSaErbaolxcyomoelt,hyolrgbrotohu.p oFfOFSOAScAouAldasbgelyfooxrymlaetde.byFthOeSNA-dNe-cgtlhuylcautrioonniodfe mN-aEyIbFeOfSoAromrebdybythe the glucuronidation ofFOSA.
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A. Statistics on Clinical Chemistries for rats, male and female values combined. (CHOL mid. By Dose Group (mg/Ko/day)
OSunmemwaaryyAnofovFiat RRsqquuaarree Adj RMoooatnMoefaRneSsqpuonasree.Eror Observations (or Sum Wats)
00760311768112 2105824217431
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Mean1S5qu2a5r4e F10R0a0t1i3o
[Er3or 271 6415925520378550
W11733296 P0r0o0v0o2
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Means for OnewNauymAbneorva Mean 8 sem
StEsrrmoer
NNEEFFOOSSEATO6m0mKkYa
41 w500o000 15083411
NPFEOFSOAS0EmdkOdmid
45 TS01o0 s47s59
StdErrorusMeseaanpsooalneddSetsdtiDmeavtiaetoifonse.rror variance
CLeOvNelT NEFOSAOmKY
Nombe8r meMreasn 4 sooo
7S6U0D8e2v SW Er2M6o8a8n8 sem 27386
NNEEFFOOSSEE146O0mmkkda PFOSAOmKY
41 5T030000000 116s? ssa277 5 501000 16249 72670
DCiOfMNeTan(l-Moan] NEFOSAtOmId
CONT ~MeNanEsFCOoSmpAaOrmiskoins
208070500
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1a17857500
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308..09000000 310000
203000000 230000
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`Comp0a0r5isons for each pair using Students t
210t080
ACOSNOTILSD NEFOSAOmK
11C2O2N8T6 NEFOSM"O9m8k7i% N-EFOSEA8O7k3S8
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15.8755
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PFNO-ESFAOOSmEKdYomkd 2"1108775386 NEFOSET60mid 10618
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PFNEOFSOASoEm16K0mka 138.01247152
20209000000 0.1000 PFO2S1I9O7m5k8d 5788339922 214440s6e4
Cholesterol in rats male and female combdiPionseeirdteinfvoter.vDaTlSue,s sSihgorwepdauictsioofnbmye4a0nsmkthdaPaFoIOsSigannfdca1n6t0y mid N-EIFOSE.
202..10000000 00000 N-EIFOSE1116006m1k8d 25.81008173 2311.47958029
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NECFONOTSAtOmId
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44 1t1sies 0o.s1e8r9e2v0i7
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PDiF-OMSeAa0nmflH-dMeanl] ~~ NCEOFNOTSAdOMY NEFOSEdOmKS
PFOSMIeOaMnKsdComparisCoOnNsT 0000000050 00..005000000000 005277s5 0082258
N-EFO0S2A7W5O0m0K0S 00.202050000000 03
Alphas PAFbOSS(AD0ImLkSdD cNEoFnOtSAtOmId NEFOSEOmkd
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N-EFO0S5E7o5m0k0d0 000053020050000000000
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0330690911 103366009011 3e91 136091
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TTIILSLER
`SOunmemvaayryAonfoFvita ReRqSquuiarreoAdj RMoooatnoMfeRaensSpqounasree Eror `Observations (orSum Wats)
0038757521041 00036508439313
2%
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OF Analys'iSsoufmoVfarSiqaunacees MeanSquare FRaio 149 000089615785303030 0o0ot0e4s2s0 Psraomvso 2 017833333 ogorrsa 00102
Lovel MeansforOnewNauymAbneorva Mean StdEror
NCEOFNOTSAtOMKY
48 002377550000 0000247557
NNEEFFOOSSEEdO1m60kmd
43 0o4r0s000000 00003041725
PFOSAOmkd
5 040000 003108
Std Error us`eMseaanspoaonldedStedstDiemvaitaeotifoensrorvariance.
CLoOvNelT
Numbe8r 037M5e0a0n 00S3U6D3e5v
NENEFFOOSSAEd6O0mmS
43 00247005000000 00..005000000000
NPEFFOOSSAE0dmOKmkd
45 004227000000 00.019058754435
PFDiOMSeaAnO(ml-dMeani] CNOENFTOSE60mkd NNEEFFOOSSAEOdmOkmdd Aphas
PAFbSO(SOAIOLmSdD NCEOFNOTSE160mkd NNEEFFOOSSEAdLOOmmiidd
PFOSAOmkd `MeansNCEoFmOpSaEri1s6o0nmskd
0000000020
00000200000000
00..0134255
000112255
0145
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003C2O5N0T0 00.001020500000 0011112258
Compar0i0s5onfo each pai using Student' t
209+301
PFOS0A.0O9m1A9d9 N-EFOSE01S0O8mk2d 00C5O0N8T2
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00018870s7 000078251927
00004477443333
00001133991155 00002233443344
Positive values show parso`CfommepaarnissotnhsatwiatrhoasicgonntircoalnutsyindgifeDruennnte,tt's Method
270dl438
PAFbOSSAIOLmSKDd
00C7O4N8T4
CNOENFT.OSEIGOkd 00..010437936
NNEEFFOOSSAEtsOOmmKidd 0"0..0000226588
SEM00M1e2a5n0 00.0020500000 000044788970
NEFOS0.M1O4m50k0d0 00..111225050000 00000000000000
NEFOS00M4O7m4k3I3 00001230941354 00.1100228844
N-EIFO0S.E1d4O5m0k0d0 00..112152050000 00.000000000000
N-EIFO0S0E4A7O4m3A3d 00001233041354 "00.1100228848
7%
TTIIOSLIFR aPioseirtoinvte.valuesshowpaisof meansthatare significant
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OFAnalySsuionsfoVfaSriqaancees MeanSquare F Rao
ENrooder! 184
216704312451030 o00e0s0i6o2s5 Preeosvsoz
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2
44373913 020700 00018
Level Means for OnevaNauymAbneorva Mean Su Eror
CNOENFTOSALOmId
48 s37s00s0 0o11s15e9
NN-EEFFOOSSEE1s6o0mmikds
24 33s2sm0m o02s231e9
PFOStOmd
5 4300 014116
Std Error usMeesaanspoaonldedStesdtDiomvatieaotfonesror variance
LeCvOeNlT
Numbe8r 36M1e8a0n 03S8W7D0e6v8
NENFEOFSOES1A6d0Ommkda
42 33720800000 00231126123228
PFNOESFAOOSmEkddomid
53 3435670s000 00128580009070
Sid0E.r1M3e6a8n5 00.118501010 00.0172580804
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045000 036250
0.32500
Apha= PAFbOsS(4DoImLkSdD NCEOFNOTSAdOmKd NENEFFOOSSEE1O6m0imkdd
Compar0i0so5ns for each pair using Students t
210t091
PFO0S4A1O9A3I9 NEWF0O2S1M5O1T6K8 0.3C60O4N6T4
00326195416646
00341688598 00331381868
0033480511658
0012304238 003166815784
NEWOS0E3A4O0m1k6d6 0.03.63845389 "002.44562889
Positive values show pais`CoofmmpearainssontshwaitahesaicgoninftircoalnutslyindgifDeurennnte.tt Method
272]184
AbPsFO(SDAAOImLKSdD
025C7O7N3T5
NCEOFNOTSALOMKY 0"0..4432895805
NENFEOFSOES4EOImSkOdm "00.4381865608
N-EFOSE11.6101m0k0d0 00.3465205000 003020500000
N-EFOS0E156505m1K9d5 061127248 ""00281351228
st
TorsTL
178PoaDfsooisoeeGtvraoluuesshowpisofmeansthtar snfcanty
1s
ECSl
1..9
I ES YN AY
X
eo
\
om weroReroomsecrisoetmeoisss TSaetrsi
osoGroup(ng)
00s
at o0n0sa
|
|
OnSeuwmaymaAorrforFyia
RRSRoqsouqtuaHararoaenASaoErr
o0s03m66a01s20z5526
OMbesearnvoaftiRoensspo(onrSsaumWeis) S8sT=e
VSoodaa OFs ArSuiomfoVSfasarSciuhasnmicnees Mem"Szmomee aFxRaeo
CErrnoor w 2 T2a35a0r25e00 oOTe pooovmr
cLoovnett Means forOnNyomAbrerve aMseamn SoumEreorr
NNEEFFOOSsEAoTSmOia NEFOSEiomia
i2 sGea7so0o ooorzarsoscaess
ProSiomd
5 Tew omer
Lovet StdErorusMes apeoNoaulnmeabaSdeearsDtienmvaitaetosifMonaesrwrvariaSncue.ey SuErNem
NCeortosnoma NEFOSE Soma
T4 asestsoeo0 2 sao
oomaseann Oawass
o03o27n4 00
PrNoEFsOdSmEidaoma
i5 eTmeso oooorm oOoissee
PFDiO-SVeIaOrmf}dMearl]
PFOSIOnkdMeansCNoEmFpaOrSiAsoMnOsM
000000
075000
NEFOSaEaAeO0m
13C7O7N5T0
NENEFFOOSSEAdDomNkd Con
"0o7s9e0s0000 Rims
220070500000 33750
0co0r0s0e 00236725600 026250 000000
Nerosetsoma
Rp
ss000 D570 0120
NEFOSE1f4G4O0m0k0 008678500000 000301020500
Torsao
Apts
[aos \ ----
APNrseosriiossuoma
PROo3SarUamenksmSs
NE2F1Op0S0M0rO1m]kI "am
NEFOSGSeaEiArsT o"asCOreNmT
NNoiEnFroossctiioommaa GOooossonistems prSSiiaamr DSSiaieamsr Sooamsaemsn
Poste valuesstowproCofmpmaerainonhsatwiarnsciogfnatnotoy diDrot.ms ethos
AForsoOSIt2oL7rS5oullDses osecsosnsts
SNNoEenrroosstvioonmaa Dtoaisseeezs
Nirostooma adanse
= GLUmgGE rBeyeDnoseru R --
Ps
A
"ADAL ASTY
NEFOSES"taG6noaorrmsedea 2peiZsacsaeoen
AY
~~
i v[7 x
---- CONT NEFOSKfTroEsIeFiOeSaeEaOsmsky
.
-- S9ohrPeOt
PooComo
1 Duets
Rss [ Som-- at RareAc
oGsriozszszer
GNRhooamnnaoiefaaRnnesSsqo(uaxnrSeuEmrirg) SGoosrseooe=sry
NsTowo!e
0" AriomfaVSarouiiasngcmres Men"sUwrwso Forwaes is Grisso moss peer
oa 2 Sse sms owe
Loovvert Means for OnenNaoyrAonwoT rva mMean SuCEiroer
=
TILLER pris
NENFEOFSOAStEO6m0mIkdd PFN-OESFOOmSEk4domid
42 w2e1s00 40341m3 54 uZmar7Tes0 327024m%
StdError usMeesaanpsooalneddeStsdtiDmeavitaetoifonesrorvariance
LeCvoenlt
Numbe8r 20M3e5a0n aSruDeesv
NNE-IEFFOOSSEA6O0mmiidt NEFOSEdOmid
42 s211o00 149s9s461%6 4 mars asses
PFOSAOmKd
5 M760 286671
Sur3M1e0a7n3 33S.a0r0t0 22882106
PFfMOoSaAnO(KMYean] CNEOFNOTSAMOmIA NNEEFFOOSSEEs6O0mmikdd
PFOSOmidMeansNCEoFmpOaSrMisOoTnKsY CONT
250.010000
205010000 s2a9100000
5542.815000 136600
3297070%0 80708000 180 82500
Alphas
(C0o05mfopr aachpraiiusisngSotudnentsst
AbsOILSD
210t091 PFOSIOmkd NEFOSAAOMK CONT
PNFEOFSOASOAmLKOIm CONT
5018.06571
60088767-18as9a8r8r
"i895
"49477 sa076
NNEEFFOOSSEE1s6O0mmikdd
221031870
20056177 198782173
Positive values show pars`oCfommpeaarnissotnhsatwirteh asicgonntircoalnutsyindgifDeurnennte,tt's Method
272]184
PFAOsS(AOOImLiSdD
40C5O5N0T7
CNOENFTOSAdOmd T3.e01r4m1
NENFEOFSOESdEOTmOiMdG 42897251610
NEWOSE6A2O8k5d0 387775500 730705000
NEIFOS2EA1O1M7I 5"592782677 50281%7
Poasfiotriovnetv.alues showpais of means that are significant
N-EFOSET13680.m6K0d0 18121550000 703070500
N-EFOSET2G9O3m8K0d 180851137 2387128%2
8
Tbirs oi
Abmgt 84D
as:
CASN
=
2 VY]
:1" ESEa TTNN I A
>A aA
EJ
|
\/
fa---- heroine or iva
-- we
=
5
TTIIOS7LIFR
OSnuemwmayarAonyfovFiat RsRqquuaarree Ad) RMoaoatnMoefaRnesSpqounasree Eror Observations (or Sum Wets)
o0s5a0s6e0r7r2 03371552613744
zn
MSoodurecle ErCoora
OF Analys'iSsoufnVoafrSiqaunacees MeanSquare FRaio
184
2167498312451030 006018063255 P6r6o3b8o2F
2
44373913 0200 00018
Lovel Means for OnewNauymAbneorva Mean StErmor
NCEOFNOTSAtOmKY
48 3a70s00s0 0o111s175E
NNEEFFOOSSEE146O0mmkkda
42 332s00 0o2t2e3r1e9
PFOSAOmKd
5 4300 014118
StdErrorusMesoaanpsooalneddSetsdtiDmeavtiaetoifonso.orvariance
CLeOvNelT
Number8 36M1e2a5n0 038S7W0D6e8v
NNEEIFFOOSSEA1O6m0Kmdkd
42 337000000 00321162212382
PFNOESFEOOSmEKddomkd
45 433500000 00218508000907
SWE0.1M3e6a8n5 00..1155801010 00.0172580804
DisMean(lMean(] ~ PFOSAOmkdMeansNCEomFpOaSriMsOonmsK.S CONT NEWFOSEAOmkd
NPEFFOSO4S0AmLkdOmY
00.8060000000
006060000000 007048775500
00.7182550000
NCEOFNOTSE4Omkd
07784570500
001028570500 000030705000
000030705000
NEFOSE160mHa
"11000
045000 036250
032500
Alphas PAFbOs(SD4I0fmLcSdD NECOFNOTSAdOmId NNEEFFOOSSEE146O0mmdkd
`Compar0i0s5ons for each pair using Students t
2.10!091
PFO0S4A1O9mA3d9 NEFO0S2M1O5T1K6Y5 0.3C60O4N6T4
00326105418646
00341688508 003331188568
00538450116985
001324038 001366187548
NEIFOS0E3A4O0m1k6d6 0."03.63845389 "002.44562889
Positive values show pais`CoofmmpearainssonthsawtitrhesaicgonnitrcoalnutsyinigfDeruennnt.ett Method
272]184
APbFsO(SADOLmSKdD
025C7O7N3T5
CNO-NEFTOSALOmKd 00..4432895505
NENFEOFSOES4EOTmGkOdM 00.438165608
N-EFOSE11.6101m0K0d0 003465205000 00.3020500000
N-EIFOS0E5156501m9kd5 00.1162147248 ""00284351228
6
TorOsLER
TPBPoestDriovoseavaluesshowpisofmeans that aesigan
2.
LNa A n
ESAS
pA
~~
AY
wo
WV
"oDrossGroNuEpF(OSmAcaMOarMrBoIFsOmSEaOmnAg SSI0uN0sPeOtF WoDesureSaosmel
|
Rsqure OSneuvmamy aAorrfoFryia
ose
RNeRaoaontmMeosfaARnegsSpoanoseErr
0r03060i265s6
Obsarations (orSumWots)
=
VSoodrac
DF An'SsoufmVoyafrSiaqsnucees " pra
MeTmZe
F9Raaio
ErCoosa 2" 723288a25m00 G0as p00o0r0
cLoovett
Maans forOnNomAbaerrn| Mean Tesi
SourErzoor
NNEEFrOoSsEaToomoimias NEFOSEdOma
23 i
oBaa0o0 eT
roazcsseest ores
FRoSimia
5 Tei orerer
Love
S10 ErousWeasaraponolsedSeisatDiomavtieaoofnasrrvarias Nomber Mem Sev
SiEnNoan
cNoEnFtosnoma NEFOSEroom
42
aossom Ooamre sam Oomwe
ootimon 02000
NPErFoOSSiEoimoamua
5i sTmeno ooaosims oOisoesmt
POrfMOeSai(mliMaeanl]
PROSHOnKSMeansCNoEmpFaOriSsMonOsm
200000
075000
NEFOSsEMemisd
11C3O7N5T0
NNEEFrOoSESdAOmmkad ont
D7e9s00t0 zr
000070500000 570
o00u0r00s0 222%
00230337500 0oooa0
NErosEtsoma
iio
pr
D0 om
NEFOSETTaSdO0m0d0 006557050000 00030103050
w
fwo o
ap
com-pleit2 ingutes
nNt Seirsea ems rdGSoamiyms |NN FO2clammme NErOnmvRerNaonmmomSns |SoomG2ueO0nnN
uBmoeseroma SSiEs ddaTm dmoym oamaen
AT t Sa t
i iila"l
_-- EE
n amt e Sie
. iA y ----
-
A
|
A ON
|
L"E A D AAN1 hm )
|| ` IZ VI Av ROR
|
|
ROJ oni NEFOSITNrEIFOSEAomia .E0hPa
om Pi con
_ ioSresneposos _5--5 RaSeLySmreeee EgLs pr re oOyRIETErToEEmn wsTreEgRs atEa Tw 5 mum hm oe oih A iYoOnE VYOm
EFOTSa =oTsE = Si
.
TLItLLER
NNEEFFOOSSAEL1O6m0Kmdka PFNOESFAOOSmEkddomid
42 amtaosm0 330143m 54 2umTew 320r4e%m
StdError us`eMseaapnosoalneddSetsdtiDmoavtieaotfonesrorvariance
LeCvOeNlT
Numbe8r 20M3e5a0n0 eSeUDrev
NENFEFOOSSEA6d0Ommkdd
42 a211s0000 416969649106
PFNOESF4OS0Emdiodmid
45 aum7a7es00 s28e66a7n0
SW Er3M1o0a7n3 33S.a0r0t0 212881260
DitMeanll-Mean[] ~~ PFOSAOmkdMeansNCEomWpOaSriAsMonOsM.K CONT
PFNOESFAOOSmAkOdmK
250.010000
20510000 2598010000
CNO-ENFTOSEdomkd
6524815000
2F9705000 80705000
NEFOSET60mi
136.600
150 62500
Alphas PAFbOsS(ADOImLSD CNOENFTOSALOmid NNEEFFOOSSEE1640ommkdd
Co0m05 pfo aeacrhpaiirussingoStundenstst
2.10t091
PFOS5A1O.m0k51d NEFOSMO0T%K6Y7 1C8O9N5T8
"5108..98578
0"48941777 dsgaa0r7r6
221031870
20056177 198182113
Positive values show pars`oCfommepaarnissotnhsatwairthesaicgonnitrcoalnutsyindgifDeurnennte.tt's Method
27d2l18
PAFbOsSDAI0LmSKD
40.c5o5n0t7
NCEOFNOTSAdOmId T27301111
NNEEFFOOSSEEIsGoOmmikdd 2489.2715619
NEIFOSE6A2O8m5k0d 387775500 730705000
NEIFOSE2A3O1m1k7d "592782677 5E0z817
aPiotseiretnito.values show pars of means that ae sigifcanty
N-EFFOSE1T3660.m6K0d0 18112.550000 703070500
N-EFOSE126003m8A0 180851137 -3z87128%2
8
Torrs on
BUNmg/dL.ByDoseGroup (mg/kg/day)
-
A
A7a 0, Aa, e |
N J w=N ETOv I)
te crfniri dA oo ooyn
0
TpIri0s7LIFR
``OSnuemwmaayryAonfoFviat RRsSqquuaarree Ag RoMooatnMoefaRneSsqpuoanrseeEror Observations (or Sum Was)
00.218140800228 330118317156
%
Source OF AnalysSiusnofoVfaSriqaancees MeanSquare FRao
EMroodrel
184
207740557050000
11068403784 P1r7o1v0o8r
Coal
2
28162500
122046 0.1892
Level Means for OnowNauymAbneorva Mean Su Eror
CNOENFTOSAOmid
84 11867050000 116657016
NNEEFFOOSSEE1d6o0mmkkdd
43 2te070s00 1196055096
PFOSHOmKd
5 188000 14763
1d Error usMeesaanspoaonldedSetdsDtoavitatoofnesrror variance
LCovOeN!T
Number8 18M7e5a0n0 44S9u6D0e3v
NNEEFFOOSSAEL6O0mmikdd
43 2160000000 226444897459
PFNOESFAOOSmEkddomid
35 1t8e80r0s0 22126177935
St 1.M5e8a9n6 11.52227457 01.91609857
DiNfE=FMOoaSnE 6M0emakna] PFCOOSNtTOmkd NENFEOFOSSAELdOommKKYd
NEFOSEI0MMeaKnSs CompaPrFiOsSoInOsm.kd CONT 302000000000 302000000000 030255000000 352255000000 020055000000 200000000000 600000 280000 275000
Alphas ANb-sE(FDOISLES1D60mHa PFCOONSTA0mK NNEEFFOOSSEA4LOOmMkAd
Compf0o0aseacrhpaii ussingoStundenstst 200t01
NEFOSE5I604M1K3d9 PFO1S8IOaMSksS 14C2O7N60T Ga824i56810 433E6e0E8s0 33848s8i8e9 00077272040 2t5gs8asss 124283110044
Positive values show pais`CoofmmpearainssontshwaiatrhesaigconnitfrcoalnutsyidnigfeDruenntn.ett Mothod
270]438
AbNsE(FDOiSLEStD6Omk 27C9O3N9T2
PCFOONSTA0mHd
5a0s39s44
NENFEFOOSSEA4LOOmMkKdd 42761669933
NEFOSE5A2I5M0k0d0 220050000000 007050000000
NEFOS"E00A2I7m0k4 "225238140848 "pa1r38y59
N-EFOS6A.M0O0m0i0t0 228705000000 007050000000
N-EFOS0A7M2O2m9k6d 1".r8a3s4t8084 p48r85e50
91
r5 o
LL
PEEp n t ssnstom as ta ety
i
AD A
I)
gmigo"o LO ol-- )
:: 3 ~
-
Wi
CONT N-EFOSAORMIEIOSEdOmi 00hPOF
N -- J|
usoGroup (oR
005
008
|
WgeeoSnreesv u_z
SEeSLyrrven = oe%
h ofaer gor%PVEA SmmNimtgImms cMeTrnismmess arCemme
Ta BO EEZO5G
E19y ---I -- TE=T" M=wEw ygomm
SAEiESaSn, P 1 PuE 0m Ib0ez
E-o SM E a sI Gtin] Se
[ ShEEePss-- 1 to{ pE2mE2 FE2nEEemn oa=anmm
E2ROrSeattiinron
EroasonnsConprSEtaRoomrYs werosti5nom%tis | NEFOSEaNInaOynn PRPmOro=Sve in 22 i am om
a Aeron,
npgn na=8 = = Iw:s 2
5
ow
amenasmap:gennonss
s5risnt.he | werogiognelsy II"TaEmll ewmeIa rEo| sesoifsamenss Soegong
Ssos
ine T BunN = = i=B
mona de A o2i: vans
we00isr.e,
ay =
formere,
r= WLswnypnmiey
| mo
H L " i eA, a i2200 | Sed
o VEFVRT & CO
Te: l =
||
cnaGrp (rom)
00s
oss
- Sil w rrn lwsz
LC -- 0
LL
2
sWowr 7iEe ErToEEnD aoTemE one
# i EZ BEE #%
Soit EAWR ESET 2s5r sutnn
Tpr0i7s11 FR
NNEEFFOOSSAEt1O6m0KmSia PNEFFOOSSAE0dmOKmYKd
43 e7ss2ss0e0 659918sm 54 67612205000 5s3e5e6m5
StdErrorusMesoaanpsooalneddSstsdtiDmeavtieaotofnse.rrorvariance
LCoOveNlT
Numbe8r soMerasn 1S7W0Demv
NNEEFFOOSSEA1O6m0KmkAd
43 7ca2s0e0 7409471350
PNFOESFAOOSmEKddOmid
45 6T62i00s0 80o4st3
SWE6M2e6a0n5 3203837303 230517526
DCifO=NMToan-Moan(] NNE-FEFOOSSEAdOOmmKd NEPFFOOSSAEOmTK6d0mK
CONT MeanNsEFCoOmSpaMrOimsoKnSs.
13080705000
103.80705000
"21972875500
49..00050000
25.4583
11.5833
NEFOSE1A7O8m7k5d0 4000000000 5705560303
PFO2S9IO2m5k0d 9500550000 205003030
Alphas CAbOsN(TDILSD NNEEFFOOSSEAdtOOmMKKdd PFNOEFSOASoEmTK6d0mKd
Compa0r0issonsforeachpair using Studentts
208t301
12C5O3N4T7 NEFOSA"M1O.M47K6I8 NEFOSEA2m5k2d3
1245726328
1"17377226688
1r37e26s8
sseas86s2
7T7s67e1
CnTseers
PFOSIeO3M5K2S i7t76e7r1 5s7ss7eds
Positive valuesshow pais`CoofmmpearainssontshwaiahreasicgonnifrclanutsyinfgerDeunntn.ett Method
270id438
CAOsN(TOILSD
16.C1O9N61T
NNEEFFOOSSEAdsoOmmiIdd 599661111
PFNEOFSOASOEm16d0mkd 4354258878
Poesrietnitve,valuesshowpaisofmeansthat aesignifcanty ALT UL By Dose Group (mgolday)
N-EFOSE2158.04m5k8d3 17155883333 0205030303
N-EIFOSET8E408m6K2d 17155663%8 ""210547670418
%
Tbrrs on
| O Ha RBO eSAm SS
.
v
| |l DoseGre an roerko)se ciamamon oSuss
TDeares
oss
Rqure OSnionvaanAracFaa ogrerss
[NRooonno oiaiaRnesSpoanrs Err
S0Ta3araseesmornstd
Gosanston (orSm ig)
oe
Soduen OF% AnSuomfaovTlarSrasaneecawys MenMSayleer FRato
ECrhroa 3ws mTesriems wperoroene
cLoovnet Means for OnNaovAraoooT yva nMean Ssiurno
NENNFEErFoFoSosEsneiioosnmokmsaa
5i GaGoawwm asswasnmn
Prosiomia
i Sam doe
Lovet StEroruWseo poNasanemdbs5atDroavtoeesaroncvariaSncsev SETom
oKNEEFnroossatiosnokmaa
SSo oo@mGameener mrrammw sasoauams
NEPFroosSiEioma
IS BGeenm ptowmn dosem
NDEirfotsetsMEomsa]l NEFOSEIueGInoMsGCamPaErOaoSmsmked rCaONeT NEFOSEAOsomed
CPNroeoFnsoisoemsaoia
DeSeemme ggcmosmso daoasoooo pTGroo]oo
NErosaioma
Sater ase iors S50
Alphas
Compf0o0ra5eacrh1}aisisngoSonnss
NEFOSTSaoMr300I80m70 TSSo0or0oo0o
0
wi ww=oan.
| woo0A s _PliFnoynI gona sGeeeri Bom EE am
Bolml
E$E9 SBE EaE o=m
itt frI eerliietsnoms
idl
mMoWieeem, Abs(Dif}-LSD
omCONT iSEz
Hom BB
TagT stasS
Z
2h=
etn A
: = F||EgN dTMwd A = V ON VA / =\TEZ=NNY
[&
Des
E feTrsAG WA Pe
[."%
i"
fSoe,Tmmar `DoseGroup (myKg/day)
os
o
jsao
ET re id
Lt
2
gB 5=r T12I SEBZ umErmIsE ueEgnwu==
tu WI WP yu Si
Bu a Fsims 1 !(208 32% 9g8
Serum ian =
"
TtIdO7LLFR
PFOSAOmKG
5 47600
StdErroruseMsoaanpsooalneddeStsdtiDmeavtiaetoifonos.ror variance
CLOovNelT
Number8 siMemasn 3S042Do8v
NNEEFFOOSSEA1d6O0MmKkYa
43 7w3e0s0 178756012s
NPFEOFSOAS0EmdKOdmKd
15 maT2eso000 36 3964
10705 SWEM1M0e7a1n2 74.745815 12698832
DCfOMNoTan( Moan] NENFEFOOSSEA4MOOmmKIdd PFNEOFSOAS0Em1K60mka
CONT MeNaEnFsOCSomEpdaOrmiskodns
90.01020500
90.01020500
143778775500
38478550000
587083
ose3s
NEFOSAaMOrmkod 0807050000 205890%00
PFO4S3I7O7m5k0i 235498050000 104.90308030
Apa ACbOSN(TDILSD NNEEFFOOSSAEiOOmmiIdd PFNOEFSOASOEmIi6dOmks
`C00o5 mfopreaachpririusisngSotudnentsst
209!01
25C0O5N35T NEFOS2E1A55D9A1d N-EIFO"S1A2M8O0T9K1Y
"22185080911
S8s64831100
352846381100
1245.27080568
111.30183752
72578385
PFO1S5I2Om0k0d6 7170132782 231166950946
Positive values show pars`oCfommpoaarinssonthsawtiahresaicgonnitrcoalnutsyindigfDeruennnte,tt's Method
270dl438
ACbOsN(TDFLSD
32C3O7N1T6
NNEEFFOOSSEAdiOOmMdd 32015722200
PFNOESFAOoSmEk1d60mH 16488675770
Poasfifteirvonetv.aluesshow paisofmeanstha aresignificantly `SiCgomdbeicnreedasaetsdiantAaLfKoPr,maAlSeTs aannddfTeRmIalGesb.y 40 kd PFOS and 160 mika N-EIFOSE in ats.
N-EIFOSE5168.07m0k8d3 0985383333 140.09030303
N.EIFOSE2146708m5k8d 12153613355 2d1o6s5i2926
07
-- 2
= ATES
d1a.,80 a
A\ fo
N
112A 60 AA SUANYN " INV A OTT
= cori ar4ora BW
TpIri0s7LIFR
OSnuemwmaayryAnoof viat RRsSqquuaarree Ad) RMoooatnMoefaRneSsqpuoanrseeEror Observations or Sum Wis)
00.311520232879 53001..96806817
5
Source DFAnalysSiusmofofVaSrqiuanacees MeanSquare FRato
ENordoer!
4
6360947044.592508 3T762001833 P2r0o4b2F0
Cot
2
o7379.478
wes os
Love! Means for OnewNaoymAbneorva Mean StEror
NCEOFNOTSAtOmKS
48 a20s3500 3210546%6
NEN-FEOFOSSEEd1O6m0Kmd
42 228170800 4330143%
PFOSAOmK
5 ren 21219
1dErrorusMeseaanpsooalneddStesdtDimeavtieaotifoensrorvariance
CLeOvNelT
Number8 20M3e5a0n 7S848D7o0v
NN-EEFIOFSOASEL1O6m0Emdkd
42 s211000 416963649106
PFN-OESIAFOOSmEkdomid
54 gTmae7sn0 s286e67s1
SWE3M1e0a7n3 3935.7010 22882106
PFDOitSMAeOanm(kld-Meanl] ~ CNOENFTOSAOmK NNEEFFOOSSEE1d6o0mmkkdd
PFOSAOmkd MeansNCEomFpaOrSisAoOnsm.k
250.010000
20510000
5542180500
729705000
138.600
10
5C8O.1N0T0 NEIFOSEA6O2m8k5d0
209000000
387775500
682755000
730705000
Aphas APsFO(SDALOSMYD
CNOENFTOSAOmKd NN-EEFFOOSSEEId6O0mmKidd
Compar0i0so5ns for each pair using Students t
2.10t001
PFOS"8O1M0K5S1 N-EIFOSSA0OM8K7S 1C8.O9N5T8
""1680.896878
409641777 984401776
2320131870
Se05e1r7 e1o8r8a1rs
NEWFOS2E3O1m1k7d "S5o2r6271 97028137
Posto values show pairs`oCfommpeaarnissotnhsatwiatrheasicgonntircoalnutsyindgifeDruennnte,tt's Method
272]184
PFAOSS(ADOLmSKD)
40c5o5n0t7
NECFONOTSAIOMKd 73206174111
NNEEFFOOSSEE4OTmSKOdm s482.2751619
N-EFOSE1T36606m0K0d 18112.55000 70700%0
NEFOSET62O9m3K8d0 180851137 "152782.13582
9
Toros on
= bo pd sm] =ra
fn
L0HPpBorsyieBedevtalevesshowposofmean hotar sigfcanty
LAAAN A
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=
oShue or% AnaisomfoVlyiasrmsnsmceees Me"sleos Foreas
ETrra i2s dSioersemss taomsnei moewre
LSoovent VansforOnevNaoyArnio"va I ean SuEror
NNNeEErrrooosssaetirisooonmnkskaa
IDF omomwH mreure
Frosionia
HEA
Lovet SiErruWseesaarpNoa oomleodasrn sDioavtdofVeernrvaraSiOev SuEMom
KNEFnrorossmeonsoimaa
TPuoTammmo msmeeown Uo"mo0
PNeEsrtFoasnEiaoms
F PoI m ] ee aErHes
Ooneste) cGoonot Mo"nFRsOTSCiooimmpsiasrisonsNEFSOSEoiOsMd NEFOSEJIaSnOeMsds
NNEreiorrsooissoEeniiaoonmaa aTsmooeeosss 100omso PRiois]]
Hoo3rs]
NErosaioms rr
tire
sao
NEFOSpZAisOernoS0 foSi0o0e0
10
poe ns
sSwrnrreomoup"nonwearossnigtmy weroregmy
aSPio,ee.wn,,e eSTEmmTMo OTEEhmmmam neseMGSaaRmm esosM2mUkwR
ei fr Trt etn
wiod1)n am
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= LD ipHriSn V A\WCIAN L(O=YYLOx Y))
wewrooroM4EoUnU8mmHyR
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re er Wercieeroseioms | GAPE Teo
RJ FEr sLrmo - s=m
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=%
tm By=o%oFoEeEEEusmemEElnmh wrwaEeeRmg aoocmseo
oimoe eiraA monTam ue
TprIiOsLIFR
NENEFFOOSSAEL1O60mmIkda PFNOESIAFOOSmEk4dOmid
24 usstso0m o1g3776 45 1t9a2e0 0og8T1e1r3
StdErroruse`MseaanpsoaonldedSetsdtDimoavtieaotfonersror variance
LCoOveNlT
Number8 1eM9e3a7n5 16S8U5D0e2v
NNEEFFOOSSEA1t6O0MmKkYa
42 1u5s1s00000 035831568530
NPFEOFSO4S0EomdkOdmkd
45 1ue760 215a16m88
SWE0M5e9a5n7 0245008020 e1.r436e1
NDEiFfMOoSanA(MlMOeKaAn] NCEOFNOTSEdOmd NEPFFOOSSAE0Tm6K0mK
NEFOSAOMMeKaGns ComparCiOsNonTs 60200500000 010602050000 4J705000000 01.7172550000 550000 387500
NEFOSE147O5m0k0d0 001020050000 6758000000
PFOS3I4O0m0K0d0 11..7875500000 201000000000
Alphas ANbEsF(ODSIALdSODmId CNOENFTOSEdOmid PFNOESFAOS0EmTk6d0mkd
`Com0fo0pr5eaachpririusisng Sotudnentsst
210091
NEFOS2M8O0M4K3d1 08C8O1N8T5 NEFOS1E.1A4m4k3d1
oBasiesss 22308416885
22380413815
e19s55t20 00563598046
C0o20s5t2e0
PFOSoIsOsmikzd 015089854779 12.s3e2e4r8s0
Positive values show pairs`CoofmmpearainssonthsawtitarhesaigcnoinftircoalntusidnigfeDruenntn.ett Method 272]184
NAEbsF(ODSAALtSODmd 1.C62O2N9T7 NCEOFNOTSEdOmkd 2S62513478 PFNOESFAOoSmEKdISOM 2038117333
Paiofseirienvte.values show paisofmeans that are signfcanty Ks mmol By Dose Group (mgKgiday)
N-EIFOSE515G0O0m0id0 337857500000 20.1000000000
N-EIFOSE1.19G5O5m2d0 006230550260 p1.3r24i60
102
TorsLR
v .
e > s
i
5 LA,
AN
7
>
. on werotamaroVweI]To
NEFOSCIoRROSS `DoseGroup (mgKaiday)
SUITS! had
ir, To
Sowaty oss
Rss SOneovamyAaorfonrFia
o7asrss
RRVoeaoaatnMroolaRnAegSsapaornaErr
QQ$as2aa0ae0os6ai0sz0
Ossarvatons (orSum Wot)
7
VSoodcaa DFi AnSuamofoTVfiaSruivaasnrcsees Meomses i FRaio
CErloow 2 NTmeoans oarmers p<roooork
Loovnet Means for nevNaomAben7ra cMaoaon SuoEormr
NNNEEEFFFOOoSSsEIEmooommmaakd
32DOm33R000 oaoismme
Prosimia
53% ose
Lov S40ErroruseesaarpsoNoaolnmebdSesratOaoitaoofMnaestaonrvariaSnicdeDev SiEnMoan
cNNEoErrroossenacnoimaa
47 aeShmaoono oi00as10re0 30"720s00t%0
PErorsoiosmiioa n
i 8S0m0 oomseer 0oi2r6
COfoentloan Meant) 00C0O0N0T0 MeaNnEsFCOoSmpEaI1rO3i0sm0oin0ds0 NEFOSTE0M0m0i0 NEFO2S2M75O0M0
NNENEFEFrOOoSSsEAEimsmioaama F2123a7030o0000
2D2a30r00s00000000 0308007000000000
a0o0so00oo0
PrOSimia
30
200000 Hoo S060
Aphas
Co00smpforasacrh|pii ssingoSudnentss
PFO33S50I0O60m00k00d cr17eo0s0e0o0
0
0bis16
ffNefiosscsiooma
PrCeONT NEFO2S"1ED0Io0G0sOsMy NEFOSEsHomisd 003% Seas 5
NEFOSSTMieoenemd
PNNrioirsroiosastmsiiioaommaa. Za1a1si6rs%e
SSpoeiams prSheaenres
SGSlioesee
Posto vues showposCofmamns hptwairnoaassioratnoadoioft. nsesthod
cRoosin21e51d|s 4c5o5r
NNNeWErorososesnicieioommmaaa 3o5o3se8eo8n3s
Prsiomia So
PGorseteenvalvesshowposofmeanthatar sian
Ci- mmoliL ByDoseGroup (mg/kg/day)
PFOOoSiosmkoed SSokoiemay
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|=
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comns cara
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opToirraen
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oosuen OFi AnSuosmfVoySalSrhsmcweoes Messuam FoRwaino
HCohra 5B sSloomse sSeoems moeeer
Lovur Ma forOnnTAs orTaoswsen Souwmny
KNNEEErFroooSsstEaosiooommniaa
3Pollikeoem ei1mmEm
104
TTIIOSLIFR
PROSAOmd
5 10200 1000
5Error us`eMseaapnosoalneddeStdsDovtiaotifonemsrroravartianece
LCoOveN!T
Numbe8r 00M6e2a5n 26S6U9D2e7v
NENFEFOOSSAEd1O6M0KmkSa
42 11004805000 0100900s0
PFNOESF4OS0Em4KOdmKd
54 11002102050 216828019164
SWE0r8M4e3m7 0099507040 o13o15r0
DNi-fEMFoOaSnE(1M60eman] PFNOESFAOS0AmLKOIMIA NECOFNOTSEOmid
NEFOSEI6M0eakn]s CompaNrEisIoFnOsSMOTKY
005.000000000
005000000000
220705000000
125205000000
337500
28750
PFO2S0I0O0m0k0d 010.500000000 017357050000
Apha= AbNsE(FDOISLES6D0mkd NPFEOFSOASOAmLiOdmAd NCOENFTOSE4omk
`Comf0opr0seaachpririusisng Sotudnentsst
210!001
NEFOSEI46703T9K9S9 NEFOS3M6O0T4K0d6 PF1O9S6M5m7k6d
"13.8908459766
3D3esrte6k8 12607997688
"13375429269
io0e6s8 s24e29r68
Positive values show pars`oCfommepaarnissotnhsatvairthesaicgonnitrcoalnutsyindigfeDruenntn.ett Method 27d2l18
AbNsE(FOOISLESTD6Om 1.C47o9n8t2 PFNOESFAOSOAmdKO)MKd "2a1s2s5e8z6 NCOENFTOSEdOmid 30173054882
NEFOS2E7I5m0k0d0 202755000000 008020500000
NEFO1S3E54m9d8 Za02106688 S232s7t8648
aPiosfiotrinvetvalues showpaisof means tha are significantly `GREA mad. By Dose Group (mo/Ko/day)
33C7O5N0T0 218377550000 00.5020500000 03C7O2N2T0 0i.30e277240 223271706040
105
bri
w
Jw a AAE, AA, S YD A Se A
S <y > WW
" pre ---- be
DossGu(oneirroscimross Sooen ! o00es
L_--inT iini _
Sa--n---"in a oe%
wyFT 0iYtaT rmEVT euirn =t=em
w i ZB EE
-3nimr OnYfLe1tw5 intm YO=mz
eEaen, iI oBinR=
ai. TTTEaEFsoo Jtiyer onetuom
SSa oEuie 1 E 1mg 2F ia EaEHrEs =
EaRCpese vS2dJ rsS arEBiynRE vea wpom Swoeeefs ouoen
oiee
27Bh =TnR = I= E 4&R 7 a n oz
J
Goeodsee cwi:gbgots
#5
TbiIsLER
APsFODSIALOSmDd NNEEFFOOSSEA1O6m0Kmkdd NCEoFNOTSE4omkd
PFO0SI0O0m2kd2 0000005439834 00009350007659
NEI2F10O0S9M1OTKS ""00..1040459%3 "00005340031 0033776
N-EFOS0E.10G0O5m3k6s4 "00..1045849071 ""00.0162970717
N.EFOS0E0A3O0m0k6d0 00.0132003041 0o10z5
Positivevaluesshowpars`oCfommpeaarinssotnhsawiathesaigcnointfrioclanutsyidnigfeDruennnte.tt's Method
272]180
PAFbOsS(4D0LmkSdD
008C0O8N7T5
NNEEFFOOSSMEO1M6KOSm 000.0160821648
NCEOFNOTSEdOmd ""000.60801695
Poasiifteriovnet.valuesshowpaisofmeansthataresignificant Cdeicnrieaalscehinempoitsatsssifuomr ably r4a0im(kadlPeFsOaSn,dNf-eEmaIlFeOsScEoamnbdinNe-dEInFDOSTA1,58w,itShhtohwesmossigtnisfiigcnainfticant cIhnacnrgeaesseodcciunrtrhien4g0imnithde4P0FOmSkanPdF4O0SmdoisoN-gEroWuFpO.SACrdeoatsienignreo(uCpsR.EAT) was signicanty
009C5O0N7T5 000.3036777776 000047142s2
107
am
B. Statistics on Clinical Chemistries for Guinea Pigs, male and female values combined.
w ERA
-
A
/
p E01 a A w AErAi ~NG7 NN ol i
RY NY
. No= - > -- CONT NEFOSAonyd Prosios ~ EMhPar
---- on N-EIFOSEOmId Wotdeer:
Nor
/
Berens
"
TTIIOS7LIFR
OSneuwmamyaAroryfovFait RRsSqquuiarreoAd RMoeoatnMoefaRnesSpqounasree ror `Observations(orSum Wats)
0o360e357e825 a02a3a37635T
19
Source DF AnalysSiusomfoVfaSrqiuaanrcees MeanSquare Rat
EMrodoerl
155
387138.8180426 15149519028 P2r.o8w1F7
Coal 18
11761947
esses 01327
Level Means for OnewNauymbAenrova Mean
CNEOFNOTSAdOmKd
64 4T0i078s30
PFNOESFOASOEmdiodmkd
i5 m549a00s0
Su9E5ro%r etewe 10449
1d Error usMeesanapsoaonldedSetsdtiDmoavtieaotofnesrrorvariance.
CLOovNelT
Numbe6r 400M8e3a3n 19S947Do8v5
NENEFFOOSSEAddOOmmdY
44 7m1m7s0 2307453404
PFOSAOmKd
5 549000 207497
StEr8M1e5n6 1115281775 9280
DiNfE=FMOoaSrAOMmeKaGn] PCFOONSTAOmid NEFOSEdOmkd
NEFMOeaSnAsICOomMpKarisonPsFOSOmkd CONT N-EIFOSEAOmd
160.08050000 10608050000 311468816677
230753278500
3r1a6i6s70 1240815607 5070008030
5070008030
Alphas
`Comfopr eaach0pr0asiiusisng Sotudnentsst
213t144
ANbEsF(OOSLAdSODmId NEFOS5MO2M1k7d PFO1S6I8O5M7K6d 0C4O7N9T8
CPOFNOSTAOmKd
J0e47s9s8 sitsaoan0 12583730974
NEFOSEdOmKS
21608 2888 26.4382
N-EIFOSE2d1o6m0i3d 218248382882 382147
Posiive valuesshCoomwpparaiissonosf wmietahnasctonhtaroaleussiinggniDfucnannettyt'dsifMeeretnhto.d
262]898
AbNSE(FDOISOALdSODMKd 7C9O8N3T8
PCFOONST40mkd
23534768474
NEFOSEMm 339421
Poasiifotriovnte,valuesshowpaisofmeans thaaresignificant Cholesterol, Male andfomal guinea pig combined.
109
TbiIsLLER 10
--1 --
RTH
=
x
AVA ally sq N A A T N ASi
\
3 \/
V
\
w]\/
7
d
|
CONT
sy N-EIFOSAWOmKE Prosi NEFOSEOm
|EMER PF
Spt
Wahsata)
a
TTII0S7LIFR
OSnuemwamyaArnoyofvFait RsRqquuaarree Adj RMoeoatnMofeRaensSpqounasree Error Observations (or Sum Wets)
0709.1258019 080122112765
1
SMooudrecle CErlroor w
OF Analys'iSsoufmVoairSiqaunacees MeanSquare FRaio
23
4033575500000000 00316225901070 P0r3o4v4o4r
15
47300000 oats 07838
Level Mans forOnowNauymAbnerova Mean StErmor
CNOENFTOSAtOmKd
44 n12e2r0s0 o03o0nm
PFNO-ESFAOOSmEk4odmid
44 1u24s00 0o301w21
19Error usMeesaanpsooalneddSetdsDevtiatoiifonesmrroravartianece
LoCvOeN!T
Numbe4r 1M9ea0n 080S5W7D0e0v
NN-EEFFOOSSEASOOMmKdd
44 112224000000 o0s4e9e6r6e8d5
PFOSAOmK
4 ris oastaar
StE0r.M40e2a8n5 002294485393 022087
NDEifF=OMoSaEnfd-OMmeiadn] PNFEOFSOAS0AmKddOmd CONT
NEFMOeSaEnAsICMomKpdarisonsNEFOSAMOmki
0.00000020
00020000000000
""00422785
00202755
PF0O2S7I5O0M0K0S 00007050000000
015
042C5O0N0T0 00.212550000000 0000000
Apha=
Comparisons for eac0h0p5ai using Students t
217t882
ANb-sE(FOOISLES4ODmKd NEFOS"E045O2m8K13d NEFOS0A7M2O8M1k3S PFO0S6A5Om3K1d3 05C0O3N1T3
PNEFFOOSSAAOdmOKMKd
""00752381133
009881133 00582381i3 007770831133
CONT
050313
70313 ores 0213
Positive valuesshCoomwpparaiissoonfsmietahnasctohnattoaleussiignngiDfucnannettytdsifMeeretnhto.d
26d8l20
AbNSEF(ODSIEAdSODmKs 07C1O7N8T8
PFNEOFSOAS0AmdKOMKd 00.9919728888
CoNT
Exe
Podsiifteirevnetv.aluesshowpaisofmeans thatarosignificant PHOS mg/dL By Dose Group (mo/Ko/day)
nm
.
x
To
LATE os A a0fmt
CA NA2
((
VV
Vv
eons N-EIFOSAOMWIEFOSEIPTrEose |E`aStcuhdePnatsrt
DuWmeo ttsn
Dose Group(mgKgiday) s--m--iid
00s.
FeEen RootMeanSquareError
oiss 0.776343
= BpOoFTo roEaTETEIEmEmERR Observations(or SumWats)
1
MEwEeEEg iae
womC eneI w3BE1TeHgrmREogEseaTrm
we
iteres ssipFrEseEist:PSrEerR
a ern
pMmemsee 1PEGR SSaEmm THooUEnR
prBoarrs WeFlRSEEETSwSIhEodaomcloErhn veroBw"sersHoEnsEmsy roTfosvHheiEnenRs
-- pons
menreetrrono?loi:reenscom neon roses
Ia
TTII0S7LIFR
CNOENFTOSAtOmid PFOSA0mid
4096201088 11.1129160088 044608 072108
1102610088 007729160088 070608 1.19608
Positive values`sChomopwaprairsosnosfwmiehanascotnhtartoalruessiinggiDfucnannettytfeMreetnhto.d
268dl204
AoNsE(FDOISLESdDOmK 1.C19O7N8T2
CNOENFOTSAlOmKS a13r07m82
PFOSAOmid
"099782
aPiotseireinvte.values show pais of means tha ao significantly stihge tcwhoanangaelsyoscecsudrieredctlyAbove are forguinea pig Ca and PHOS, male and female combined. No
na
T bis o
Ke nl.yDose Grou (nga
i
- . <> & <>
a
:
CONT
---- MEwOSMOmid PrOSIN NEFOSEOmA
ouSNP
sii
ow YihCoral
Load
ns
TI07LIFR IS
SOunmemwaaryyAonfovFiat ReRqquuaarree Adj RMoooatnMofeRaensSpqounasree Error Observations (orSumWats)
o0s320s0678678 818.12430512098
7
Source OF `Analys'iSsoufmVoafrSieaunacrees MeanSquare Fat
MEordoerl 133 211365.08035000 710297958 5P4r7o7v3oF8
Coal 16
23049059 144057 <0001
Love! Means for OnewNauymbAenrova Mean
NCEOFNOTSAtOmId
44 1B28e0s0
PFNOESFAO0SmEkOdmKd
35 24260800
S0w87E0r0o5r 008877000058 050967
S14ErrorusMeesaanpsoaonldedStedstDiemvaitaetoifonesrrorvariance
LCeOveNlT
Number4 12M8e0a0n0 10S1u6D8e3v
NN-EEFFOOSSEAAdOOmmdd
44 1e22e00s0 0ogs6e2ssz4
PFOSAOmKd
5 a6s00 154660
SWE0m5M0e8a2n7 003448716312 069168
DiCfOeNMTean{ Mean] NNEEFFOOSSEAdLOOmmiKdd PFOSA0mK
CMOeNaTns CompNarEiFsOonSsE.AImkd
006000000000
006000000000
"81152000000
575525000000
NEFOS6M1O5m0K0d0 505050000000 97000
PFO8S1I2O0m0k0d 715.927000000 000000
Alpha AsC(ONDTILSD
NNEEFFOOSSAiEOdmmIKd PFOSAOmi
Comparisons0fo05each pair using Students t
216t037
17C4O1N64T NEFOSETA4I1m8k4d NEFOSA4M4O0m8K3S
14144018643
13784018834
A37s0488%
646773
e673
oars
PFO6S4IGO7MTKSd 053816777733 -AssTr
Positive valuesCsohmopwarpaiisrosnosfwmiethanasctohnattoalreussiinngiDfucannnteytfteMreentth.od
264id945
ACbOsNDTILSD
2.C13O5N9T8
NNEEFFOOSSEAdMOOmMkKdE 145031649037
PFOSAOmid
6.03368
Poasiifotriovnet valuesshowpaisof meansthatarosignificant ANb-oovteFOisSAforatg4ui0nmegaKpgiigdcaoym.bined male and femal potasium levels. Sg duced by PFOS and
ns
mjadam 7 PR
HATO) HAMAS Fa:d AN nAiNlC)
mf yy
J
oo
I CONT NEFOSMOmks PrOSiM N-EIFOSEMDmKS
= | CAMP
Storrs:
=ial
ar
w
TTIIOS7LIFR
OSneuwmamyaAronyfoFvita RRsSqquuaarreo Ad RMoooatnoMfoRaensSpqounasree Eror Observations (orSumWats)
00.0152898419 00..110761705583
19
MSooduerlce ECroor
OF `Analys'iSsoufmVoafrSiqaunacrees MoanSquare Fat 135 000117006825086313 0000101335907 P0r3o1v0o6 18 018157895 oolooes 08174
Level MeansforOnewNauymAbenrova Mean StErmor
CNOENFOTSALOmId
46 00115508030503 00005433388
PFN-OESIAFOOSmEKdomid
45 o02e120s0000 00004573784
1Error MuseoasnapsoaonldedSetd sDevtiatoiifonesrmroravartianece
LeCvOeNlT
Number6 015M8e3a3n 009S1u7D4o2v
NNEEFFOOSSEAdtOOmMiYd
44 00115602050000 00.015170783858
PFOSA0mKI
5 0210000 0143178
SEr00M3e7a4n5 00028858473 006403
PFOiOfSMAea0nmlKl-dVeanl] NCEONFTO"SEdOmd NEFOSAtOm! Apa
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213t144
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213t144
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126
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213t144
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262dl898
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130
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213t144
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134
TTIIOS7LIFR Appendix 8. Hepatic Palmitoyl Co-A oxidase activity
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135
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11RR0O0O774489 N1R00750 Mseoan TM1R00742 11RR0000774434 88SRRR000440004336233
T2 ORO. 10..000000 12..0000 33..0000 32.250 0.957
M4i.s00sing 67..0000 35.667 1828 MMiissssiinngg M0issing Missing 58..0000 25.500 2.121
MMiissssiinngg M0issing Missing MMiissssiinngg 1108..0000 214.000 5.657
MMiissssiinngg M0issing MMiissssiinngg MPiCsOsRiDn_gU_ MMiissssiinngg 049..:000000
136
TIO7LIFR TIS
FOSA4OmKg N-ELFOSAdOmkd N-ECFOSEL60mkd N-ELFOSEAOmkd PFOS4OmKd
NSRG0AET MseDan 118R0000774465 N1R00747 Mseoan BBRROO44003376 xMean so 99RR0O0446656 Mean so BBRR0O44003345 Mean sp 88RR0044003389 99RR0000446678 Nvean sD
94 .00 54.1530509
MMiissssiinngg M0issing MMiissssiinngg MMiissssiinngg oMissing Missing 2109..0000 %15.500 0.707 MMiissssiinngg M0issing Missing M1i1s.s00ing 2210..0000 317.333 5.508
137
TTIISLL FR 138
Tr0i7s11 FR
Appendix 9. Effect of acute FC administration on catalase and acylCoA oxidase expression
The following report summarizes the effects of in vivo administration of N-EFOSE or
PFOS on catalase and acylCoA oxidase gene expression and enzyme activity in liver
tissue from exposed rats and guinea pigs, and was presented as a poster at the 2001
SwoecrieetdyeroifveTdoxfircoomloagpyprmoexeitmiantgel(yWa1llgacoef effroazle.n2l0i0v1e)r. frToimsseuaecshaonfaltywzoedmianlethaisndsttuwdoy
female rats and guinea pigs that received either 40 mg/kg/day PFOS or 160 mg/kg/day 2-
(N-cthylperfluorooctanesulfonamido)-cthyl alcohol (N-EtFOSE) orally for 4 days, or an
equivalent volume of 2% tween 80 (vehicle control) from March 1, 1999 to March 4,
1999. All Portions of
animals were the respective
killed livers
on March were quick
$, one frozen
day after the last consecutive dose. in liquid nitrogen and shipped on dry
ice to Duluth for analysis.
Eonfazym1e0%Sa(mwptl/veolP)rehpoamroatgieonna--teoThfe0.e5n-z1y.0megfrfarcotzieonn lciovnesristitsesdueofinth3e060,0m00Mgmsaunpneirtnoalt-a1n0t tmheMmeHtEhPoEdSo-f1BrmadMfoErdGTusAin(gpcHom7m.2e)r.ciaPrlotbeoivninceonsceernutmraatliobnumwiansasessttiamnadtaerdd.according to
L-Cod Oxidase Assay ~ The equivalent of ca., 5 pg/ml tissue homogenate was
shuysdproexnydpehdeniynla6c0etamteM(PKHHP:AP)O,L-04.0un2it%s/mlTrpietroonxiXda1s0e0, 2(0pHuM7.4F)ADc,ontaanidni6n0g u1MmlaMurypl--
CoA (LCoA). water bath and
The reactions were allowed to incubate terminated by adding 3 volumes of 2
at 37C for mM KCN
30 in
min 100
in a mM
shaking sodium
carbonate (pH 10.5). The concentration of H0; generated during the reaction was
estimated from the fluorescence of PHAP as measured with an excitation wavelength of
317 and
nm the
and emission at 405 nm. results are expressed as
The nmol
fpleuroorexsicdeencgeenwearsatceadl/imbriant/emdgwmiitthocchoomnmderricailalprHot0ei;n
(Table 1). Protein was quantitated by the Bradford method.
Catalase Assay - The activityofcatalase was estimated by a modification of the original method published by Claibome and Fridovich (J. Biol. Chem. 254, 4245-52, 1979), which is based on the direct measurement of H;O; disappearance as quantified smpMectprootpahostsoimuemtrpihcoaslplhyaatte2(4p0Hn7m..0). InTthheismperdocieudmurwea,sthweatrimsseude stoam2p7leCwaansddtihleutreedacinti5o0n initiated by adding 10.3 mM H:0x. The progress of the reaction was monitored at 240
nm for 5 min. Catalase activity was estimated from the initial linear rate ( E***=43.6 mM"
a`meomu)ntaonfd eexnpzryemsesewdhaischunciattsa/lmygzepsrottheeidne(cToambploesi1t).ioOnnoef u1nuitmooflaecotfivHitOy;is pdeerfimnien.d as that
139
TorIsLLER Northern Blot Analyses - Quantitation of mRNA for both acylCoA oxidase (ACoAO) and catalase were performed by Northern blot analysisofquick frozen liver samples from treated rats and guinea pigs. Approximately 1 g of frozen liver was powderized in liquid nisiotlraotgieonn uksiitnganadmotrhtearc/opnecsetnlet.ratTiootnalquRanNtAifiweadssrpeeccotrvoeprheodtoumseitnrgictahlelPy EaRt F2E6C0nTm.RNTAhTMe RNA was electrophoresed on a 1% agarose gel, blot transferred to a cellulose membrane
and hybridized to the corresponding randomly [**P] labeled oligonucleotides that were
PCR amplified from primers to ca., 350 base sequence of the respective rat liver gene. mRNA band density was quantified autoradiographically using. phospho-imaging software.
RESULTS: Rats -- Both male and female rats express LCoAO and catalase activities, and there is no substantial difference in enzyme activities between the sexes. The same is true for the constitutive expression of mRNA for both enzymes, with the exception that unexposed malerats do not express the message for PCOAO. Acute exposure 10 N-EL-FOSE causes a doubling of the specific activity of LCoAO in liver from both male and female rats, but catalase activity is unchanged. Associated with this is a proportionate 2-fold increase in the concentration of mRNA encoding for PCOAO, but no change in catalase mRNA, in livers from both sexes. Again, there is no remarkable sex difference in response to N-Et-FOSE exposure, at-least with this limited numberofanimals tested (n=2). Exposure of rats to PFOS elicits a similar doubling of LCAO activity for both sexes, and possibly a slight increase in catalase activity in liver from male rats. Hepatic catalase activity in female rats does not appear to be affected by PFOS exposure. Unlike N-EtFOSE, which caused a doubling of mRNA band intensity for pCoAO, acute exposure to PFOS caused a 3-6 fold increase in PCOAO mRNA expression. This enhanced expression of message was more pronounced in female compared to male rats, and in both sexes resulted in no greater LCOAO enzyme activity than was observed athalf the mRNA level for rats exposetdo N-Et-FOSE. Guinea Pigs - The response 10 guinea pigs to exposure to N-EtFOSE and PFOS was dramatically different from that observed for rats. The constitutive activity of LCoAO in unexposed guinea pigs of either sex was very low (near LOD values) whereas catalase activity was 1.5-3 times higher. However, the activityofneither enzyme was stimulated following acute exposure to N-E-FOSE or PFOS in vivo. Perhaps the most dramatic difference between species is the fact that guinea pig mRNA encoding for PCOAO was undetectable, even following exposure to N-Et-FOSE or PFOS. Part of the explanation for this observation may be that we were using hybridization probes developed against
140
TbIr0i7L1 FR
the sequence for rat known at this time.
liver ACOAO because the It may be that the guinea
sequence of the pig sequence is
guinea pig enzyme is sufficiently different
not that
trahte sPeCquRenpcreo.ducAtltlahcokusghcomthpilsemmeanytariintdyeefdorbeadaenquaartteifahcytb,ritdhiezaatbisoenntcoe tohfe cpornosbteituftoirvetlhye
expressed consistent
message and the inability to stimulate expression of PCoAO with the low and uninducible enzyme activity in guinca pigs.
mRNA
are
CONCLUSIONS: stimulate both the
These data transcriptional
parnodvitrdaenssltartoinognaelviedxepnrecsestihoanto: f1a)cNy-lECto-AFOoSxiEdaasned
PFOS in rats
in vivo, and 2) vivo exposure
there is 10 these
a marked difference two fluorochemicals.
in
the response These results
of rats and guinea pigs to in are very consistent with the
suggestion and, much
that like
these what
fluorochemical compounds are "peroxisome proliferators" in rats has been demonstrated for the classical "peroxisome proliferator"
cnohtemgiicvaelns,tgheuidnaetaa pfiogrs oarrgearneswiesitagnhttstootrhinsecefrfoepcstyoffifnlduionrgoscahnemdicthaulsecxpaonsnuortesc.omWmeenwterone
washseotchieartedexwpiotshurpeertooxicsiothmeer pargoleinfteractaiuosne.d Hhoewpeavteorm,egbaalsyedoronotohuerrdaitnad,icwateiosnussptehcatt tahrate
the evidence will reveal the classical signs `guinea pigs, caused by these acute exposures.
of
peroxisome
proliferation
in
ras,
but
not
141
TTHIOSTLIFR
SummaryofScreen forHepaticPerorisomeProliferation
Avimal sSpeociexSe Treatment BWiody wLiivePrrLoivweirncPon4t0ent OxLiaduaysleCoA acCtailviatsye uRgNAW pmCRoNAAO CmaRtaNlaAse
( ( (mee) (umolimg)A(ctaimvoiltmyin/mg) (Uniting re Contro ol Control
protein)
>)
GROG Ra M Veh OROOMGH Ra M Veh RODE) Ra F Veh ROTO Ra F Veh
298 12 ISLS 0086 313 ISI 1456 0.067 210 76 1883 01s 201 70 153 0055
4 209 20m 1267
53 1585 2650d 753
92 102
Ll 219 2047 338
100 9s 100 1085
9RODM6S Ra M NFOES.E 22 13 ISLS 0331
ROOMS Ra M NE. FOSE
231 ILI 1349
0284
9ROMTL Rat F NE. FOSE
174 75 1658
004
9ROMT2 Ra F NE. FOSE
17S 73 2158 0188
2295 3s 20 1401 nr om3 26 2m os 78 1861 193 2 178 "2 me 1m 30 wu
ORODM6T Rai M PROS ORODMGS Rai M PROS
257 119 1154 29 125 13
0423 0241
ROTI Ra F PROS ROOT Ra FE PFOS
175 83 141 0077 1S3 73 2386 0099
By 2m 39 2 2%69 208 1372041 198 99 1556 2
a 1ss1 277 157 60 1804 44 1473
9G000IS 9G0046 9GO0SI 9G00S2
Gpig M Veh Gpig M Veh Gpig F Veh Gpig F Veh
296 113 1752 0123 298 119 227 0089 274 119 1803 0188 289 142 221 007
9G00047 9G00M4S 9600053 9600s
Gpig M NFOES-E Gpig M FNOES.E Gpig F NFOES.E Gpig F NFOES.E
20 87 2127- 2 226 85 2691 0013 230 96 1764 0126 236 89 283 0195
9G00049 Gpig M PROS 215 72 1532- @
9G000SO Gpig M PFOS 9GO000SS Gpig F PROS
240 10 221 221 84 1278
0074 0031
9GO000SS G)piignsuffFicienPtFsOaSmple fo2a3n7alys7is4 1716 0016
(0d) notdetectable
L347 Lond 133907 Lend
103 97
12 5506 Lesnd 09 ass 23nd
91 109
M3. ow
07 393 17m
92
07 4168 177m
105
1s aml 128m
104
as. ow -
09 4608 12700 09 6129 65nd
97 103
14 S16 12
9%
uw
oTr0i7s11 FR
Appendix 10: Final Report for FOSA (T-7132.1). Tile:
Comparative Molecular Biology of Perfluorooctanesulfonamide (FOSA, T-
7132) in Rats following four consecutive daysof dosing. Final Report
February 18, 2004
Study Number: DT1S Protocol Amendment Number: 2. 3M Medical Department Study Number: T-7132.1 `Study Director: Andrew Seacat Ph.D.
Analytical laboratories: 1. Kendall B. Wallace, Ph.D. DABT.
Professor, DeptofBiochemistry and Molecular Biology Schoolof Medicine 10 University Drive Duluth, MN 55812-2496 2 DrXinLu Department of Pharmacology and Physiology 601 Elmwood Ave, box 711 Rochester, New York 14642
Study Protocol Tide: Comparative Molecular Biology of Peroxisome Proliferation in Rats and Guinea Pigs Study Initiated: In-Life Start Date: November 16, 1998 In-Life End Date: December 21, 1998
143
TrIi0s7L1FR
Purpose: (`Tvheehipculrepcoosnetorfotl)hiosr 4s0tumdgy/Wkags/tdoaytrpeeartftlhuroereoomcatlaenersautlsftorneaamtieddew:itCh8eFi1th7eSrOn2oNcHo2m.po(uFnOdSA, cPeFrOtaSiAn,toFxOicSoAlmogiidceal, eTf-f7ec1t3s2,)s.uTchheassthuedpyatwiacspedreosixginseodmetopreovlailfueartateitonh,eomftethaibsocloismmpoaundnd and to compare these effects to other compounds dosed at the same concentration. Methods Test Materials: P1e2r0f0l6u7o-r1o0o8c,taGn.esMuolofroenam1i0d/2e8(/0F0O,STA-,71P3F2O)SwAa,sFiOnvSeAsmtiigdatee,d.C8TFh1e7vSeOh2icNlHe2coNntBro#l was propylene glycol.
Dose Groups:
`vTohlrueememaolfe5rmatls/kregcbeoivdeydwperiogphytl.ene glycol as the vehicle control by oral gavage at a
`oTnheretehrmoaulgehrfaotsurreofctchiveedsatuddyo,seanodf4w0ermegeuFtOhaSnAi/zeKdgobnoddayywfeiivgeh.t,Avsiausopreanlsgiaovnaogef8onmgd/amyls
o`TfhiFsOdSosAinign prergoipmyelnetneagclhyiceovledwaascuprmeuplaarteidv,eadnodsea ovfol1u6m0emog/f$kgmalf/tkegr wfoausrasdumcicneissstievreedd.ays
ofdosing. This of this protocol
dose was the sameasthedoofsPFeOS administered and is comparableto effective dose levels for hepatic
under amendment peroxisome
|
bpruotltihfeercatuimounlaintirvaetsodofsePFofOSFOfSouAndadimnitnhiestleirteerdatuunred.eTrhtehisLDprSo0tocfoorlFisObSeAloiws ntohte kLnDoSw0n,for
PFOS 251 mg/kg for PFOS in com oil, as apointofreference.
MethodofSpecimen Collection:
i`nTthoe~li1vergwpaiescresemaonvdefdlaasshr-afpriodzleyn daisrpeocstlsyibilnelaifqtueirdenuitthranoagseina.inTthareedlipvoerlsypwreorpeyldeinveided (Nalgenc) containers. The containers were moved to dry ice and weighed afer all liquid nitrogen had evaporated. The tissue was stored at -700 C and shipped on dry ice.
Sera: Upto 10 mlofblood was collectedfromeach animal into glass serum tubes. Following clotting, thebloodwascentrifuged for 10 minutes at 110x0 g at 4 C. the sera was transferred to new tubes and be centrifuged again for 10 minutes at 1100x g at 4 C.
1"
Tb0r7i01 FR
`Two aliquots ofthe serum sample (~ 0.75 mi) were saved for possible metabolite analysis. Specimen Handling: A 1-2 gram aliquotofthe liver samples that were flash frozen in liquid nitrogen were: shipped in dry ice 10 the analytical laboratories listed according to the livers sample identification chart below to: Kendall B.Wallace, Ph.D. DAB.T. Professor, Deptof Biochemistry and Molecular Biology School of Medicine UniversityofMinnesota 10 University Drive Duluth, MN 55812-2496 Liver samples were analyzed by previously published methods for P450 content, Lauroyl CoA oxidase activity (Poosch and Yamazaki 1986) and protein content (Bradford 1976) in the laboratory of Ken Wallace Dept ofBiochemistry and Molecular Biology at the University of MN. Another 1-2 gram aliquotofthe liver sample was sent to: Dr. Michael Wempe
Laboratory of M. W. Anders DepartmentofPharmacology and Physiology 601 Elmwood Ave, box 711 Rochester, New York 14642 Dr. Lin Xu performed the analysisofthese samples and provided abrief summaryof the analysisofliver samples from rats given a rangeoffluorocarbons. The parent and metabolitesofthefluorocarbonswere determined in liver samples by LC-MS/MS using previously published methods (Hansen ef al. 2001).
LiverSample Identification Chartfor T-7132.1
[Sample#[Animal # [Species[Sex [DoseGroup
|
T_TTT
[3 [iRo074z | Rat |WJoomol
|
[210743[Rat [M Joontol
|
[3 [TRO07&4|Rat |WJoorkal
|
[4 [iR00745| Rat |W_|40 mgkgday FOSA |
[5 ]iR00746 | Rat |M40mokgiday FOSA |
1s
TorTsL FR
[& TiR00747|RatM]J40mgikgiday FOSA
1s
TrIi0s7L1 FR
Results and Discussion
cAovnetrraolggerbooudpyowneidgahytssofofutrhaendFOfiSvAe t(rTeaabtlmeen1)t. grLoivueprwweerieghstisgnwifeirceanntolty sliogwneifritchaanntltyhe
different between the treated and control groups, but the liver weight asa body weight was significantly increased in the FOSA treatment group
percentage of
TlihveerrsesaumlptlseosfiPn4di5c0atceodnttehnatt (FFOiSguArei1n)duacneddAtchyelexCporeAssoixoindoafsethaecstieviptryot(eFiingsuraend2)FfOorStAheis therefore a hepatic peroxisome proliferator in rats.
`(TThaeblceon2c)e.ntTrhaetidoantsoafsthhoew ptahratenPtFcOoSmpwoausntdheanmdajmoertambeotlaibtoelsitien lfiovuenrds wienrtehemleiavserusreodf rats
given FOSA and Approximately 0.3
FOSA N-glucuronide was identifiedas a minor percentofthe cumulative dose was present in
metabolite. the liver as
either
the
p3)a.reTnhtecloomwpopuenrdce,ntFaOgSeoA,foFrOaSsAthienmtehteabliovleirtaenPdFtOhSe,aoppnaerdenaty laofwercothnevelrasstiodnosoef(FTOabSlAe to
ePtFaOl.S2h0a0s3)alwshoibcehenobnsoetrevdedintihna-tvFitOroSAmiwcraosscoomnavleratneddltiovePr FslOiSce imne-vtiatbroolbiysmlisvteurdsileisce(sXuat
a low rate, but not by microsomes or cytosol .
stiginsifnioctaentwocrotnhcyentthraattithoenscoonftrFoOlSaAn.imaFlusrt(h1eRr0m0or7e4,2,no1RP0F0O7S43o,raFnOdSIAR0N0-7g4l4u)cucroonntiadiened owfelrievefrosufndroimn Ftihescchoenrtr3o4l4sraamtpslmeasinwtiatihnahediginhthbeacUknigvreorusnidtoyfofFORoScAh.esAterpaVriavllaerliaunmaldyisdis not show detectable concentrationsof FOSA. These results suggest that the control liver osfamFpOlSesA,foarsthnios msettuadybowleirsemctoonPtaFmOiSnaotredFOatSsAomN-egplouicnutrotniimdeeexh-avdiovcocbuyrrterdacienqtuhaentciotnitersol samples
7
Tr0i7sLLFR
Signatures: Report prepared by,
Andrew M. Seacat, PhD, DABT
Date
Study Director
Reviewed by,
Daniel C. Hakes
Date
Sponsor representative
us
Tb0r7i11 FR References:
`Bqruaadnfiiotride,soMf.prMo.te(i1n97w6i)l.izAinrgaptihde aprnidncsiepnlseiotifvpermoetetihno-ddyfeorbtihnediqnuga.ntAintaaltiBonioofcmhiecmr7o2g,r2a4m854. sHpaencsifeinc,,Kq.uaJn,tiCtalteimveenc,haL.racA.t, erEilzlaetfisoonno,foMr.gEa.n,iacndflJuoohrnoscohne,miHc.alOs.i(n2b0i0o1l)o.giCcoamlpmoautrnidc-es. Environmental Science and Technology 38, 766-110. Lazarow, P. B. (1981). Assayofperoxisomal beta-oxidationoffatty acids. Methods Enzymol 72, 315.9. `PoCoosAcohx,idM.aseS.,acatnivditYyaumsaiznagkai,laR.urKo.yl(-1C9o8A6-).baDseetderfmluionraotmieotnroifcpaesrsoayx.isBoimoaclhifmatBtyioapcyhly-s Acta 884, 585-93. Wallace, K. B., Lucbker, D. J. Butenhoff, J. L., and Seacat, A. M. (2001). pPeerrfolxuiosroomoectparnoelisfuelrfaotnorasteinanradts2,-b(uNt-entohtylgpueirnfelauopirgoso.ctTaonxeiscuollfoognisatmi6d0o,)-3c4t8hyA!bsatlrcaochtolIDa:re 1657. XN-uE,tLh.y,lS-eNa-c(a2t-,hAy.drMo.x,yeBtuhtyelnpheorfffl,uJo.rLo.o,catnadneAsnudlefrosn,amMi.deW.(N(-2E00(3F)O.SBEi)otbryanrastfolrivmeartion of microsomes, cytosol and slices. In Toxicological Sciences, Suppl. Vol. 72, p. 314.
149
Tor0is71E1R
Tables
`Table 1 BiologicalParameters
_
[D(TCo1m5p,arAamteinvedmMoelnetc#ul2arBiologyofPerfucroocianestfonamide (FOISA, 1-7132) in R[ ats [ folow] ing
fourconsecutidvaeysofdosing,
[DT15 Body Weight (BW),LiverWeight (LW),Thyroid Weight (TW) | --T
[Date
2rtoi01
[Y272t0]
DoseGroup [dBaWyt ([dBaWy2 l[dBaWy3 |[dBaWy4 d[BaWy [LW (g) [WLWeIB ([0T)W
Ro eo
| a0 0 wm rorsx [oe
oaml
| 269 278] ms mm ow s37%r) s
| a 3[1RO07A con
5 280)
7070 KX
a|i
-
?
[ose]
wr
266] 271 275] 281]
1075
=
071
C0] 11]13 15 12 0.06]0.14%]0.14]
I TRO074[40mgkgiday TI 5 [rosa
[ [a|an] om 4ri[or|s
ROTH 40 iy|202 6 IFosA
= Tos avis
7R074" 4[0Fomsghkgiday
25
25
T0584] 4 2%[1084
9
|"283 285 252 242
10.76)
CE
[8100 qo] 41] 16] 0.09 0.34% 0.09]
PualveTTest |
| 021 043 0.06] 002 001 044] 001 0.32
fi"To-mTceostnt(ounlpaired, on tiled, equal variance). A P-value of 0.05wasconsidered significantly diffrent
150
TorAs7LIR
`Table 2 Liver Fluorocarbon Concentration
Hepatic ConcetaionofFuorocaboannsd Flurocarbon Metabolites iLiovfReatsrGivsen FOSA (40
pi | Avimal
iversn pe pom | roopsm)a|| roGmsa| glronide
[1 [wove]woot|ota0| oof isu od om
[5 [woos]wooo| wr| od oma od ow [CoTwovss|wos | oawr| 163d 1957 aml oad [5[woos]w rosa |omos| 21a was aml 0x9
eimone| bow Toso| wd wd snl oud
mg/kg/day)
Note: nm. =notmeasured.
151
i
SipT it--------T-- TI-- O `Table 3 Percent Fluorocarbon Dose in Liver [Percent Dose in oe Liver TS [35%1 PrT ee _ S[50a05T 0 aoT hn oST ke [01]
(mg) |doseTM ((ppm) |(mg) loaner (ppm) |(mg) gd
f [ Bar ir omo [ o --9 do m m E=E; ] [p Teee dpde or1 T 4[E T== 1]
lavg |] | TT Twos | | so1 TT Tea | [let1 t |8[1R00746|FOSA|660.2]660.2|214.3] 2.32] 0.38 1741] 19] 029] |___6[1R00747 [FOSA| 614.3] 614.3 2028] 2.16] 0.35]1639] 17] 0.8 avg|T [49343 2T 08] 032 177.90 1.91 _030 soTT| 1 T2681 020] 00s 1624] 0.18] 0.2
Tb0r7i11 FR
Figures Figure 1 Cytochrome P450 content in Liver
HE Total CYTP450 Content in RaFtOLSiAver Following Treatment With AEvrargoorstrreespresen ne
f on)
foe
5t ooo
oun Control SE
rosa Yt
153
TorAsLI ER
Figure 2: Lauroyl CoA oxidase activity in liver
LCoA-Oxidase Activity in Rat Liver Homogenate Following TreatWimtheFOnStA
pa Fro Ec mme
*
f=
in$Emw
Fm Sew
II
=aw!
[EE
Control
Fos
154
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