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AR226-2985 ^a^BS^. CCR Cytotest Cell Research GmbH & Co. KG CCR PROJECT 326417 SALMONELLA TYPHIMURIUM REVERSE MUTATION ASSAY WITH Study Completion Date: February 17,1993 REPORT ^^.------nTSCACB' CCR In den Leppsteinswiesen 19 D-6101 Ropdorf F.R.G. Telephone: 0 61 54 - 80 7-0 Telefax O 61 54 - 8 33 99 COPY OF GLP CERTIFICATE HESSISCHES MINISTERIUM FOR UMWELT, ENERGIE UNO BUNDESANGELEGENHE1TEN GLP-Bescheinigung Bescheinigung Hiermit wird besiStigt. daQ dig Pru(ungsainrichtun9(en) Cytotest Call ReseaY-ch GmbH & Co KG In den Leppsteinswiesen 19 i- 6101 RoBdorf (On. Ajiidwn) dar.RCCHolding Verwaltung 1-inbH____ (Rron) am 3-08-' P4-08.-?..05--08-""!:.06:08-92 {Dalinn) von der fur die Qberwachung zustandigen Behfirda ubef dia Snhaltung der GfundsAtzB dar Gutan Laborpraxn . inspizsen wordan ist (sind). Es wird hiennit bestiligt. daS tolgenda Prufungen in dieser Priifeinrichtung nach den GrundsitZBn der Gutan Laborpraxis durchgefOhn warden. Toxikologische Eigenschaftga-^ . ^SiST'E^ Certincsto It is haraby cerUfied that the test laciitypes) Cytotest Cell Research enbH & Co KG In den Leppstiinswiessn ~\'t. 610'1 Rofldorf . (toalicn. tOinoa) RCC HoldingVerwaltung GinbH (eanipan^ nxnMi) 03.08., 04.08., 05.08. and 06.08.92 on--------------------------------------------- (Ott.) was (ware) inspected by lha csnipatant authority regar ding coniplianca with lha Principles <rf Good I-ahoralcry Practics. It is hereby cai-tilied (hat studies in this test (adBty ara conducted in complianca with (he Principles of Good Laboratory Pracliea. Toxicological.properties Im Auffrag . \y^. jCifJi^r (Or..Hecicer) Wiesbaden, den ^S. st5r page 2 of 35 .olconalnTSCAe" Company S.n.*."--'""" CONTENTS COPY OF GLP CERTIFICATE ^PREFACE General Project Staff Schedule Project Staff Signatures Quality Assurance Guidelines Archiving STATEMENT OF COMPLIANCE QUALITY ASSURANCE UNIT Statement SUMMARY Conclusion OBJECTIVE Aims of the Study Reasons for the Study MATERIALS AND METHODS The Test Article The Controls The Test System Mammalian Microsomal Fraction S9 Mix Pre-Experiment for Toxicity Dose Selection Experimental Performance Data Recording Evaluation of Results BIOMETRY RESULTS CONCLUSIONS II Pre-Experiment for Toxicity Tables of Results Experiment I Tables of Results Experiment Summary of Results REFERENCES DISTRIBUTION OF THE REPORT st5r page 3 of 35 PREFACE GENERAL Sponsor: Monitoring; Testing Facility: CCR Project No.: Test Article: Title; I S E GA Forschungs- u. UntersuchungsGesellschaft mbH Zeppelinstr. 3-5 D-8750 Aschaffenburg Heike KrMmer CCR CYTOTEST CELL RESEARCH GMBH & CO. KG D-6101 Rofldorf, F.R.G. 326417 Salmonella typhimurium Reverse MutatxomAs s ay with! PROJECT STAFF Management: Study Directors Quality Assurance Unit: Dr. H.- E. Knoell Dr. Albrecht Poth Dr. Ch. Helmrich SCHEDULB Date of Protocol; '' November 10, 1992 Date of 1st Amendment to Protocol: January 18, 1993 Start of Pre-Experiment: November 27, 1992 End of Pre-Experiment! December 04, 1992 Start of Experiment I: End of Experiment I; Start of Experiment II; End of Experiment .II: Date of Draft: December 15, 1992 December 18, 1992 January 05, January 15, 1993 1993 January 18, 1993 Date of Report: February 17, 1993 st5r page 4 of 35 ,tc^nTSCAC^ Cowpa"^ SanW^d-Pa0^ PROJECT STAFF SIGM&TDRES Study Director: Dr. Albrecht Poth Management: Date: February 17, 1993 Dr. H.- E. Knoell Date: February 17, 1993 OnaLITY ASSURANCE l/ The study was performed in compliance with: Chemikaliengesetz ("Chemicals Act") of the Federal Republic of Germany, Aniage 1 ("Annex I"), dated March 14, 1990 (BGBL. I S. 521). "OECD Principles of Good Laboratory Practice", Paris, 1981 GUIDELIMES This study followed the procedures indicated by the following internationally accepted guidelines and recommendations: First Addendum to OECD Guidelines for Testing of Chemicals, Section 4, No. 471, "Salmonella typhimurium. Reverse Mutation Assay", adopted May 26, 1983 and EEC Directive 79/831, Annex V, B 14. / ARCHIVTHG C C R, D-6101 RoBdorf/F.R.G. will archive the following data for 30 years; Raw data, protocol, and copy of report. The following sample will be archived for at least 12 years: Sample of test article. No raw data or material relating to the study will be discarded without the sponsor's prior consent. st5r page 5 of 35 Company Sanitized. Doss not contain TSCA CBI STATEMENT OF COMPLIANCE Project Number; 326417 Test Article ; Study Director; Title : Dr. Albrecht Poth Salmonella typhimurium Reverse Mutation Assay with To the best-of my knowledge and belief, this study performed in the testing facility of CCR was conducted in compliance with Good Laboratory Practice Regulations: Chemikaliengesetz ("Chemicals Act") of the Federal Republic of Germany, Aniage 1 ("Annex I"), dated March 14, 1990 "OECD Principles of Good Laboratory Practice, Paris, 1981 There were no circumstances that may have affected the quality or integrity of the study. Study Director CCR Dr. Albrecht Poth cy...!'^ Date: '~&^WLM ^9 ./?<?3 6 ( st5r page 6 of 35 Compaq Sanded. Does not contain TSCACBl QUALITY ASSURANCE UNIT C C R, Cytotest Cell Research GmbH & Co. KG, .: In den Leppsteinswiesen 19, D-6101 RoBdorf, F.R.G. S'SS3"i^rKST Project Numbers Test Article : Study Director: Title - : 326417 Dr. Albrecht Poth Salmonella typhimurium Reverse Mutation^s say with This report was audited by the Quality Assurance Unit and the study and/or testing facility were inspected on the following dates. Dates of QAU Inspections/ Audits Dates of Reports to the Study Director and to Management November 11, 1992 December 15, 1992 / January 21, 1993 November 11, December 15, January 21, 1992 1992 1993 Head of Quality Assurance Unit Dr. Ch. Helmrich st5r Date; ^^y^-/ffJ page 7 of 35 Company Ssanaintizwe"d-. Does not contain TSCACBI SUMMARY ,s study was performed to |to induce gene mutations iancvceosrtdiignagt etot hteh ep optleant et i ailncoof r|p_o_ra_ti_o_n" ,est (experiment I) and the pre-incubation test (experiment II) using the Salmonella typhimurium strains TA 1535, TA 1537, TA 98, TA 100, and TA 102. The assay was performed in two independent experiments both with and without liver microsomal activation. Each concentration, including the controls, was tested in triplicate. The test arti cle was tested at the following concentrations: 33.3; 100.0; 333.3; 1000.0; 2500.0 and 5000.0 ug/plate No relevant" toxic effects occurred in the test groups with and without metabolic activation in experiment I and II in all strains used. The plates incubated with the test article showed normal back ground growth up to 5000.0 ng/p'late with and without S3 mix in all strains used. Mo substantial increases in revertant colony numbers of any of the five tester strains were observed following treatment with jHB----H|H.at any dose level, either in the presence or absence of metabolic activation (S9 mix) . There was also no tendency of higher mutation rates with increasing concentrations in the range below the generally acknowledged border of significance. / Appropriate reference mutagens were used as positive controls and showed a distinct increase of induced revertant colonies. CONCLUSION In conclusion, it can be stated that during the described mutage- nicity test and under the experimental conditions reported, the test article did not induce point mutations by base pair changes or frameshifts in the genome of the strains used. Therefore, |----IB^^H^ is considered to be non-mutagenic in this Salmonella typhimurTum reverse mutation assay. st5r page 8 of 35 C.m^yS.nl.."-."08'"''"0"'-"'50"6" OBJECTIVE AIMS OF THE STUDY II The experiments were performed to assess the potential of the test article to induce gene mutations by means of two independent Salmonella typhimurium reverse mutation assays. Experiment I was performed as a plate incorporation assay. As a negative result was obtained in this experiment, experiment was "performed as a pre-incubation assay. REASONS FOR THE STUDY The most widely used assays for detecting gene mutations are those using bacteria. They are relatively simple and rapid to perform, and give reliable data on the ability of an agent to interact with DNA and produce mutations. However, the Hacteria most commonly used in these assays do not possess the enzyme systems which, in mammals, are known to con vert promutagens into active DMA damaging metabolites. In order to overcome this major drawback an exogenous metabolic system is added in form of mammalian microsome enzyme activation mixture. In spite of great differences between bacterial and eucaryofcic cells with respect to structure and function there is an associa tion between mutagenicity in bacteria and carcinogenicity in mammals described in literature (7,8). Reverse mutation assays determine the frequency at which an agent abolishes or suppresses the effect of the forward mutation. The genetic target presented to an agent is therefore small, specific and selective. Several bacterial strains, or a single strain with multiple markers are necessary to overcome the effects of mutagen specificity. The reversions of bacteria from growth-dependence on a particular amino acid to growth in the absence of that amino acid (reversion from auxothrophy to prototrophy) is the most widely used marker. '' The Salmonella typhimurium histidine (his) reversion system measures his" --> his"*" reversions. The S. typhimurium strains are constructed to differentiate between base pair (TA 1535, TA 100, TA 102) and frameshift (TA 1537, TA 98) mutations. According to the direct plate incorporation and the pre- incubation method the bacteria were exposed to the test article with and without metabolic activation and plated on selective medium. After a suitable period of 'incubation, revertant colonies were counted. To establish a dose response effect five dose levels with ade quately spaced intervals were tested. The maximum dose level was 5000.0 ag/plate, unless limited by toxicity or solubility of the test article. To validate the test, reference mutagens were tested in parallel to the test article. st5r page 9 of 35 Company Sani-,t-esdrf. nDoes not contain TSCACB! MATERIALS AND METHODS THE TEST ARTICLE The test article and the information concerning the. test article were provided by the sponsor. Name; Batch No. ; Aggregate State at RT: Colour: Analysis: Purity: Stability; liquid Storage; 4C Expiration Date; not indicated by the sponsor On the day of the experiment, the test article ZONYL RP 18 was dissolved in Ethanol. The solvent was chosen because of its solubility properties and its relative nontoxicity for the bacte ria. st5r page 10 of 35 notconialnTSCACBl Co^paw Sanded. Does rest Kepor-c CCK Jb'rojec-c j^oij./ THE COMTROLS The Negative Con-trols Concurrent untreated and solvent controls were performed. The Positive Control Substances Without: metabolic activation Strains: Name: Supplier: Catalogue No.; Purity: Dissolved ins Concentration;. TA 1535, TA 100 sodium azide, NaNg SERVA, D-6900 Heidelberg, 30175 at least 99 % aqua dest. 10 ng/plate F.R.G. Strains: Name: Supplier: Catalogue No.: Purity: Dissolved in: Concentration: TA 1537, TA 98 4-nitro-o-phenylene-diamine, 4-NOPD SIGMA, D-8024 Deisenhofen, F.R.G. N 9504 > 99.9 % DMSO 50 ug/plate Strain: Name: Supplier: Catalogue No.: Purity: Dissolved in: Concentration; TA 102 methyl methane sulfonate, MMS MERCK-SCHUCHARDT, D-8011 Hohenbrunn, 820775 > 99.0 % aqua dest. 1.0, nl/plate F.R.G. With metabolic activation Strains: Name: Supplier: Catalogue No.: Purity: Dissolved in: Concentration: TA 1535, TA 1537, TA 98, TA 100, TA 102 2-aminoanthracene, 2-AA SIGMA, D-8024 Deisenhofen, F.R.G. A 1381 97.5 % .DMSO 2.5 ng/plate The stability of the positive control substances in solution was unknown but a mutagenic response in the expected range is sufficient evidence of biological stability. st5r page 11 of 35 SanIB"'1- -- Company Test Report- CCR Project 326417 THE TEST SYSTEM Characterisation of the Salmonella typhi-nmrium Strains The strains are derived from S. typhimurium strain LT2 and 'due to a mutation in the histidine locus are histidine depen dent. Additionally due to the "deep rough" (rfa-minus) mutation they possess a faulty lipopolysaccharide envelope which en ables substances to penetrate the cell wall more easily. A further mutation causes a reduction in the activity of an exci sion repair system. The latter alteration includes mutational processes in the nitrate reductase and biotin genes produced in a UV-sensitive area of the gene named "uvrB-minus". .In the strains TA 98, TA 100 and TA 102 the R-factor plasmid pKM 101 carries the_ampicillin resistance marker. The strain TA 102 does not contain the uvrB'-mutation. Additionally TA 102 contains the multicopy plasmid pAQI, which carries the hisG428 mutation and a tetracyclin resistance gene. TA 102 contains the ochre mutation in hisG gene. In summary, the mutations of the study can be described as follows; TA strains used in this Salmonella typhimurium TA 1537; his C 3076; rfa"; uvrB"; ; frame shift mutations TA 98: his D 3052; rfa"; uvrB"; R-factor: " " TA 15 35": his G 46; rfa"; uvrB'"; : base-pair substitutions TA 100: his G 46; ra~; uvrB"; R-factor: TA 102: his G 428; rfa"; uvrB'*'? R-factor; " " Regular checking of the properties of the strains with regard to membrane permeability, ampicillin- and tetracyclin-resistance as well as normal spontaneous mutation rates is performed in the it laboratory of C C R according to Aroes et al. (1). In this way was ensured that the experimental conditions set down by Ames were fulfilled. The bacterial strains were obtained from Dr. Heinz Trager, Knoll AG, D-6700 Ludwigshafen, F.R.G. st5r page 12 of 35 TSCACB1 Compare San..,te,,ed. .cDooeess not contain Storage The strain cultures were stored as stock cultures in ampoules with nutrient broth + 5 % DMSO in liquid nitrogen. Precultures From the thawed ampoules of the strains 0.5 ml bacterial suspen sion was transferred to 250 ml Erienmeyer flasks containing 20 ml nutrient medium. This nutrient medium contains per litre: 8 g Merck Nutrient Broth 5 g Mad The bacterial "culture was incubated in a shaking water bath for 10 hours at 37 C. Selective Aq-ar 2.0 % Vogel-Bonner-Glucose-Minimal-Agar was used as selective agar. Each petri dish was filled with 20 ml of this nutrient medium. Sterilisations were performed at 121 C in an autoclave. Overlay Acrar / The overlay agar contains per 6.0 g Merck Agar Agar 6.0 g NaCI 10.5 mg L-histidine x HC1 x 12.2 mg biotin litres H^O Sterilisations were performed at 121 C in an autoclave. st5r page 13 of 35 cS,apn,ifteizeed". D-oes not contain TSCACBl Company i'est Report. CCK Project ^2b41/ MAMMaLIAH MICROSOMAL FRACTION S9 MIX S9 fPreparation by C C R) The S9 liver microsomal fraction was obtained from the liver of 8-12 weeks old male Wistar rats, strain WU (SAVO-Ivanovas, med. Versuchstierzuchten GmbH, D-7964 Kisslegg, F.R.G.; weight approx. 150 - 200 g) which received a single i.p. injection of 500 mg/kg b.w. Aroclor- 1254 (Antechnika, D-7500 Karlsruhe, F.R.G.) in olive oil 5 days previously. After cervical dislocation the livers of the animals were re moved, washed in 150 mM KC1 and homogenised. The homogenate, diluted 1+3 in KC1 was centrifuged cold at 9,000 g for 10 minutes. A stock of the supernatant containing the microsomes was frozen in ampoules of 2, 3 or 5 ml and stored at -70 C. Small numbers of the ampoules are kept at -20 C for only several weeks before use. The standardisation of the protein content was made using the analysis kit of Bio-Rad Laboratories, D-8000 Miinchen: Bio-Rad protein assay. Catalogue 500 000 6 (6). The protein concentration in the S9 preparation was 31.6 mg/ml (lot 060792). S9 Mix Before the experiment an appropriate quantity of S9 supernatant was thawed and mixed with S9 cof actor solution. The amount of S9 supernatant was 15% v/v. The composition of the cof actor solution was concentrated to yield the following concentrations in the S9 mix: 8 mM MgCl2 33 HIM KC1 5 mM glucose-6-phosphate 5 mM NADP in 100 mM sodium-ortho-phosphate-buffer, pH 7.4. During the experiment the S9 mix was stored in an ice bath. The S9 mix preparation was performed according'to Ames et al.(2). st5r page 14 of 35 TSCACBI S^ed..0n"oee.. "not contain ConiP^ rtdai- K.wyujn. i^i-xt. .c.i.ujfcsi-i. j^o-*x/ PRE-EXPERIMEHT FOR TOXICITY To evaluate the toxicity of the test article a prestudy was performed with strains TA 98 and TA 100. 8 concentrations were tested for toxicity and mutation induction with each 3 plates. The experimental conditions in this pre-experiment were the same as described below for the experiment I (plate incorporation test). Toxicity of the test article may be evidenced by a reduction in the number of spontaneous revertants, a clearing of the bacterial background lawn, or by degree of survival of treated cultures. DOSE SELECTION According to the results of the pre-experiment the concentrations applied in the main experiments were chosen. The maximum concentration was 5000.0 ug/plate. The concentration range included two logarithmic decades. In this study six ade quately spaced concentrations were tested. Two independent exper iments were performed. As the results of the pre-experiment are in accordance with the criteria described above, these data are reported as a part of the main experiment I, st5r page 15 of 35 Company rest Kepori: CCK -freject j^ti4J./ EXPERIMEHTM. PERFORMANCE For each strain and dose level, including the controls, a minimum of three plates were used. : The following materials were mixed in a test tube and poured onto the selective agar plates; 100 nl 500 nl 100 ^1 2000 nl Test solution at each dose level, solvent control, negative control, or reference mutagen solution (positive control), S9 mix (for test with metabolic activation) or S9 mix substitution-buffer (for test without metabolic activation), Bacteria suspension (cf. test system, pre-culture of the strains), Overlay agar In the pre-inc-ubation assay 100 nl test solution, 500 p.1 S9 mix / S9 mix substitution buffer and 100 ul bacteria suspension were mixed in a test tube and incubated at 37 C for '60 minutes. After pre-incubation 2.0 ml overlay agar was added to each tube. The mixture was poured on minimal agar plates. After solidifi cation the plates were incubated upside down for at least 48 hours at 37 (2 in the dark. DATA RECORDING The colonies were counted using the AUTOCOUNT (Artek Systems Corporation, BIOSYS GMbH, D-6367 Karben; F.R.G.). The counter was connected to an IBM AT compatible PC with printer which printed out the individual values and the means from the plates for each concentration together with standard deviations and enhancement factors as compared to the spontaneous reversion rates (see tables of results). If precipitation of the test article preclud ed automatic counting the revertant colonies were counted by hand. st5r Page 16 of 35 Sanitized. Dc."s not co-rtain TSCA CBi Company Test Report: OCR Project j2b41/ EVALUATION OF RESULTS The generally accepted conditions for the evaluation of the results are: corresponding background growth on both negative control and - test plates - normal range of spontaneous reversion rates. Range of spontaneous reversion frequencies (5/9)* 1535 1537 98 100 102 (+) 3-37 4-31 15-60 75 - 200 * These values refer co the negative control without metabolic activation (+) The range of strain TA 102 Has dacaroined from our hl.3Corl.cal control iatas 120 - 300 Due to international guidelines a statistical evaluation of the results is recommended. However, no evaluated statistical proce dure can be recommended for analysis of data from the bacterial assays at this time (5). A test article is considered as positive if either a dose related and reproducible increase in the number of revertants or a sig nificant and reproducible increase for at least one test concen tration is induced. A test article producing neither a dose related and reproducible increase in the number of revertants nor a significant and repro ducible positive response at any one of the test points is con sidered non-mutagenic in this system. A significant response is described as follows: A test article is considered as mutagenic if in strain TA 100 and TA 102 the number of reversions is at least twice as high and in it strains TA 1535, TA 1537, and TA 98 is at least three times higher as compared tp the spontaneous reversion rate (4). Also, a dose-dependent and reproducible increase in the number of revertants is regarded as an indication of possibly existing mutagenic potential of the test article regardless whether the highest dose induced the above described enhancement factors or not. st5r page 17 of 35 vSa.il^.Doeanotco^nTSCACBl Company Sann.^" Test; Hepqrr. CCK. Project; .i2b41/ BIOMETRY :No appropriate statistical method is available (5) st5r page 18 of 35 Company Sanded. Does not contain TSCACB1 rest. Kepori; CI-A jrrujyui. .a^otj-/ RESULTS PRE-EXPERIMBNT FOR TOXICITY .To evaluate the toxicity of the test article a pre-study was performed with strains TA 98 and TA 100. The results are given in the following table; test groups concentration per plate 4g Negative control Solvent control 4-NOPD Sodium azide 2 -aminoanthracene 50.0 10.0 2.5 3.3 10.0 33.3 100.0 333.3 1000.0 2500.0 5000.0 reve rtants TA 98 - + 37 42 30 40 2542 / / / / 575 22 33 34 23 25 35 34 43 33 39 25 24 28 32 30 25 per plate TA 100 +* 76 104 82 106 / / 925 / / 1119 73 108 72 98 76 84 72 85 64 88 50 84 50 76 57 64 * - - tri-Efaouc S9 mx; + - / not: performed tri-th S9 mix The plates with the test article showed normal background growth up to 5000.0 ng/plate in strain TA 98 and TA 100, respectively. According to the dose selection criteria, the test article was tested at the following concentrations: 33.3; 100.0; 333.3; 1000.0; 2500.0 and 5000.0 ng/plate st5r page 19 of 35 TSCACB1 ^mpanySanifeed.Do3snot contain Test Report CCR Project 326417 TABLES OF RESULTS EXPERIMENT I PLATE INCORPORATION TEST st5r page 20 of 35 co.p.nys.^.o...----.""^06' Test article: 39 mix from : rat liver (Batch R 060792) Test strain : TA 1535 Dose ug/plate Plati3 1 2 3 without S9 mix Negative Solvent 33.3 100.0 333.3 1000.0 2500.0 5000.0 control control - Positive control Sodium azide (lOng/plate) 14 15 13 20 15 15 19 22 23 18 16 14 11 13 17 17 14 13 17 7 15 12 15 19 1142 1178 1135 with S9 nn'y Negative Solvent 33.3 100.0 333.3 1000.0 2500.0 5000.0 control control Positive control 2-Aminoanthracene (2.5Hg/plate) enhancement factor 14 15 19 21 22 27 26 21 21 27 26 22 22 26 20 19 21 19 21 30 28 24 21 21 135 153 190 E revertants/concentr. test article revertants/solvent control Revertants/'pla.te ' mean s.d. fa.ctor+ 14 1.0 17 2.9 1 .0 21 2.1 1 .3 16 2.0 1 .0 14 3.1 0 .8 15 2.1 0 .9 13 5.3 0 .8 15 3.5 0 .9 1152 23.1 69 .1 16 2.6 23 3.2 1.0 23 2.9 1.0 25 2.6 1. 1 23 3.1 1. 0 20 1.2 0. 8 26 4.7 1. 1 22 1.7 0. 9 159 28.0 6. 8 str5 21 of 35 Company Sanded. Does not contain TSCA CBl Test article: S9 mix from : rat liver (Batch R 060792) Test strain : TA 1537 Dose (ig/plate Plate 1 2 3 without S9 wly Negative Solvent 33.3 100.0 333.3 1000.0 2500.0 5000.0 control control - 8 10 5 4 8 7 7 8 7 6 8 11 4 6 6 5 4 6 8 7 5 9 4 5 Positive control 4-Mitro-o- 307 311 350 phenylene-diamine (50)ig/plate) with S9 imx Negative Solvent 33.3 100.0 333.3 1000.0 2500.0 5000.0 control control 12 15 11 14 11 12 13 19 8 10 13 13 8 12 12 15 11 11 6 14 6 8 11 10 Positive control 2-Aminoanthracene 115 110 93 (2.5ng/plate) + enhancement factor revertants/concentr. test article revertants/sol vent control Revi5-rtants/'plate mean s.d. factor+ 8 2.5 6 2.1 1.0 7 0.6 1.2 8 2.5 1.3 5 1.2 0.8 5 1.0 0.8 7 1.5 1.1 6 2.6 0.9 323 23.8 50.9 13 2.1 12 1.5 1.0 13 5.5 1.1 12 1.7 1.0 11 2.3 0.9 12 2.3 1.0 9 4.6 0.7 10 1.5 0.8 106 11.5 8.6 sir 5 22 of 35 Company Sanitized. Does not contain TSCA CB8 Test article:||U a S3 mix from : rat liver ( Batch R 060792) Test strain : TA c?8 Dose ug/plate Plate 1 2 3 without S9 nn.TC Negative Solvent 33.3 100.0 333.3 1000.0 2500.0 5000.0 control control - Positive control 4-nitro-ophenylene-diamine (50 (il/plate) 42 35 35 27 33 31 28 24 24 31 35 36 24 37 37 32 26 17 19 26 39 28 28 33 2464 2501 2660 with S9 mix Negative Solvent 33.3 100.0 333.3 1000.0 2500.0 5000.0 control control Positive control 2-Aminoanthracene (2.5ng/plate) 38 / 47 29 43 42 25 30 29 J & U 44 34 30 40 41 26 34 23 454 ~f ij '.& 43 40 45 45 33 21 31 24 7r 5i 1j. revertants/concentr. test article + enhancement factor " ---------------------------------------- t revertants/solvent control Revertantsi/plate mean s.d. factor+ 37 4.0 30 3.1 1.0 . 25 2,3 0.8 34 2.6 1.1 33 7.5 1.1 25 7.5 0.8 28 10.1 0.9 30 2.9 1.0 2542 104.1 .83.8 42 3.2 40 6.5 1.0 35 9.0 0.9 43 2.5 1.1 39 4.9 1.0 24 2.6 0.6 32 2.1 0.8 25 3.2 0.6 w57**5^ 156 >K j w . 0u 1.& 4A. - -!^ str5 23 of 35 Company Sanitized. Does nol contain TSCACBfe Test article: S9 mix from ; rat liver (Batch R 060792) Test strain : TA 100 Dose pg/plate Plati3 1 2 3 without S9 im'x Negative Solvent 33.3 locr.o- 333.3 1000.0 2500.0 5000.0 control control - Positive control Sodium azide (lOng/plate) 78 82 68 80 76 89 63 86 80 63 79 75 55 66 70 50 50 51 38 53 58 45 63 64 946 942 886 with S9 mix Negative Solvent 33.3 100.0 333.3 1000.0 2500.0 5000.0 control control 103 111 99 8,9 114 116 90 82 81 94 89 73 96 71 98 93 102 58 77 80 71 56 67 68 Positive control 2-Aminoanthracene 1356 1083 919 (2.5ng/plate) enhancement factor Z revertants/concentr. test article revertants/solvent control Re-yertcints/plate meaja si.d. factor+ 76 7 .2 82 6 .7 1.0 76 11 .9 0.9 72 8 .3 0.9 64 7.8 0.8 50 0 .6 0.6 50 10 .4 0.6 57 10 .7 0.7 925 33 .5 11.3 104 6.1 106 15.0 1.0 84 4. 9 0.8 85 11. 0 0.8 88 15. 0 0.8 84 23. 2 0.8 76 4. 6 0.7 64 6. 7 0.6 1119 220. 8 10.5 . str5 24 of 35 Company Sanitized. Does not contain TSCA CBI Test article: S9 mix from : rat liver (Batch R 060792) Test strain : TA 102 Dose ^.g/plate Plate 1 2 3 without S9 im^c negative Solvent 33.3 100.0 333.3 1000.0 2500.0 5000.0 control control - Positive control methyl methan sulfonat (l.Onl/plate) 200 207 208 206 225 211 181 178 154 179 244 199 109 179 188 171 151 190 237 228 212 199 201 209 827 1107 1010 with S9 mix Negative control Solvent control 280 296 243 253 318 357 33.3 252 312 343 100.0 318 262 324 333.3 364 291 292 1000.0 204 289 251 2500.0 284 272 289 5000.0 . 214 284 295 Positive control 2-Aniinoanthracene 752 861 864 (2.5|ig/plate) enhancement factor X revertants/concentr. test article t revertants/sol vent control Revisrtants/'plate mean 's.d. factor+ 205 4.4 214 9.8 1.0 171 14.8 0.8 207 33.3 1.0 159 43.2 0.7 171 19.5 0.8 226 12.7 1.1 203 5.3 0.9 981 142.2 4.6 273 27.2 309 52.5 1.0 302 46.3 1.0 301 34.2 1.0 316 41.9 . 1.0 248 42.6 0.8 282 8.7 0.9 264 43.9 0.9 826 63.8 2.7 str5 25 of 35 Compaq S^ti^Does^c^nTSCACBI TABLES OF RESULTS EXPERIMENT II PRE-INCUBATION TEST page 26 of 35 TSCACB1 Company S1ze-.D... ".>.-'" Test article: S9 mix from : rat liver (Batch R 060792) Test strain : TA 1535 Dose jig/plate Plate 1 2 3 without S9 mix Negative Solvent 33.3 100.0 333.3 1000.0 2500.0 5000.0 control control " - Positive control Sodium azide (lOng/plate) 19 20 22 21 18 21 23 18 17 15 13 24 17 14 23 10 12 12 13 9 15 16 16 17 1044 1096 1091 with S9 mix Negative Solvent 33.3 100.0 33,3.3 1000.0 2500.0 5000.0 control control Positive control 2-Aminoanthracene (2.5Hg/plate) 24 17 13 3-1 24 27 24 26 18 21 24 25 31 26 31 28 28 29 28 27 30 22 20 17 163 187 167 enhancement factor 2 revertants/concentr. test article revertants/solvent control Reveirtants/plate mean 's.d. fact< 20 1.5 20 1.7 1.0 19 3.2 1.0 17 5.9 0.9 18 4.6 0.9 11 1.2 0.6 12 3.1 0.6 16 0.6 0.8 1077 28.7 53.9 18 5.6 27 3.5 1.0 23 4.2 0.8 23 2.1 0.9 29 2.9 1.1 28 0.6 1.0 28 1.5 1.0 20 2.5 0.7 172 12.9 6.3 str5 27 of 35 ^,ze-.C.no<c.n..,nTSCACBi CoRipa^y Test M M . article:|H| ^ S3 mix from : rat: liver (IBatch R (360792) Test strain ; TA 1537 Dose ug/piate Plate 1 2 3 without S9 mix Negative Solvent 33.3 100.0 333.3 1000.0 2500.0 5000.0 control control 4 4 7-, 8 7 9 9 6 11 8 9 12 6 11 9 11 9 6 13 7 9 11 8 8 Positive control 4-Nitro-o- 212 245 176 phenylene-diamine (50ng/plate) with S9 mix Negative Solvent 33.3 100.0 333.3 1000.0 2500.0 5000.0 control control 7 13 10 13 14 13 1-2 15 13 14 13 9 11 18 13 12 12 7 10 8 10 11 11 9 Positive control . 2-Aminoanthracene 113 94 91 (2.5ng/plate) + enhancement factor I revertairts/concentr. test article 1 revertants/solvent control Revertants /plate mean s .d. factor+ 5 1.7 8 1.0 1.0 9 2.5 1.1 10 2.1 1.2 9 2.5 1.1 9 2.5 1.1 10 3.1 1.2 9 1.7 1.1 211 34.5 26-. 4 10 3.0 13 0.6 1.0 13 1.5 1.0 12 2.6 0.9 14 3.6 1.1 10 2.9 0.8 9 1.2 0.7 10 1.2 0.8 99 11.9 7.5 str5 28 of C3o5mpany Sanitized. Ooes not contain TSCA CBB Hk 3 Test article: S9 mix from : rat liver ( Batch R 060792) Test strain : TA !38 Dose ug/plate Plate 1 2 3 without S9 mix Negative Solvent 33.3 100.0 333.3 1000.0 2500.0 5000.0 control control Positive control 4-nitro-o- phenylene-diamine (50 ng/plate) with S3 mix Negative Solvent 33.3 100.0 333.3 1000.0 2500.0 5000.0 control control Positive control 2-Aminoanthracene (2.5Hg/plate) 22 30 25 23 27 26 18 29 31 19 23 25 19 18 20 20 25 20 17 19 19 17 13 26 1856 1874 1940 42 39 33 39 45 43 43 37 45 39 44 42 33 46 45 38 41 33 37 41 33 45 33 44 448 352 335 + enhancement factor " 2 revertants/concentr. test article --- - -------------- X revertants/solvent control Rev<srtants/plate mean s . d. factor-f 26 4'.0 25 2.1 1.0 26 7.0 1.0 22 3.1 0.9 19 1.0 0.8 22 2.9 0.9 18 1.2 0.7 19 6.7 0.7 1890 44.2 74.6 38 4.6 42 3.1 1.0 42 4.2 1.0 42 2.5 1.0 41 7.2 1.0 37 4.0 0.9 37 4.0 0.9 41 6.7 1.0 378 60.9 8.9 str5 29 of 35 Qowsasy .^.oo----""'""^"' Test article: f|------.3 S9 mix from : rat: liver (Elatch R 060792) Test strain : TA 100 Dose (ig/plate Plat<s 1 2 3 without S9 mix Negative Solvent 33.3 100.0 333.3 1000.0 2500.0 5000.0 control control Positive control Sodium aside (lOng/plate) 82 95 81 79 93 86 89 99 79 79 86 91 72 87 76 82 86 78 70 89 78 98 86 78 1133 1214 1196 with S9 mix Negative Solvent 33.3 100.0 333.3 1000.0 2500.0 5000.0 control control Positive control 2 -Aminoanthracene (2.5ng/plate) + pnhanfwn^n'f" Fa/'+nr' as 106 91 90 109 97 89 84 92 80 103 98 97 87 87 105 78 75 74 92 . 88 84 78 84 78 1190 845 1089 X revertants/concentr. test article Z revertants/solvent control Revertants /plate mean s. d. factor+ 86 7.8 86 7.0 1.0 89 10.0 1.0 85 6.0 1.0 78 7.8 0.9 82 4.0 1.0 79 9.5 0.9 87 10.1 1.0 1181 42.5 13.7 96 9.0 98 10.1 1.0 85 6.1 0.9 99 3.2 1.0 93 10.4 0.9 76 2.1 0.8 88 4.0 0.9 80 3.5 0.8 1041 177.4 10.6 Str5 30 0 C3o5mp. any ,S,a,.nf^a.ezd"-Duo"es not contain TSCACBt Test article:!---- < 1 S9 mix from : rat liver (]3atch R 060792) Test strain ; TA 102 Dose tig/plate Plate 1 2 3 withou-fc S9 mix Negative Solvent 33.3 100.0 333.3 1000.0 2500.0 5000.0 control control Positive control methyl methan sulfonat (1.0 til/plate) with S9 mix Negative Solvent 33.3 100.0 333.3 1000.0 2500.0 5000.0 control control Positive control 2-Aminoanthracene (2.5ng/plate) 151 158 178 188 198 188 190 159 171 175 166 175 177 179 156 167 179 167 169 176 187 189 178 189 998 1034. 897 -^ - . 260 219 270 197 218 245 233 210 233 217 219 245 194 201 206 224 199 213 240 216 230 237 256 174 811 924 702 revertants/concentr. test article + enhancement factor t revertants/solvent control Revertants^'plate mean s . d. factor+ 167 14.4 167 8.5 1.0 171 6.2 1.0 180 7.2 1.1 187 10.5 1.1 185 5.5 1.1 175 17.2 1.0 172 15.5 1.0 976 71.0 5.9 250 27.0 220 24.1 1.0 225 13.3 1.0 227 15.6 1.0 200 6.0 0.9 212 12.5 1.0 229 12.1 1.0 222 42.9 1.0 812 111.0 3.7 str5 31 of 35 Company Sanitized. Does noi c^fa'n TSCA CB? sromaRY OF RESULTS 59 mix from : rat liver (Batch R 060792) without S9 mix Dose tig/plate Neg. contr. Solv . contr. 33 .3 . 100 .0 333 .3 1-000 -.0 . 2500 .0 5000 .0 T A IS535 I / II 14 20 17 20 21 19 16 17 14 18 1-5 11 13 12 15 16 Positive controls Sodium azide 1152 (10|ig/p1ate) 4-Nitro-o- phenylene-diann'ne (50ig/p1ate) methyl methan sulfonat (l.OiiL/plate) 1077 with S9 mix Dose p.g/p1ate Neg. contr. Solv. contr. 33.3 100.0 333.3 1000.0 2500.0 5000.0 TA 1535 I /, II 16 18 23 27 23 23 25 23 23 29 20 28 26 28 . 22 20 Positive control 2-Aminoanthracene (2.51-ig/plate) 159 172 Revertants/plate mean from three plates TA 31537 I / II 8 5 6 8 7 9 8 10 5 9 5 9 7 10 6 9 TA 98 I / II 37 26 30 25 25 26 34 22 33 .19 25 22 28 18 30 19 TA 3100 I / II 76 86 82 86 76 89 72 85 64 78 50 82 50 79 57 87 323 211 2542 1890 925 1181 Revertants/plate mean from three plates TA :1537 I -/ II 13 10 12 13 13 13 12 12 11 14 12 10 9 9 10 10 TA 98 r,f II 42 38 40 42 35 42 43 42 39 41 24 37 32 37 25 41 TA 100 I /' II 104 96 106 98 84 85 85 99 88 93 84 76 76 88 64 80 106 99 575 378 1119 1041 TA 102 I / II 205 167 214 167 171 171 207 180 159 187 171 185 226 175 203 172 981 976 JI\ 102 1 / II 273 250 309 220 302 225 301 227 316 200 248 212 282 229 264 222 826 812 str5 32 of 35 Co,^^.-."--"0"1"'"730"8' CONCLUSIONS The test article f||BIHHlwas assessed for its potential to induce gene mutations according to the plate incorporation test (experiment I) and the pre-incubation test (experiment II) using Salmonella typhimurium strains TA 1535, TA 1537, TA 98, TA 100, and TA 102. The assay was performed in two independent experiments both with and without liver microsomal activation. Each concentration, including the controls, was tested in triplicate. The test arti cle was tested at the following concentrations: 33.3; 100.0; 333.3; 1000.0; 2500.0 and 5000.0 ag/plate No relevant toxic effects occurred in the test groups with and. without metabolic activation in experiment I and II in all strains used. The plates incubated with the test article showed normal back ground growth up to 5000.0 ng/plate with and without S9 mix in all strains used. No substantial increases in revertant colony numbers of any of HIIIUIpat ..the..,, five--tester strains were observed following treatment with any dose level, either in the presence or absence of metabolic activation (S9 mix). There was also no tendency of higher mutation rates with increasing concentrations in the range below the generally acknowledged border of significance. Appropriate reference mutagens were used as positive controls and showed a distinct increase in induced revertant colonies. In conclusion, it can be stated that during the described mutage- nicity test and under the experimental conditions reported, the test article did not induce point mutations by base pair changes or frameshifts in the genome of the strains used. st5r page 33 of 35 C,^,SIB^" -""""'" TSCACS! REFERENCES 1. Antes/ B.N., W.E. Durston, E. Yamasaki, and F.D. Lee (1973) Carcinogens are nnrtagens: a simple test system combining liver homogenates for activation and bacteria for detection Proc. Natl. Acad. Sci. (USA) 70, 2281-2285 2. Ames, B.N., J. McCann, and E. Yamasaki (1977) Methods for detecting carcinogens and mutagens with the Salmonella/mammalian microsome mutagenicity test In; B.J. Kilbey et al. (Eds.) "Handbook of Mutagenicity Test Procedures" Elsevier, Amsterdam, 1-17 3. Claxton, Nestmann, L.D., Alien, J., E. and Zeiger, Auletta, E. (1987) A., Mortelmans, K., Guide for the Salmonella typhimurium/mammalian microsome tests for bacterial mutagenicity Mutation Res. 189, 83-91 4. Hollstein, M., J. McCann, F.A. Angelosanto and W.W. Nichols (1979) Short-term tests for carcinogens and mutagens Mutation Res. 65, 133-226 5. Kier, L.E.., D.J. Brusick, A.E. Auletta, E.S. Von Halle, M.M. Brown, V.F. Sirnmon, V. Dunkei, J. McCann, K. Mortelmans, M. Prival, T.K. Rao and V. Ray (1986) The Salmonella typhimurium/mammalian microsomal assay A report of the U.S. Environmental Protection Agency Gene-Tox Program Mutation Res. 138, 69-240 6. Lowry, O.H., N.J. Rosebrough, A.L. Farr and R.J. Randall (1951) Protein measurement with the Folin phenol reagent J. Biol. chem. 193,-265-275 7. McCann, J. and B.N. Ames (1976) Detection of carcinogens as mutagens in the Salmonella/microsome test: Assay of 300 Chemicals: Discussion. Proc. Natl. Acad. Sci. (USA) 73, 950-954 8. McCann, J., E. Choi, E. Yamasaki and Detection of carcinogens as mutagens B.N. Ames (1975) in the Salmonella/micro- some test: Assay of 300 Chemicals. Proc. Natl. Acad. Sci. (USA) 72, 5135-5139 9. de Serres F.J. and M.D. Shelby (1979) Recommendations on data production and analysis using the Salmonella/microsome mutagenicity assay Mutation Res. 64, 159-165 st5r page 34 of 35 Company Sanded. Does no-contain TSCACB1 DISTRIBUTION OF THE REPORT Sponsor Study Director 2x (original, copy) Ix (copy) st5r page 35 of 35 .Company Sanitized. Does not contain TSCA CSt