Document 3NgyXbneG9KzdrJX695qp4DjJ

K. -^U ; BUSK;' r,U.- RESEARCH R. D.'4, V.elbr. Rr-id, Export, "cnr.s ,ivaf.!j 1SB32 CENTER <412)733-5200 REV 8(E) FINAL REPORT ETHYLENE OXIDE DOMINANT LETHAL MUTAGENICITY INHALATION STUDY ON RATS JUNE 13, 1984 Project Report 47-87 BUSHY RUN RESEARCH CENTER R.D, #4, Mellon Road Export, PA 15632 WILLIAM M. SNELLINGS, Ph.D, Study Director DO 14?435 r.ONFTDENTTAL Bushy Run Research Center A Joint Mellon Institute -- Union Carbide Corporation Operation Table of Concents Page List of Table Titles......................................................................................................................... 11 List of Figures............................................................................................................................................HI * Abstract ................................................................................................................................. ..... 1 Objective.................................................................................................................................................... ^ Materials and Methods........................................................................................................................ Test Material and Positive Control Chemical........................... Liquid Ethylene Oxide Chemical Analysis...................................................................... Ethylene Oxide Vapor Generation........................................................................................ Inhalation Chamber Description and OperationalCharacteristics .... Ethylene Oxide Vapor Concentration Determination .............................................. Target Chamber Concentrations and Triethylenemelamlne Dosage ................... Animals and Animal Husbandry ............................................................................................. Quality Control............................................................................................................................. Group Assignment and Number of Animals per Group ................................................. Experimental Design.................................................................................................................... Sacrifice and Necropsy................................................................ Experimental Data Evaluated................................................................ Statistical Analyses ............................................................................................................... Records............................................................................................................................................... 2 2 2 2 3 3 3 4 ^ 4 5 ^ 6 Results and Discussion .................................................................................................................... Test Material Purity and Stability ...................,.......................................................... Chamber Concentrations, Temperature and Relative Humidity............................ Observations for Toxicologic Effects .......................................................................... Body Weight...................................................................................................................................... Fertility.............................................. .... ..............................................*..................................... Necropsy ........................................................................................................................................... Preimplantation Loss ............................................................................................................... Resorptions and Live Implants............................................................ Mutagenesis Data Tabulated in Reference to theMale Rat................................. Discussion and Summary .......................................................................................................... ^ 7 2 7 9 9 Reviewed and Approved......................................................................................................................... H Acknowledgements................................................................................................ H References............................................................................................................................................... ^ Tables..................................................................... .... .............................................................................. Figures........................................................................................................................................................ ^ Inhalation Test in Rats......................................................................................................Appendix A Individual Animal Results of Dominant Lethal Data..........................................Appendix B List of Tables Table No.'' *age 1 Physical Properties of Ethylene Oxide ............................................................. 13 2. Gas Chromatographic Conditions Used for the Exposure Chamber Analysis of Ethylene Oxide....................................................... ^..................... 14 3. Chemical Analyses and Specifications for Drum 7JNC45 G581 of Ethylene Oxide............................................................................................................... 15 4. Chloride Content of Liquid Ethylene Oxide ................................................... 16 5. Inhalation Chamber Ethylene Oxide Vapor Concentration Determination ............................................................................................................... 1^ 6. Inhalation Chamber Temperature.............................................................................. lg 7. Inhalation Chamber Relative Humidity................................................................. 19 8. Body Weight Changes of Male Fischer 344Rats................................................. 20 9. Fertility Data................................................................................................................... ^1 10. Summary of Dominant Lethal Data.......................................................................... 11. Mutagenesis Data for the High Exposure and Control Groups Tabulated According to the Male Fat Used in the Mating................... 22 24 confidents List of FiEures Figure No. 1 Preimplantation Losses Second Week of Mating................... 2 Preimplantation Losses Third Week of Mating................... ... 3 Early Resorption Sites Second Week of Mating................... A Early Resorption Sites Third Week of Mating ................... 5 Early and Late Resorption Sites Second Week of Mating 6 Early and Late Resorption Sites Third Week of Mating. p *j r- " r 25 26 27 28 29 30 iii CO C-ONF 'C:Fs~ BUSHY RUN RESEARCH R. D 4, Me!!cn Road. Export, Pennsylvania 15632 UCC BUSINESS CONFIDENTIAL: Not to be released without the written consent of the Chairman of the Ethylene Oxide Steering Committee. CENTER (412) 733-5200 Project Report 47-87 Page 1 of 31 June 13, 1984 Ethylene Oxide Dominant Lethal Mutagenicity Inhalation Study on Rats Sponsor: Ethylene Oxide Producers ** *** ABSTRACT Groups of sexually mature male Fischer 344 rats were exposed to ethylene oxide (E0) vapor for 6 hours per day, 5 days per week for 10 weeks. The target exposure concentrations were 100, 33, and 10 ppm of E0 which are equivalent to 180, 59, and 18 mg/m3, respectively. No effects of treatment were observed from body weight determinations, clinical signs, or gross lesions at necropsy. At the end of the exposure period, the males were mated with sexually mature, unexposed, females. Low fertility rates were recorded for all treatment and air-control groups particularly, though not exclusively, during the first week of mating. Values for preimplantation loss were numerically increased in the 100 ppm exposure group in comparison to either air-control group. For the second and third weeks of mating, the number of resorptions were within the range for the two air-control groups. Although there were considerable differences between the two air-control groups for the number of resorptions, the values were increased in the 100 ppm group above the range for the controls; this was particularly noticeable during the third week. Other observations which could be indicative of a dominant lethal effect were so variable as to cake it inconclusive that the resorption data were a threshold indication of a dominant lethal effect. Within the constraints of the variability within the various groups, 33 and 10 ppm are considered to be concentrations not resulting in a dominant lethal effect. OBJECTIVE The purpose of this study was to evaluate the potential of ethylene oxide vapor, inhaled during a period of active spermatogenesis, to produce a mutagenic effect in the germinal cell line of male rats resulting in nonviable zygotes or embryos. Bushy Run Research Center A Join! Mellon Institute -- Union Carbide Corporation Operation Report 47-87 Page 2 MATERIALS AND METHODS This study was conducted according to the protocol [CHF Jpb #39-598 (B), dated December 1, 1976 and amended February 23 and 24, 1978, and March 29, 1978] prepared for the evaluation of possible dominant lethal mutagenicity resulting from the Inhalation of ethylene oxide vapor. Any deviations to the protocol and amendments have been indicated in this report. Test Material and Positive Control Chemical Liquid ethylene oxide (CAS No. 75-21-8) was received in a 55-gallon drum from Union Carbide Corporation (UCC) on April 25, 1977 with the UCC identification number 7JNC45,G581. This drum was kept in a sheltered area outdoors for the duration of th study. This material was assigned the Chemical Hygiene Fellowship (CHF) Sample Number 40-163. The production site of the ethylene oxide (EO) was Union Carbide Corporation, Seadrift, TX. The tank car from which this sample was obtained was labelled Number GATX84731. Pertinent physical properties of EO are presented in Table 1. Triethylenemelamine (TEM) (CAS No. 51-18-3) which was used as the positive control chemical was received from Polysciences, Inc., Warrington, PA, on January 13 1978. This chemical was assigned the CHF Sample Number 41-29. Liquid Ethylene Oxide Chemical Analysis Prior to and following the termination of the inhalation exposure, EO was chemically analyzed at the Research and Development Department, UCC, South Charleston, WV to determine the purity and stability of the chemical. Ethylene Oxide Vapor Generation Liquid aliquots (approximately 5 pounds) from the storage drum were transferred to a stainless steel cylinder. This cylinder which was attached to the generation system was maintained at approximately 35C by means of a constant temperature recirculating bath. The ethylene oxide vapor pressure generated at that teraperaturi was utilized to conduct the gas through stainless steel tubing and a pressure-reducing regulator to maintain approximately three psl internal pressure.Manifolds of stainless steel tubing directed the vapor through control valves and flowmeters to the chamber air-inlet duct. Ethylene oxide vapor was diluted at the inlet duct with exposure room air and drawn into the Inhalation exposure chamber. ^ 1 4P>44q Ct')N,FlOfrNr7A| ( . Report 47-87 Page 3 Inhalation Chamber Description and Operational Characteristics All five inhalation chambers were located in Room 139. Each chamber was rectangular in shape and had a volume of approximately 4350 liters with internal dimensions of 2.1 meters long, 2.1 meters high, and 1.0 meters wide. The chambers were constructed of stainless steel and contained glass windows for animal observation. Inside each chamber, a delivery duct with holes equidistantly spaced was mounted on one of the walls and extended lengthwise along the top. An identical duct for chamber exhaust was located near the floor of the chamber, directly beneath the inlet duct. Artificial light from the room was the only source of light in the inhalation chamber. Each chamber held one carrier with animal cages. The airflow through each chamber was approximately 2000 liters per minute, which is approximately 27 air changes per hour. During each 6-hour exposure, chamber temperature, relative humidity, and airflow rate were recorded approximately four times a day. Ethylene Oxide Vapor Concentration Determination All chambers, including the control chambers, were monitored for E0 concentration by means of a Varian 2700 gas chromatograph (GC). Pertinent information regarding the operating conditions of the GC is presented in Table 2. An automatic sampling and recording system connected to the GC acquired the sample and recorded the data on a printer and on magnetic tape. A known standard concentration of SO was sampled several times before the start of daily chamber analysis to check the monitoring system. Furthermore, during each cycle of chamber analyses, the same standard was reanalyzed. Approximately eight samples were analyzed from each chamber each day. Conversion of parts per million, ppm (expressed as volume/volume) to mg/m^ is 1 ppm *1.8 mg/m^ (25C and 760 mm Hg). Target Chamber Concentrations and Trlethylenemelamlne Dosage Target concentrations of 100, 33, and 10 ppm of EO were selected for the exposure concentrations based on the results of an eight-week inhalation study (report 45-139) on rats. In this study, young rats exposed to 100 ppm were noted to have throughout the study a lower gain in body weight than the controls, whereas only a transient change in body weight was noted for rats exposed to 50 ppm. The target exposure concentrations for the one generation reproduction (report 42-7) and teratology (report 42-13) studies were the same as the present study, since the animals from each of the three studies were exposed at the same time. There, were two separate groups of animals which were exposed to room air (0 ppm of EO) and served as the negative or air-control . groups (air-control I and air-control II). The purpose of having two control groups was to allow for better assesment of the variability in this study between non-chemically treated groups of animals, A sixth group of animals was treated with triethylenemelamine (0.25 mg/kg) in water by a single intraperitoneal injection 48 hours before the first day of mating. [Note: This is a deviation from the protocol which states injection will be given 24 hours before the first day of mating.] OO 14,2441 GONFTDFNTTA! Report Page 4 Animals-and Animal Husbandry Thirteen-week-old virgin male Fischer 344 rats (F-344/Ma: fBR) and three separate groups of four-week, five-week, and six-week-old virgin female Fischer 344 rats were received February 14, 1978 from Microbiological Associates, Inc., Walkersville, MD. They were housed in Room 139. All animals were individually numbered by using a toe-clipping method of identification, t&ch animal of the same sex was given a different number. Listed on each cage card were the Identification numbers for the animals within the cage. During the non-exposure period, food (Wayne Lab Blox F-6 Laboratory Animal Diet, Allied Mills, Inc., Chicago, IL) and water (Municipal Authority f Westmoreland County, Greensburg, PA) were available ad libitum. The artifical fluorescent lighting was on a 12-hour light and 12-hour dark cycle (approximately 6:00 a.m. to 6:00 p.ra). When animals were in the room, the temperature and humidity controlling devices of the non-recirculated air supply Co the room were set to maintain the environment between 66 to 77F and 30 to 70% relative humidity. Male rats were housed and exposed two per cage in stainless steel, wire-mesh cages (35 cm x 17 cm x 18 cm high), and females and positive control males were housed separated by sex, three per cage. In stainless steel, wire-mesh cages (23.5 cm x 20 cm x 18 cm high). Stainless steel shelf pans with a layer of Deotized Animal Cage Board (Upjohn Co., Kalamazoo, MI) were placed under each row of cages to prevent urinary and fecal contamination of lower levels. The paperboard along with the food and water were removed during each six-hour exposure for the male rats. During the mating period, one male and one female '--ere housed In stainless steel, wire-mesh cages (23.5 cm x 20 cm x 18 cm high). Quality Control Immediately upon arrival and during a two-week quarantine period, the general health status of the rats was assessed. Quality control examinations which included body weight determinations, fecal examination for Intestinal parasites, blood serology, evaluation of the nasopharynx and lung for aerobic bacteriologic flora, and micropathologic examination of selected tissues were performed on a portion of the group of rats upon receipt. The results of the quality control were within normal limits for commercially available, specific pathogen-free rats; therefore, the animals were determined to be of suitable quality for the inhalation study. Group Assignment and Number of Animals per Group At the time of random assignment of animals into exposure groups, only the rats whose body weights were within + two standard deviations from the mean weight of all the rats of that sex or age group were selected. Any rat having signs of poor health during the preliminary observation period was rejected. Male rats were randomly assigned to one of six groups of 10 each. The females were randomly assigned into three groups of 60 each. CO 142442 CONF I DENT T A! Report 47-87 Page 5 Experimental Design A modification of the method for dominant lethal testing %s presented by Green, et al. ( 1977) was followed in this study. .The initial day-of the EO exposures was on February 27, 1978. All groups of males were exposed six hours per day, five days per week for ten weeks. The last exposure day was May 5, 1978. The injection of TEM occurred on May 4, 1978. Animals were observed twice daily for possible toxic effects from ethylene oxide exposure or TEM treatment. Body weights of the males were determined prior to the initiation of the exposures, every two weeks during the exposure period, and immediately preceding the first mating period. The first of three sequential mating weeks for all males began the day (May 6, 1978 which is one day later than that stated in the protocol) after the last exposure. At the beginning of each mating week, a virgin female, approximately 18 weeks old, was randomly assigned to a mating cage with one of the treated male rats. In anticipation of obtaining higher percentages of pregnancy, the females which had not thrown a vaginal plug within four days of mating were switched to another male within the same treatment group. The female remained with this male until a vaginal plug was noticed or until the end of the mating period for that week (i.e. 3 days). The day a vaginal plug was observed was designated as day 0 of gestation and the female was separated from the male. Sacrifice and Necropsy Females were sacrificed on the 13th day of gestation, or if no vaginal plug was observed, 14 days from the midweek of mating. The females were sacrificed by exsanguination through severing of the brachial vessels following the induction of anesthesia with methoxyfluorane. All gross'lesions were recorded. The corpora leuta of each ovary were counted if present. The uterus of each female was examined for the number of implantation sites, and the number of early and late resorption sites. The position of implantation sites relative to the uterine horn was recorded. > The uterus, ovaries, and urinary bladder and any gross lesions were removed at necropsy and placed in 107. neutral buffered formalin. The males were sacrificed by CO2 asphyxia. The testes and epididymides were retained in 10% neutral buffered formalin. DO 142443 CONFIDENTIAL 6 Experimental Data Evaluated The'appropriate records were maintained in order to determine the following: a) Female Fertility Index * No. of females with implantations x jqq No. of females mated b) Male Fertility Index No. of males successfully impregnating a female x jqq No. of females mated c) Pre-implantation Loss No. of pre-implantation loss per female x jqq No. of corpora lutea per female d) Proportions of the females with one or more or with two or more resorption sites; e) Mutagenic Index (1) No. of resorption sites per female v iQONo. of implantation sites per female Mutagenic Index (2) * No. of early resorptions per female x iqq No. of implantation sites per female Statistical Analyses The fiducial limit of 0.05 (two-tailed) was selected as the critical level of significance. All data of each exposure group were compared statistically to the air-control group by using the following tests: Continuous variable data (such as body weight gain) were analyzed by Bartlett's test for homogeneity of variance (Sok; and Rohlf, 1969), analysis of variance (Sokal and Rohlf, 1969), and Duncan's multipl range test (Duncan, 1955, 1957; Harter, 1960). Whenever the F value for analysis of variance was significant and Bartlett's test indicated homogeneous variance, Duncan' multiple range test was used to delineate which groups differed significantly from the control. When Bartlett's test indicated heterogeneous variance, the F-test (Sokal and Rohlf, 1969) was employed to compare each exposure group with each air-control group. The type of t-test then used was selected according to the significance of the F value. The Student's t-test (Sokal and Rohlf, 1969) was used when the F value was not significant. The Cochran t-test (Cochran and Cox, 1957) w used when the F value was significant. Contigency data were analyzed by using Fischer's Exact Test (Sokal and Rohlf, 1969). Because there were not enough animals pregnant per group for appropriate statistical analyses, only mean or median values were reported for the following: preimplantation loss; proportions of females with one or more or with two or more resorption sites; and the two mutagenic indices. Records The final report, specimens, slides, and all raw data are retained in the Archives of the Bushy Run Research Center for possible further reference. DO 1, 40444 IF T Dot'll T Al. COh ( V F tivcr t ?ge 7 RESULTS AND DISCUSSION Test Material Purity and Stability The purity of the ethylene oxide test material was stated to be greater than 99.9% ethylene oxide (P. H. Wadia letter dated October 21? 1981). Table 3 lists the results of chemical analyses which were perofrmed prior to and following the inhalation exposure period. Based on these analyses the test material was stable through this study. Before the initiation of the study, the chloride content of the ethylene oxide was measured by UCC at the Institute Plant Laboratory, South Charleston, WV (Table A). The organic chloride compounds were identified by gas liquid chromatography as ethyl chloride, ethylene chlorohydrin, ethylene dichloride and vinyl chloride. The chloride content of each compound was calculated. The total of these calculated values, 10.1 ppm, agreed with the total chloride content, 10.1 ppm, as determined by a Dohrmann Chloride Analyzer. Chamber Concentration, Temperature and Relative Humidity The results for chamber EO concentration determinations are summarized in Table 5. The actual chamber concentrations were close to the target concentrations of 100, 33, and 10 ppm of ethylene oxide with little day-to-day variation. Mean chamber concentration values for the 100, 33, and 10 ppm ethylene oxide exposure groups were 98, 33, and 10 ppm, respectively. The respective coefficients of variation were 3, 3, and 4%. Less than 5% of the total number of analytical samples from either of the air-control chambers were greater than the 0.05 ppm minimum detection limit. No ethylene oxide leaks from the vapor generation system were detected in the room where both the test and control chambers were located. Consequently, it is believed that these few analyses represent analytical anomalies. Weekly means of chamber temperature and relative humidity are presented in Tables 6 and 7, respectively. The mean of the weekly means for chamber temperature ranged from 71 to 73*F and chamber relative humidity ranged from 49 to 50%. Dally mean chamber temperature values varied from 70 to 76"F and relative humidity values varied from 45 to 59%. Observations for Toxicologic Effects No deaths occurred in any group. No treatment-related adverse effects on apperance or demeanor were observed. 142445 '"-ONFXO ENTTAL Report 67-67 Page 8 Body Weight The mean body weight change from Day 0 for each group during the 10 weeks of exposures are given in Table 8. There were no apparent treatment-related effects on body weights. Some statistically significant differences were noted between the E0- and air-exposed groups, but these differences either disappeared by the next weighing interval or were not representative of a dose-related response. Fertility Presented in Table 9 are the results of the female and male fertility index determinations. For all three weeks of mating there were no statistically significant differences betwen any treatment group, including the positive control group, and either air-control group. It was noted that the fertility indices were particularly low for all groups, including the air-control groups, during the first week of mating. The results of the mating for the first week are presented in the tables, but no interpretation of the data were made because of the insufficient number of pregnant animals. Mating during the second and third weeks resulted in fertility rates of only 50 and 60% for some of the ethylene oxide and air-exposed groups. These are less than the 75% fertility rates observed in other studies with this strain of rat. Individual female and male fertility records are presented in Tables 1 and 2, respectively, of Appendix B. Nec ropsy There were no gross lesions noted at necropsy for the male rats exposed to ethylene oxide. Only a few gross findings were noted in the female rats. It is not uncommon to have low incidences of certain observations, which included mostly distention of uterine horns, in non~exposed rats. A complete listing of the gross findings for the females is presented in Table 1 of Appendix A. Preimplantation Loss The results for the percentages of preimplantation losses are given in Table 10. Median values for the 100 ppm and positive control groups were numerically greater in the second and third weeks In comparison with the air-controls and low and intermediate ethylene oxide groups. These results are graphically presented for Individual animals In Figures 1 and 2. Given in Appendix B, Table 1, are the individual values of each pregnant animal for the number of corpora lutea and the number of implantation sites. DO 142446 '-ONFTDFNTTAL Report 47-87 Page 9 ResorptloflS and Live Implants Results of the total number of resorptions and number of live Implants per pregnant female are presented In Table 10. For the second and third weeks of mating, all values of the 33 and 10 ppm groups were within the range of values for the two air-control groups; however, the values of the 100 ppm group, particularly for the third week of mating, were beyond the ranjfe of values for the air-controls. The number of early and late resorption sites are given for each pregnant animal in Appendix B, Table 1. The values for the proportion of pregnant females with one or more resorption sites or with two or more resorption sites (Table 10) were either high for both air-control groups or varied considerably between the two air-control groups, consequently making interpretations of the results difficult. Similar problems in variation between air-control groups are present in the interpretation of the results for the number of resorptions per implantation site and number of early resorptions per implantation sites (Table 10). The individual results of these last two observations for all animals are graphically presented in Figures 3 through 6. Mutagenesis Data Tabulated in Reference to the Male Rat Presented in Table 11 are the results for preimplantation losses and resorptions per implantations listed with reference to which male contributed to these results. The median values are given for mating weeks 2 and 3. For the males with two values in one week (i.e. because of two impregnations), when either the highest or lowest values are eliminated, the median results indicate the same trend as does just the median value for the group. That is, for preimplantation losses, the values of 100 ppm group were numerically greater than either the values for air-control I or II for mating weeks 2 and 3, and the values for resorptions per implantations of the 100 ppm group were numerically greater than the values for either air-control I or control II for mating week 2 but only greater than air-control I for week 3. Discussion and Summary Ethylene oxide exposures at concentrations as high as 100 ppm did not result in any treatment-related effects on body weight or clinical signs in sexually mature male rats exposed for 10 weeks. At necropsy, there were no gross lesions observed in these animals that could be related to treatment. Fertility indices were low in all groups during the first week of mating. While there was improvement in fertility during the second and third weeks, in many cases the indices were less than those seen historically in animals kept in mating boxes for up to 7 days. It is possible that the shortened mating periods in this study (3 or 4 days) may have been a factor contributing to the lower fertility rates. OO com F.c-pcr:. *4 / Page 10 For some unexplainable reason, many of the values which indicate a dominant lethal event were elevated in air-control group II during the third week of mating, which is demonstrated in Figures 4 and 6. This phenomenon, along with the low numbers of pregnant females for all groups, consequently makes interpretation of the treatment-related effects difficult. What is apparent is that there were also elevated values for the 100 ppm group, but generally, the values for the 33 and 10 ppm groups were similar to those of air-control I. In summary, values for preimplantation loss were numerically Increased in the 100 ppm exposure group in comparison to either air-control group. However, other supporting evidence of dominant lethal effects, (i.e_. decrease in fertility rate or increase in resorption per implantation) were not sufficiently elevated over both controls to make a firm conclusion of the dominant lethal effects from treatment. Without the results of air-control II, 100 ppm exposure concentration would have been considered an effect level. However, with the results of air-control II considered and with the problem of low fertility rates for all groups, these results should be considered inconclusive in establishing the minimum effect level. Within the constraints of the variability of the result, it appears probable that the exposures to 33 and 10 ppm did not result in a dominant lethal effect in male Fischer 344 rats. X Do CO/yp 14244s Tr>ETNTT4L page :: Reviewed and Approved by: \fTH > Wilillilaizm M.Snellings, Ph.D. Study Director, Project Manager > <o/`3 j i b"' ,( ` /<f.__ Fred R. Frank,PhTu. Director t/y.i/z!/-- Acknowledgement s Analytical Chemistry Animal Care Animal Husbandry Investigator Technical Support Nee ropsy Report Review Report Writing Veterinary Pathology George W. Klein, M.S. Denise L. Eisler, AALAS Cert. II Paul H. Bramson, DVM Janice P. Zelenak, B.S. Jeffrey D. Dorko, B.S. William J. Kintigh, B.S. Norbert J. Smith, M.S. Carrol S. Weil, M.A. Bryan Ballantyne, M.D., D.Sc., Ph.D. William M. Snellings, Ph.D. Louan C. Longo, B.S. Robert R. Maronpot, DVM 00 1,4244'? CONFTDFNTTA!. REFERENCES Cochran, W. G., and Cox, G. M. (1957). Experimental Designs. Wiley, New York. Duncan, D. B. (1955). Multiple range and multiple F tests. Biometrics U_:l-42. Duncan, D. B. (1957). Multiple range tests for correlated and heteroscendastic means. Biometrics 13:164-176. Green, S., Moreland, F. M., and Flamm, W. G. (1977). Short communication. A new approach to dominant lethal testing. Toxicol. Appl. Pharmacol,. 39: 549-552. Harter, H. L. (1960). Critical values for Duncan's new multiple range test. Biometrics 16:671-685. Sokal, R. R., and Rohlf, F. J. (1969). Biometry. Freeman, San Francisco. DO 142450 CONFTOFNTIAi. ?.eport - 7-S7 Page 13 Table 1 Physical Properties of Ethylene Oxide* Ethylene Oxide Dominant Lethal Mutagenesis Teat on Rats Molecular Formula: CH2CH20 * Molecular Weight: 44.05 CAS Registry Number 75-21-8 Boiling Point at 760 mm Hg: 10.4C (50.7 F) Specific Gravity at 20/20C (H2O " 1): 0.8711 Vapor Density (air * 1): 1.49 Percent Volatiles by Volume: 100 Appearance and Odor: Colorless gaa Vapor Pressure at 20C: 1095 mm Hg Solubility in Water: Complete Evaporation Rate (butyl acetate * 1): >1 Flash Point (Tag open cup): < 0 F; ASTM D 1310 Flash Point (Tag closed cup): < 0F; ASTM D 56 Concentration Equivalency (3 2 5C and 760 mm Hg: 1 ppm*1.8 rag/m^ 1 mg/liter = 556 ppm * Information obtained from Material Saf ety Data Sheet, Union Carbide Corporation F-4313QB. 4/78-4M , - ONp 7 4?4* M/ Etpc.-L 7 - 7 Page U Table 2 Ga Chromatographic Conditions Uaed for the Exposure Chamber Analysis of Ethylene Oxide Ethvlene Oxide Dominant Lethal Mutagenesis Test on Rata Column Column packing Conditions Carrier gas Flame detector gases Sample size Lower limit of detection Stainless steel tubing 1/8" o.d. x 20 ft. 30% TERGITOL - TMN and 3% sodium methylate on Cbromosorb U-NAW 60/80 mesh Column oven and injector at 80C Injection loop at room temperature Interface and detector 130C Nitrogen at 35 ml/min Air 550 ml/min Hydrogen 42 ml/min lml 0.05 ppm Oq COAyp tfnt rAl Report ^7-ST Page 16 Table 4 Chloride Content of Liquid Ethvlene Oxide Ethylene Oxide Dominant Lethal Mutagenesis Teat on Rats Ma terial Organic Chloride Content^(ppm, v/v)2 Calculated Chloride Content (ppm CL, wtv)1 Organic Compound Ethyl chloride Ethylene chlorohydrin Ethylene dichloride Vinyl chloride 12.2 3 2 1.3 6.7 1.3 1.4 0.73 Determined by gas liquid chromatography (glc) 2 To convert from w/v to v/v: multiply by reciprocal of the density of the organic chloride at 20C, i.e., (w/v value x density at 20 C (v/v value) DO 142453 OONFTDENTTAI Report 67-87 Page 15 Table 3 Chemical Analyses and Specifications for Drum 7JNC45, G581 of Ethylene Oxide^ Ethylene Oxide Dominant Lethal Mutagenesis Test on Rats Chemical Analysis Analysis Date April 23, 1977J - July 18, 1978 Maximum Commercial Specifications^ Acidity (X by wt)4 0.0016 0.0014 0.002 Aldehydes (ppm)5 21 19 30 Acetylene (ppm) Nil Nil Nil Water (X by wt) 0.09 0.005 0.03 Residue (g/100 ml) 0.0012 0.0004 0.005 Color (Pt-Co)^ 3 1 10 Odor Nonresidual Nonresidual Nonresidual Suspended Matter Substantially Free Substantially Free Substantially Free ^ Analyses performed at the Research and Development Department > Union Carbide Corporation, South Charleston, WV. 2 Commercial specifications of Union Carbide Corporation. ^ Maximum of two analyses. H Measured as acetic acid. ^ Measured as acetaldehyde. 6 Platinum-cobalt color test. 0 0 142454 '"-ONF T !jF.NT T AL Ke tort - -o. Fa ft 17 Table 5 Inhalation Chamber Ethylene Oxide Vapor Concentration Determinations Ethylene Oxide Dominant Lethal Mutagenesis Test on Rats _______________________ Ethylene Oxide Target Chamber Concentrations* Target concentration, ppm 100 ppm 33 ppm Mean of daily means of measured concentration, ppm^ Coefficient of variation^, % 97.6 3.3 33.0 2.9 30 PP 9.9 3.8 Air Control Chamber Concentrations Air control chamber Target concentration, ppm I 0 Medciaonncoefntthraetiodna,ilyppmm1edians of measured Number of individual analyses e 0.053 373 Number of analyses above minimum limit of detection 13 Mean concentration of analyses above mini;turn limit of detection 0.19 Standard deviation of analyses above minimum limit of detection Maximum concentration determined, ppm + 0.16 0.70 II 0 e 0.053 367 12 0.24 + 0.20 0.77 Approximately 8 analyses per chamber were made each exposure day of the days that a test atmosphere was generated. Measurement is based on the standard deviation and the mean. It is a measure of variability of the daily means. Gas chromatograph minimum detection limit. DO 14?a35 CONFIDENTIAL 1c Table 6 Ethvlene Oxide Dominant Lethal Mutagenesis Test in Rats i Inhalation Chamber Temperature * Exposure Week 1 2 3 4 5 6 7 8 9 10 SD 100 pom X SD 2 72 i 72 i 71 4 i 72 i i 70 4 0 70 + 1 72 4 1 70 i- 0 71 4 1 70 0 71 1 iL?SS. xt SD 72 -k 1 74 3 72 4; 1 72 4 0 72 4 1 73 4 1 74 4 1 74 4 1 73 1 74 0 Target Concentration 10 ppm 0 ppm (CX) x SD 3c SD 74 4 1 73 4 1 73 4 1 72 4 1 73 4 1 73 4 1 73 4 1 74 4 1 72 4 1 72 4 0 73 4 1 72 4 1 73 4 1 72 4 1 72 4 1 72 4 0 73 4 0 73 4 1 72 4 1 72 4 1 73 4 1 73 4 1 72 4 0 ^ Units = Farenheit 2 5 t SD Kean standard deviation 0 ppm (CII) x SD 73 4 1 72 4 1 73 4 1 72 k 1 72 4 1 72 4 1 72 4 1 74 4 0 71 4 1 71 * 1 72 4 1 DO 142456 Table 7 Ethvlene Oxide Dominant Lethal Mutagenicity Inh. Test in Rats Inhalation Chamber Relative Humidity ^ Exposure Week 1 2 3 4 5 6 7 8 9 10 x SD 100 ppm x SD 2 46 4 1 46 4 0 49 4 3 49 4 3 48 4* 2 54 4 3 52 4 4 52 4 4 52 4 4 50 4 4 50 4 3 33 ppm x i SD 46 4 1 46 4 0 48 4 3 50 4 4 48 4 2 55 4 3 52 j- 4 52 4 4 51 4 4 50 4 4 50 4 3 Target Concentration 10 ppm 0 ppm (Cl) x t SD x SD 46 4 1 46 4 1 49 4 3 49 4 2 48 4 2 54 4 2 52 4 3 53 4 4 52 4 4 49 4 4 45 4 1 45 4 0 48 4 3 49 4 4 47 4 2 53 4 2 51 4 5 53 4 3 51 4 4 49 4 4 50 4 3 49 4 3 1 Units * Z Relative humidity ^ x SD = Mean standard deviation 0 ppm (CI1) x SD 46 4 0 47 4 0 49 4 3 50 4 4 48 4 2 54 4 3 54 4 3 53 4 4 51 4 3 49 4 5 50 4 3 DO 142457 CONFIDENT! Al Report 47-87 Page 20 Table 8 Body Weight Changes of Male Fischer 344 Rats^ Ethylene Oxide Dominant Lethal Mutagenesis Test on Rats Exposure Week 100 ppm Mean ;+ SD2 Target Exposure Concentrations Air Control 1 33 ppm 10 ppm 0 ppm Mean + SD Mean + SD Mean + SD Air Control II 0 ppm Mean + SD Mean Body Weight, Grams, On Day 0 266.6 + 18.4 273.2 + 17.0 271.2 + 14.3 274.4 + 13.2 274.0 + 16.4 Body Weight Change, Grams From Mean Weight On Day 0 2 13.4 + 10.5 14.0+ 4.6 9.8b,a + 5.0 16.1 + 6.5 14.3 + 5.4 4 20.0"* 3 + 11.6 25.1+ 6.4 20.5-'3 + 7.1 25.1 + 8.2 30.0 + 9.0 6 31.6 + 14.1 39.3 + 10.1 30.7 + 8.6 32.6+ 9.5 38.6 + 6.5 8 46.4 + 13.1 52.4+ 9.5 45.2 + 8.1 49.4 + 10.2 52.1 + 7.9 10 51.2 + 13.2 57.5 + 10.4 49.4 + 9.0 55.7+ 8.4 58.1 + 8.0 a = p < 0 .05 b - 0.05 > p > 0.01 1 N = 10 rats per group 2 SD = Standard deviation l 4^4 to C0NrT0?Nrl Week 1 2 3 Table 9 Ethylene Oxide Dominant Lei:hnl Mutagenicity Inhalation Test In Rats -F---e--r--t--i-l-i-t-y-----D---a--t-a-1 < 100 ppm 20 (2/10) 70 (7/10) 50 (5/10) 33 ppm Treatment 10 ppm 0 ppm (Cl) 0 ppm (CII) TEM (0.25 m g/kg) Percentage (ratio) Pregnant Females ~No. of females pregnant L No. mated U (1/7) 70 (7/10) 50 (5/10) 56 (5/9) SO (8/10) 100 (10/10) 12 (1/8) 60 (6/10) 70 (7/10) 33 (3/9) 90 (9/10) 60 (6/10) 56 (5/9) 60 (6/10) 60 (6/10) i-'-t 'N "O1t0n1 oo I> 0 Percentage (ratio) Males that Successfully Impregnated One or Two Females 1 20 (2/10) 10 (1/10) 2 60 (6/10) 50 (5/10) 3 50 (5/10)* 50 (5/10) -t--a--- ;---------- rsuccessfully mated with two females. 50 (5/10) 70 (7/10)* 100 (10/10) 10 (1/10) 60 (6/10) 60 (6/10) 30 (3/10) 70 (7/10) 60 (6/10)* 56 (5/9) 60 (6/10) 50 (5/10) * Value may be Incorrect since for one pregnant female in this group no vaginal plug was detected, consiMpient1 it is unknown which male impregnanted her. 4 'tan'i *>) IIM OI )I Table 10 Ethylene Oxide Dominant Letlia j_Mutagenicity Inhalation Teat in Rats Summary of Dominant Lethal Data* I Week 100 ppm 33 ppm Treatment 10 ppm 0 ppm (Cl) 0 ppm (CII) * TEM (0.25r.ig/kg) Median (Quartile Deviation)*Preimplantation Lobs (No. preimplantation loss/No. corpora lutea/Female X1001 1 62 (33) 2 33 (30) __ irk 9 (34) 40 (34) 0 (8) -- 0 (1) 30 (31) 8 (13) 11 (30) 30 (22) 3 42 (34) 8 (17) 8 (15) 8 (6) 14 (20) 70 (2b) Total Resorptions / No. Pregnant Females 1 3.0 1.0 0.2 0.0 2.0 5.0 2 1.4 0.1 0.8 1.3 0.6 3.7 3 4.0 1.4 0.9 1.0 2.7 3.5 Total Live Implants / No . Pregnant Females 1 0.5 6.0 5.6 12.0 4.7 2.0 2 5.0 7.7 9.4 9.7 8.8 2.2 3 2.6 8.6 8.4 9.3 4.5 0.3 r> oo Zo n h -* o m \> z H O' O 1> (Continued) 1u1 -nj>i <<nv 'dJ I inM t-I I ,10 1 U J 1 ' ^OUII L i IlllOu) Ethylene Oxide Dominant Lethal Mutagenicity Inhalation Test in Rats Summary oF Dominant Lethal Data Week 100 ppm 33 ppm Treatment 10 ppm 1 ppm (Cl) 0 ppm (CII) TEM (0.25 inc/Vg) Proportion of Pregnant Females with One or More Resorption Sites (X100) 1 100 ____ 20 2 71 14 50 3 100 60 60 -- 67 86 67 44 83 Proportion of Pregnant Females with Two or More Resorption Sites (X100) 1 50 0 2 43 0 12 3 60 40 20 -- 50 14 33 11 67 Median (Quartile Deviation) No. Reaorptions/No. Implantation Sites/Female (X100) 1 92 (19) 2 20 (30) 3 44 (38) --- 0 (0) 10 (13) 0 (12) 4 (5) 9 (9) -- 13 (11) 9 (3) 9 (42) 0 (6) 42 (38) Median (Quartile Deviation) No. Early Resorptions/No. Implantation Sites/Female (X10_0) 1 42 (42) 2 8 (22) 3 14 (33) ---- 0 (0) 10 (13) 0 (12) 0 (4) 0 (6) --- 4 (10) 9 (3) 0 (42) 0 (6) 34 (38) * Median Is the 50th percentile. Quartile deviation is (75th - 25th percentile) / 2. **Dashes indicate that values could not be determined because only one animal was pregnant. 100 67 100 too 67 tn 100 (24) 76 (45) 100 (12) 100 (29) 60 (43) 100 (20) tft-i Tf.V T<Oll XOf N. 'M r* C O N F ID E N T I A l . Table U Mutagenesis Oata for the High Exposure and Control Groups Tabulated According to the. Hale Rat Used In the Hating Ethylene Oxide Homliimit Lethal Mutagenesis Test on Rata Hale 100 ppm EO Mating Week 12 An I PL/CL* 8/1 ** PL/CL 8/1 1 3 PL/CL 8/1 Male 1 An I PL/CL R/I Treatment 0 ppm Cl Hat tng Week 2 PL/CL R/l 3 PL/ CL R/l 4786 33 4847 11 90 63 100 90 100 17 20 16 44 63 100 0 100 2741 0 0 M 00 2838 10 0 2854 2896 It 60 0 50 60 08 73 33 42 14 2799 4822 II 0 22 0 18 08 4774 33 0 4803 0 25 2771 median median* median1 OO zO T1 l-t "* O f* rq i'J Z f* H O' --I M > 0 43 33 20 25 14 42 32 42 44 30 38 5B 38 2903 2722 0 13 08 0 18 * Prelmplantatton losa/corpors lutea X100. ** Early and late resorptions/implantation sites X100. nd-not determined 1 median with the highest values of the double mating (e) eliminated. 2 median with the lowest values of the double mating (a) eliminated. 9 10 09 12 14 17 0 8 18 89 08 89 89 8 10 Male 1 An 1 PL/CL R/l 0 ppm CIl Hating Week 2 PL/CL R/l 3 PL/CL R/J 4788 62 4775 0 2819 2829 II 2862 1 30 4838 1 2807 2830 0 9 83 31 0 10 0 80 0 22 14 0 17 80 09 09 00 36 43 55 40 10 U 14 100 00 nd 80 8 0 14 42 *0 0 23 10 0 25 41 tj t- Fiqure 1 EO DOMINANT LETHAL MUTAGENESIS STUDY PREIMPLANTATION LOSSES SECOND WEEK OF MATING - Median and actual data point i NO. PR EIM PLAN TATIO N LOSSES/CORPORA LUTEA PER PREGNANT FEMALE X 1000 Figure 2 EO DOMINANT LETHAL MUTAGENESIS STUDY PREIMPLANTATION LOSSES THIRD WEEK OF MATING PPM OF ETHYLENE OXIDE ^= Median and actual data point Figure 3 EO DOMINANT LETliAL MUTAGENESIS STUDY EARLY RESORPTION SITES SECOND WEEK OF MATING EARLY RESORPTION S IT E S /N O . IM PLAN TATIO N S IT E S PER PREGNANT FEMALE X 1000 o az go Orrt &Z Z--i J' r-t '/I x- * O z 0 100 33 10 0 0 POSITIVE CONTROL I CONTROL II CONTROL TEM PPM OF ETHYLENE OXIDE ^ = Median and actual data point ^- Median )fOt)ji* orOo rVj) r I' I t--oJ Figure 4 EO DOMINANT LETHAL MUTAGENESIS STUDY EARLY RESORPTION SITES THIRD WEEK OF MATING i- Median and actual data point Median \) trJ CU fl CfPt>4 "OO tOl' rt II*-1 o oo zo T| o^ rn \> Z -fi --I O' Ni I> NO. EARLY AND LATE RESORPTION S IT E S /N O . IM PLANTATIO N S IT E S PER PREGNANT FEMALE X 1000 1000 900800 700600500- 400 - 300 200 100 04 Figure 5 EO DOMINANT LETHAL MUTAGENESIS STUDY EARLY AND LATE RESORPTION SITES SECOND WEEK OF MATING * t * *-jilt* t "W- ** ** ***)((* * **** 0000^ 00` 100 33 10 0 0 POSITIVE CONTROL I CONTROL II CONTROL PPM OF ETHYLENE OXIDE TEM Median and actual data point Median R e p o rt Pace 29 r* -1 i co orn -*-> Z > H O' a> NO. EARLY AND LATE RESORPTION S IT E S /N O . IM PLANTATIO N S IT E S PER PREGNANT FEMALE X 1000 1000900' 800700 600- 500- 600300- * 200 100 0 Figure 6 EO DOMINANT LETHAL MUTAGENESIS STUDY EARLY AND LATE RESORPTION SITES THIRD WEEK OF MATING ** * iI*** * * 1* * * ** * * * ** * ft J* . _ ______ ft ft** * * 100 33 10 0 0 POSITIVE CONTROL I CONTROL II CONTROL PPM OF ETHYLENE OXIDE TEM Median and actual data point K tp o r Pare O t> * t `l cry i f. ~ r * * ***"/ Ft 31 BUSHY RUN RESEARCH R. D. 4, Mellon Road. Export, Pennsylvania 15632 CENTER Teiepnone (4l2i 733-5200 Quality Assurance Unit Study Inspection Summary Test Substance: Ethylene Oxide Study: Dominant Lethal Mutagenicity Inhalation on Rats Study Director: William M. Snellings, Ph.D. The Quality Assurance Unit of BRRC conducted the inspections listed below and reported the results to the study director and to management on the cates indicated. It is the practice of this Quality Assurance Unit to report the results of each inspection to both the study director and management. Inspection Date Tvpe 10-22 to 10-30-79 9-1-81 1-17 to 1-31-34 Pathology Data Event-Final Report Raw Data, Pathology Report and Final Report To Studv Director To Management 10-30-79 1-17-80 9-1-81 1-31-84 11-3-81 2-28-84 DO 142469 CONFIDENTIAL Q Linda J. CalistY Quality Assurance Unit Supervisor Bushy Run Research Center A Joint Mellon Institute --Union Carbide Corporation Operation c-Z/s/i / Date APPENDIX A Pathology Report Ethylene Oxide Dominant Lethal Mutagenicity Inhalation Test in Rats D M747 o CONrTOfNTT Report 47-; Appendix A. Page 1 of 7 Ethylene Oxide Dominant Lethal Mutagenesis Test in Rats Pathology Results Males. There were no gross lesions observed in treated or control rats with the exception of a Control II animal (#78-2883) which had a nodule in the peritesticlar fat grossly compatible with focal fat necrosis secondary to infarction. The pathogenesis of this common lesion is believed to be initiated by torsion of tags of adipose tissue leading to localized ischemia. Females. A few gross lesions were documented in female rats and these are summarized in Table 1. Several females had bilateral dilation of uterine horns compatible with estrus; none of these rats had implantation sites. The type and frequency of gross findings should not affect the results of this study. able 1 Report ^ iv A ?2Cr 2 pf 1 Ethylene Oxide Dominant Lethal Mutagenesis Test in Rats Gross Findings in Females Dose and Rat Number First Week of Mating Gross Findings 100 ppm 0 78-3643 78-3659 78-3669 78-3670 78-3671 78-3657 78-3679 78-3683 78-3685 78-3686 78-3701 78-3724 No gross lesions. No gross lesions. No gross lesions. No gross lesions. No gross lesions. No gross lesions. No gross lesions. No gross lesions. Distention of uterine horns compatible with estrus. Distention of uterine horns compatible with estrus. No gross lesions. No gross lesions. 33 ppm 0 78-3655 73-3678 78-3690 78-3699 78-3702 78-3708 78-3712 78-3714 No gross lesions. No gross lesions. No gross lesions. Polycystic right kidney and pitted surface on left kidney compatible with nephritis. No gross lesions. No gross lesions. No gross lesions. No gross lesions. 10 ppm E0 78-3644 78-3647 78-3660 78-3662 78-3668 78-3672 78-3693 73-3694 73-3709 78-3716 78-3 720 do I*?472 , CONFIDE NTT A No gross lesions. No gross lesions. No gross lesions. No gross lesions. No gross lesions. No gross lesions. No gross lesions. Corneal opacity of right eye compatible with keratitis. No gross lesions. No gross lesions. Distention of uterine horns compatible with estrus. (Continued) -w ---f\J Co* Table 1 Report 47Appendix A Page 3 of 7 ''Ethylene Oxide Dominant Lethal Mutagenesis Test in Rats Gross Findings in Females First Week of Mating Dose and Rat Number (Continued) Gross Findings Control I 78-3648 78-3656 78-3665 78-3666 78-3681 78-3689 78-3704 78-3707 78-3719 ' No gross lesions. No gross lesions. No gross lesions. No gross lesions. No gross lesions. No gross lesions. No gross lesions. No gross lesions. No gross lesions. Control II 78-3642 73-3664 78-3676 78-3688 78-3692 78-3695 78-3697 78-3710 78-3721 78-3722 No gross lesions. No gross lesions. No gross lesions. No gross lesions. No gross lesions. Distention of uterine compatible with estru: No gross lesions. No gross lesions. No gross lesions. No gross lesions. Positive Control (0.25 og/kg TEM) 78-3673 73-3674 73-3675 78-3680 73-3632 78-3634 78-3700 78-3703 73-3706 78-3723 No gross lesions. No gross lesions. No gross lesions. No gross lesions. No gross lesions. No gross lesions. No gross lesions. No gross lesions. No gross lesions. No gross lesions. (Continued) t > <w J \ "+ t ' '* ONFinfr'NTT AL Table 1 t t- Repcrt 47--87 Appendix A Face - of 7 Ethylene Oxide Dominant Lethal Mutagenesis Test in Rats Gross Findings In Females Second Week of Mating Dose and Rat Number (Continued) Gross Findings 100 ppm EO 78-3565 78-3566 78-3567 78-3570 78-3572 78-3575 78-3607 78-3627 78-3628 78-3561 Distention of uterine horns compatible with estrus* Distention of uterine horns compatible with estrus. No gross lesions. No gross lesions. No gross lesions. No gross lesions. Distention of uterine horns compatible with estrus. No gross lesions. No gross lesions. No gross lesions. 33 ppm EO 78-3551 73-3554 78-3560 78-3581 78-3589 73-3591 78-3599 73-3605 78-3618 78-3630 10 ppm E0 78-3558 78-3559 78-3569 78-3576 78-3577 78-3578 78-3585 78-3609 78-3612 78-3621 No gross lesions. No gross lesions. No gross lesions. No gross lesions. No gross lesions. No gross lesions. Distention of uterine horns compatible with estrus. Vaginal and vulval hemor rhage. No gross lesions. No gross lesions. No gross lesions. No gross lesions. No gross lesions. No gross lesions. No gross lesions. No gross lesions. No gross lesions. No gross lesions. No gross lesions. No gross lesions. . _ _ ____ - (Continued) DO \42474 CON roe^TT AL able 1 Report Append Page 5 Ethylene Oxide Dominant Lethal Mutagenesis Test in Rats Gross Findinzs in Females Second Week of Mating (Continued) Dose and Rat Number Gross Findings Control I 78-3552 78-3553 78-3573 78-3582 78-3584 78-3598 78-3613 78-3614 78-3629 78-3635 No gross lesions. No gross lesions. No gross lesions. No gross lesions. No gross lesions. No gross lesions. No gross lesions. No gross lesions. No gross lesions. No gross lesions. Control XI 78-3563 73-3574 78-3580 78-3588 78-3592 78-3602 78-3603 78-3606 78-3616 78-3622 Positive Control (0.25 ag/kg TEM) 78-3549 78-3564 73-3586 78-3590 78-3594 78-3596 78-3601 78-3610 78-3611 78-3633 No gross lesions. No gross lesions. No gross lesions. No gross lesions. No gross lesions. No gross lesions. No gross lesions. No gross lesions. No gross lesions. No gross lesions. S No gross lesions. Periovarian cyst. No gross lesions. No gross lesions. No gross lesions. Distention of uterine compatible with ec' No gross lesions Mo gross lesions No gross lesions No gross lesions (Continued) C'O (4P>4?f; CONFIDENTIAL Table 1 -7 * - -- E'.-T'O rt 4*-67 en;::-: A e O OZ i Ethvlene Oxide Dominant Lethal Mutagenesis Test In Rats Gross Findings In Females Third Week of Mating (Continued) Dose and Rat Number Gross Findings 100 ppm EO .78-3073 78-3082 78-3111 78-3123 78-3179 78-3246 78-3469 78-3480 78-3484 78-3486 No gross lesions. No gross lesions. No gross lesions. No gross lesions. No gross lesions. No gross lesions. No gross lesions. No gross lesions. No gross lesions. No gross lesions. 33 ppm EO 78-3064 78-3101 78-3201 78-3249 78-3467 78-3475 78-3481 78-3485 78-3522 78-3526 No gross lesions. No gross lesions. No gross lesions. No gross lesions. No gross lesions. No gross lesions. Distention of uterine horns compatible with estrus. No gross lesions. No gross lesions. No gross lesions. 10 ppm EO 7 8-3096 78-3219 78-3245 78-3464 73-3465 78-3473 78-3477 78-3487 78-3528 78-3529 No gross lesions. No gross lesions. No gross lesions. No gross lesions. No gross lesions. No gross lesions. No gross lesions. No gross lesions. No gross lesions. No gross lesions. . (Continued) DO 14247b CONFIDENT! A1 T&bXfi 1 Ethylene Oxide Dominant Lethal Mutagenesis Test In Rats ,^ Gross Findings in Females Rf' ort -- Arr*tnci>i ~ *'3 iZ t1 / c! Third Week of Mating Dose and Rat Number (Continued) % _________Gross Findings Control I 78-3059 78-3074 78-3131 78-3207 78-3210 78-3462 78-3466 78-3476 78-3483 73-3524 No gross lesions. No gross lesions. No gross lesions. No gross lesions. No gross lesions. No gross lesions. Distention of uterine ho compatible with estrus. No gross lesions. No gross lesions. No gross lesions. Control II 78-3063 78-3105 73-3110 78-3140 78-3146 78-3157 78-3206 78-3470 78-3488 78-3527 No gross lesions. Distention of uterine ho; compatible with estrus. No gross lesions. No gross lesions. No gross lesions. No gross lesions. No gross lesions. No gross lesions. No gross lesions. No gross lesions. Positive Control (0.25 mg/kg TEM) 78-3070 78-3078 78-3114 78-3222 78-3241 78-3250 78-3460 73-3463 78-3471 78-3482 No gross lesions. Distention of uterine hoi compatible with estrus. No gross lesions. No gross lesions. No gross lesions. No gross lesions. No gross lesions. No gross lesions. No gross lesions. No gross lesions. EO =* Ethylene Oxide TEM * Triethylenemelamine DO 1.42 A? 7 confidential p.epor 47-S7 * APPENDIX B Individual Animal Results of Dominant Lethal Data Ethylene Oxide Dominant Lethal Mutagenicity Inhalation Test in Rats DO 14-473 LONF 7 rF.\'T 7 A1 IN^CidNO O 3J0da-J Table 1 Ethylene Oxide Dominant Lettt;11 Mutagenicity Inhnlatlon Test In Rat3 Individual Animal Results of Dominant Lethal Data Ma ting Week Number Female An. No. Mated With Male An. No. First, Second 1 1 1 1 1 1 1 1 1 1 1 1 2 2 2 2 2 2 2 2 oo 2 2 *j f t 'i Is 3643 3701 3724 3659 3669* 3670 3671 3657* 3679 3683 3685 3686 3628 3570 3572 3575 3627 3567 3561 3565 3566 3607 S' 4847 4774, 4786 4786 2710, 2771 2734, 2710 2771, 2734 2842 2854, 2842 2898, 2854 2899, 4774 4847, 4786 2854 2898 2899, 2898 4786, 4774 2842, 2771 2710, 4847 2734, 2710 2771, 2734 4774, 2899 Number Corpora Lutea Number Implantation Sites Number Preimplantation Losses 100 ppm Ethylene Oxide 10 1 96 ---- ---- ---- -- __ -- _-- ---- -- ---- ---- 10 1 10 4 10 5 8 12 96 77 12 10 ---- ---- ---- 9 3 -- -- -- -- -- -- -- -- 9 6 5 0** 3 0 2 -- -- -- (Continued) Number Early Resorption Sites 0 5 --: -- -- -- -- -- -- -- 0 0 3 1 0 3 1 -- -- -- -- Number Late Resorption Sites Vaginal Plug Do tor ted 1 0 -- -- -- -- -- -- -- -- 1 0 0 0 0 0 1 -- -- -- t Y Y Y N N N Y Y N Y Y Y V V Y N* Y H N Y .. ) .I i*:* '1 r* r-j Table 1 (Continued) Ethylene Oxide Dominant Lethal Mutagenicity Inhalation Teat in Rate Individual Animal Results of Dominant Lethal Data Mating Week Number Female An. No. Mated With Male Tin. No. First, Second Number Corpora Lutea Number Implantation Sites Number Preimplantation Losses 3 3484 3 3073 3 3179 3 3246 3 3469 3 3486 3 3082 3 3111 3 3123 3 3480 1 3714 1 3655 1 3678 1 3690* 1 3699 1 3702 1 !"1 3708 1 b o 3712 Zo "0 OT1 ^X) Z ^00 r-t O 1> 4847 2710, 4847 2854 2898, 2854 2899, 2898 4786 2734, 2710 2771, 2734 2842, 2771 4774 4797, 4811 2715, 2726 2779, 2747 2826, 2779 2841, 2826 2364, 2841 2865, 2864 100 ppm Ethylene Oxide (Continued) 12 2 11 12 11 3 -- -- 12 7 11 9 ---- ---- ---- 10 0** 8 -- 5 2 -- -- -- 33 ppm Ethylene Oxide 97 ---- -- ---- ---- ---- ---- ---- 2 -- ---- -- -- -- -- (Continued) Number Early Resorption Sites 2 0 0 -- 1 3 -- -- -- 1 -- -- -- -- -- Number Late ResorptIon Sites V.ipln Pip 0 v 12 i;1 1V -- tl 0V 1Y -- t; -- i; -- ii Y 0 tl' --N """ II -- II -- II _-- n ---- H hh rIirh-* * * i I :j m I ) fi* r O. Table 1 (Continued) Ethylene Oxide Dominant Lethal Mutagenicity Inhalation Teat In Rats Individual Animal Results of Dominant Lethal Data Mating Week Number Female An. No. 2 3630 2 3618 2 3581 2 3605 2 3551 2 3560 2 3554 2 3589 2 3591 2 3599 3 3526 3 3522 3 3064 3 3101 3 3467 3 3201 3 324 9 3 3475 3o 3481 3 oo zo 3485 n h - a m s\> z^ h oo i--t i--* Mated With Male An. No. First, Second Number Corpora Lutea Number Implantation Sites Number P reImplant a tion Losses 4811, 4797 4797 2779, 2747 2865 2715 2747, 2726 2726 2826, 2779 2841, 2826 2864, 2841 4811 4797 2715 2726 2865 2747 2779, 2747 2826, 2779 2841, 2826 2864, 2841 33 ppm Ethyl ene Oxide (Continued) 12 2 10 10 93 89 11 10 11 10 11 11 ---- ---- ---- 10 0 6 0** 1 1 0 __ -- -- 12 5 12 10 12 11 10 12 13 12 ---- ---- ---- -- ---- 7 2 1 0** 1 -- -- -- ---- -- (Continued) Number Early Resorption Sites 0 0 0 0 0 0 1 ---- __ -- 0 1 2 0 4 -- ---- -- Number Late Resorption Sites V.ipi no. Plug Del.ec t 0Y 0Y 0 f! ' 0V 0Y 0 ' 0Y j; __ i * --N 0Y 0Y 0Y 0V 0Y --V --M -- tt tlmm mm '--- II ci''.t > nT>O Table 1 (Continued) Ethylene Oxide Dominant Lethal Mutagenicity Inhalation Teat in Rate Individual Animal Results of Dominant Lethal Data Mating Week Number Female An. No. Mated With Male An. No. First, Second Number Corpora Lutea Number Implantation Sites Number Preimplantation Losses 1 3709 1 3693 1 3660 1 3662 1 3716 1 3644 1 3720 1 3672 1 3647* 1 3668 1 3694* 2 3621 2 3558 2 3578 2 3577 2 3612 2 3585 2 3569 2 r> o 3576 2 2 "n o 3559 3609 o m 2 H 3) -I>h \) 2863, 2795 2795, 2794 2731, 2735 2735, 2740 4810 4842, 4795 4795, 4810 2746 2740, 2746 4842 2731, 4842 2795 2794 4810, 2863 2863 2740 2746, 2740 2735 4795, 4810 10 ppm Ethylene Oxide 12 2 -- -- 82 -- -- 10 6 10 6 -- -- 10 11 ---- 10 -- 6 4 2 -- 0** TM 7 11 11 11 10 . 12 10 -- 13 -- 7 12 9 9 9 12 10 -- 13 -- 0 0** 2 2 1 0 0 -- 0 -- (Continued) Number Early Resorption Sites 0 __ 1 0 0 -- 0 -- 3 0 0 0 0 0 1 0 -- Number Late Resorption Sites V-ic.tnal I11 uf; 1 Voiced 0Y __ II 0Y --N 0V 0V --N 0Y --- N 0Y 1Y 1Y 0Y 0 N1 0Y 0Y --N 0Y --Y ---- >ri > n- -.1 Report Mating Week Number 3 3 3 3 3 3 3 3 3 3 o X-- a-n ?t--,>' m b> w v 1 1 1 1 1 1 1 1 1 Table 1 (Continued) Ethylene Oxide Dominant Lethal Mutagenicity Inhalation Test in RatB Individual Animal Results of Dominant Lethal Data Female An. No. Mated With Male An. No. First, Second Number Corpora Lutea Number Implantation Sites Numbe r P reimplan ta tIon Losses 3465 3477 3487 3528 3096 3473 3529 3245 3464 3219 3656 3648 3665 3666* 3681 3689 3704 3707 3719 4810 2794 2795, 4795 2731 2746 4842 2740 2863 2735 2794 2741 2722, 2741 2768, 2799 2799, 2812 2812, 2838 4803, 2903 4818, 4803 4822, 4818 10 ppm Ethylene Oxide (Continued) 11 5 11 6 10 B 12 9 11 10 11 11 11 11 12 11 11 11 11 11 6 5 2 3 1 0 0 1 0 0 Air Control I (0 22HL EO) 11 12 ---- ---- 0** -- -- (Continued) Number Early Resorption Sites 0 3 0 1 0 2 0 1 0 0 0 -- -- Numbei Late ResorptInn Sites '-i-ii-.l fl.lt; l1 i>i l 0 0 0 0 0 0 0Y 07 1Y 0V --Y --N N H tl t; N C*l' ->1 *T> rj -.1 r* O r fjj \ r* on '-t Table 1 (Continued) Ethylene Oxide Dominant Lethal Mutagenicity Inhalation Test in Rats Individual Animal Results of Dominant Lethal Data Hating Week Number Female An. No Hated With Male An. No. First, Second Number Corpora Lutea Number Implantation Sites Number Preimplantation Losses 2 3598 2 3613 2 3584 2 3552 2 3635 2 3629 2 3573 2 3553 2 3582 2 3614 3 3476 3 3074 3 3131 3 3207 3 3524 3 3483 3 3462 3 3059 3 3210 3 3466 n oz ao 71 z> P m -VJ z^ ~i 0) fi 3> Air Control I (0 ppm EO - Continued) 2838 2903, 2838 2812, 2799 2722, 4822 4822 4818, 4803 2768, 2741 2741, 2722 2799, 2768 4803, 2903 10 -- 9 10 13 9 12 -- -- -- 9 -- 9 11 13 12 12 -- -- -- 1 -- 0 0** 0 0** 0 -- -- -- 2838 2741 2768, 2741 2799 4822 2903 4803, 2903 2722 2812 4818, 4803 , 8 11 11 12 12 12 -- 11 -- -- 7 10 11 10 11 11 -- 12 -- -- 1 1 0 2 l 1 -- 0** -- -- (Continued) Number Early Resorption Sites Number Late Resorption Sites v.-ip.Inal n 0 -- 2 2 1 0 0 -- -- -- 1 1 1 0 2 1 -- 1 -- -- # 0 -- 0 0 0 3 0 -- -- -- 0 0 0 0 0 0 -- 0 -- -- Y tl Y M1 Y Y tl M N Y Y Y Y Y Y N Y N N C0*TT3) *-T>JJ fp <t* \nm3'. o x <'iJr JJ Reror Table 1 (Continued) Ethylene Oxide Dominant Lethal Mutagenicity Inhalation Test in Rata Individual Animal Results of Dominant Lethal Data Hating Week Number Female An. No. Mated With Male An. No. First, Second Number Corpora Lutea Number Implantation Sites Number Preimplantation Losses 1 3642 1 3722 1 3697 1 3710 1 3721 1 3664* 1 3676 1 3688 1 3692 1 3695 2 3580 2 3592 2 3588 2 3616 2 3606 2 3602 2 3603 2 3574 2 3622 2 3563 o oo zo TT >H t-1 O m \> Z f* ha n tn j> 4838, 4788 4788, 2819 2862 2883, 4775 4775, 2807 2807, 2711 2819, 2829 2829, 2830 2830 2819 2830, 2829 2829 4788 4775 2862 2883, 2862 2807 4838 2711, 4838 Air Control II (0 ppm EO) 83 __ -- -- 10 6 11 11 -- -- 5 ___ 3 0 -- __ __ -- -- -- -- 10 2 97 12 12 13 9 10 9 12 11 9 11 11 12 11 11 ---- -- -- 8 2 0 4 1 1 0** o** 0 -- (Continued) Number Early Resorption Sites 0 5 0 -- __ -- -- 0 1 2 0 0 0 0 0 1 -- Number' Late Resorption Sites Vn j* Inal PI up. Deter' >`d 0Y II 0Y 1Y N---- N__ D --N --Y 0Y 0 .Y 0Y 0V 0Y 0Y 1V 0Y .0 Y --N >t; > VJ O' itnt "v! r: H n l *-- rn Tahiti 1 (Cont inued) Ethylene Oxide Dominant Lethal Mutagenicity Inhalation Test in Rats Individual Animal Results of Dominant Lethal Data Mating Week Nutnbe r Female An. No. Mated With Male An. No. First, Second Number Corpora Lutea Number Implantation Sites Number Preimplantation Losses Number Early Resorption Sites t Number Late Resorption Sites Vap.f'i.. I [VI > / i d 3 3470 3 3146 3 3157 3 3527 3 3063 3 3488 3 3110 3 3140 3 3105 3 3206 1 3706 1 3682 1 3684 1 3700 1 3675 1 3673 1 3674 1 3680 1 r\ 3703* 1 oo zo 3723 o m \> zp h co O' ir>~ Air Control II (0 ppm E0 - Continued) 4775 2830 2862, 2830 4838 2711, 4838 4788 2819 2829, 2819 2807, 2711 2883, 2862 11 nd -- 7 10 11 10 -- -- -- 5 5 ---- 6 11 7 9 -- -- 6 nd -- 1 0** 4 1 -- -- -- Positive Control (TEM, 0.25 mR/kg) 2857 2793, 2818 2818, 2848 2848, 2857 2775 2745 2774, 2745 2791, 2793 4844, 2775 9 8 9 -- 10 12 -- -- -- 2 4 8 -- 10 11 -- -- -- 7 4 1 -- 0 1 -- -- -- (Continued) 20 40 ---- 60 00 21 10 ---- ---- ---- 20 40 80 ---- 41 5* 1 ---- ---- --" V V II V II1 V Y H N N Y Y Y N Y Y N N N Trn.i) *r*.jj *:; *< zi:i oM 7> Cl n O**tl X CCf C^s1Oi K f Table 1 (Con 11nued) Ethylene Oxide Dominant Lethal Mutagenicity Inhalation Teat In Rats Individual Animal Results of Dominant Lethal Data Mating Week Humber 2 2 2 2 2 2 2 2 2 2 3 3 3 3 3 3 3 3 3 3 Female An. No. Mated With Male An. No. First, Second Number Corpora Lutea Number Implantation Sites Number Preimplantation Losses 3633 3549 3586 3564 3611 3590 3601 3610 3594 3596 Positive Control (TEM, 0.25 mg/kg - Continued) 4844 2738, 4844 2774, 2745 2745 2857, 2848 2775 2818 2848, 2818 2791 2793, 2791 10 10 10 -- 8 10 10 -- -- -- 2 7 4 -- 6 7 9 -- -- -- 8 3 6 -- 2 3 1 -- -- -- 3241 3250 3471 3463 3460 3222 3482 3070 3078 3114 2791 2793, 2791 4844, 2857 2857 2848 2775 2818 2738, 4844 2745 2774 10 -- 11 6 10 16 11 -- -- 1 -- 2 5 3 5 7 -- -- 9 -- 9 1 7 11 4 -- -- Number Early Hesorptlon Sites 0 6 3 -- 0 6 4 -- -- -- 1 -- 2 5 2 2 7 -- -1 Number Late Resorption Sites Vagina Plug Pol net 0Y 0 N1 1Y --V 0Y 0Y 2Y --N --Y --N 0Y --H 0Y 0Y 0Y 2Y 0Y --N --Y Y DO 1 4 7 4 8 7 COMF1 DENTTAl * Female was Incorrectly mated with two males, each from a different treatment group, consequently, results were not included. ** More implantation sites than corpora lutea 1b defined as no (0) preimplantation losses, nd - not determined; Y - yes; N - no 1 The.,number of early and late resorption sites may be,/<ncorrect since no vaginal plug was detected, and ' .t 4 s r / > i> <s' 4< .i fci 'D (' fl> .p r* i1 X it) np^tfr.cix s Tair 10 of i: Table 2 Ethylene Oxide Dominant Lethal Mutogenicitv Inhalation Test in Rats Individual Fertility Results for Males Male An. No. Sueessfully Mated One or Two Females during Mating Weeks 1 2. 3 4847 4774 4786 2710 2734 2771 2842 2854 2898 2899 100 ppm Ethylene Oxide YY Y YY --" ---- ?* 7 Y Y ---- Y " Y 7 " - Y Y " 4797 2715 2779 2826 2841 2864 2865 2726 2747 4811 33 ppm Ethylene Oxide 7Y -Y -9 ---Y -Y -7 7- Y Y -- " Y Y -* Y DO 140488 conftofntia; f.\ Report L~ -s: Appendix B Page 11 of 12 , Table 2 (Continued) Ethylene Oxide Dominant Lethal Mutogenicity Inhalation Test in Rats individual Fertility Results for Males * Male An. No. 2863 2795 2731 2735 4810 4842 4795 2746 2740 2794 Sucessfully Mated One or Two Females during Mating Weeks 12 3 10 ppm Ethylene Oxide YY Y Y? -Y Y YY Y ?Y YY YY YY YY YY 2741 2722 2768 2799 2812 4803 4818 4822 2903 2838 Cl ppm Y - - Y ? Y ? ? Y Y Y Y - Y - - - Y Y Y DO l4P489 r nc* Ti. rL^\rc, kINj tl ti r^i . i, . I Appendix B TV:;- i: of i; Table 2 (Continued) Ethylene Oxide Dominant Lethal Mutogenicity Inhalation Test In Rats Individual Fertility Results for Males Male An. No. 4838 4788 2862 2883 4775 2807 2819 2829 2830 2711 Sucessfully Mated One or Two Females during Mating Weeks 12 3 CII ppm Y YY YY -- YY -Y -Y -Y --- Y Y Y Y Y ? 2857 2793 2818 2848 2775 2745 2774 2791 4844 2738 Positive Control (TEM, 0.25 mg/kg) Y-Y Y. YY YY YY ---Y ? Y - Y Y Y - Y - ^Question mark indicates that male was mated with a female that also was mated with a different male. Since the female did. not throw a vaginal plug (but was pregnant), it is not known which male impregnated the female. 1 ~ -- --~~ ~ i iu r DO 142490 CONFIDENTIAL