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J K Haseman

Publications and source records attributed to J K Haseman.

At least 19 recordsLinked to original sources

1,2,3-Trichloropropane: a multisite carcinogen in rats and mice.

1,2,3-Trichloropropane was evaluated in 2-year toxicology and carcinogenesis studies by the National Toxicology Program. The selection of this chemical for study was based on the potential for human exposure, its positive in vitro genotoxicity, and the carcinogenicity of structurally related chemicals. During the 2-year study 1,2,3-trichloropropane was administered in corn oil by gavage 5 days per week; groups of 60 F344/N rats received 0, 3, 10, or 30 mg/kg, while groups of 60 B6C3F1 mice received 0,6,20, or 60 mg/kg. Because of reduced survival associated with the development of chemical-related neoplasms, rats that received 30 mg/kg were terminated at 65 weeks (females) or 76 weeks (males). Similarly, mice that received 60 mg/kg were terminated at 73 weeks (females) or 79 weeks (males), while groups of mice that received 20 mg/kg were terminated at 88 weeks. 1,2,3-Trichloropropane induced benign and/or malignant neoplasms at multiple sites in both rats and mice; this included increased incidences of benign and malignant neoplasms of the squamous epithelium of the oral mucosa and forestomach of male and female rats, benign neoplasms of the kidney and pancreas and benign or malignant neoplasms of the preputial gland in male rats, malignant neoplasms of the mammary gland, and benign or malignant neoplasms of the clitoral gland in female rats. In mice, 1,2,3-trichloropropane induced a low incidence of malignant neoplasms of the oral mucosa in females, high incidences of benign and malignant neoplasms of the forestomach in males and females, benign neoplasms of the liver and harderian gland of males and females, and uterine neoplasms in females.

Animals

Toxicity and carcinogenicity of 2,3-dibromo-1-propanol in F344/N rats and B6C3F1 mice.

2,3-Dibromo-1-propanol is a metabolite of the flame retardant tris(2,3-dibromopropyl) phosphate, previously shown to be a mutagen and carcinogen in experimental animals. Toxicology and carcinogenesis studies of 2,3-dibromo-1-propanol were conducted by applying the chemical in 95% ethanol to the interscapular skin of male and female F344/N rats and B6C3F1 mice 5 days a week for 13 weeks in the prechronic study and 48-55 weeks (rats) or 36-42 weeks (mice) in the carcinogenicity study. In the 13-week study, 10 rats and 10 mice of each sex received doses of 0, 44, 88, 177, 375, or 750 mg/kg. Deaths associated with chemical application occurred only in the high-dose (750 mg/kg) male mice. Chemical-related lesions were seen in the kidney of male rats, liver of female rats, and liver and lung of both sexes of mice. Based on the toxicity observed in the 13-week study, 50 rats of each sex received doses of 0, 188, or 375 mg/kg and 50 mice of each sex received 0, 88, or 177 mg/kg in the carcinogenicity study. The planned 2-year study was terminated early because of reduced survival of rats related to chemical-induced neoplasia and because of the appearance of antibodies to lymphocytic choriomeningitis virus in sentinel mice. Nearly all dosed rats had malignant neoplasms at one or more sites, while only one control male and one control female had malignant neoplasms. In rats, neoplasms induced by 2,3-dibromo-1-propanol occurred in the skin, nasal mucosa, Zymbal's gland, oral mucosa, esophagus, forestomach, intestines, liver, kidney, mammary gland (females), clitoral gland (females), spleen (males), and mesothelium (males). In mice, chemical-induced neoplasms occurred in the skin, forestomach, liver (males), and lung (males).

1-Propanol

Data analysis: statistical analysis and use of historical control data.

Survival-adjusted methods for the statistical analysis of tumor data from long-term rodent carcinogenicity studies are described. Although most of these methods require knowledge of whether individual tumors are "fatal" or "incidental," such determinations may be difficult. Several methods for dealing with this and with other data analysis issues are discussed. Historical control tumor data may be useful in the interpretation of rodent carcinogenicity studies, particularly for rare tumors and for borderline effects. Although statistical methods are available for using historical control data in a formal testing framework, the primary difficulty is establishing a database that is truly comparable to the study under evaluation with respect to those factors known to influence tumor occurrence. Major sources of variability in tumor incidence include the animal room environment, dietary factors/body weight, gross necropsy and slide preparation procedures, and histopathology diagnosis. The National Toxicology Program's use of historical control data is briefly described and illustrated.

Adrenal Cortex Neoplasms

Comparative carcinogenicity of ethylene thiourea with or without perinatal exposure in rats and mice.

Chronic toxicity and carcinogenicity studies of ethylene thiourea (ETU), 97% pure, were conducted in F344/N rats and B6C3F1 mice of each sex. The major objective of the study was to determine if incorporation of perinatal exposure, in addition to the conventional exposure of young adult animals for 2 years, enhances the sensitivity of the bioassay in identification of the carcinogenic potential of chemicals when compared to the conventional exposure of animals to a chemical for 2 years, usually beginning at the age of 6-8 weeks. The studies were designed to determine (1) the toxic and carcinogenic effects of dietary ETU in rats and mice receiving perinatal exposure up to 8 weeks of age followed by control diet for 2 years, (2) the effects of ETU in rats and mice receiving exposure for 2 years beginning at the age of 8 weeks, and (3) the effects of combined perinatal/adult exposure to ETU (perinatal exposure to 8 weeks of age followed by the adult exposure for 2 years). During the perinatal period, rats were exposed to dietary ETU concentrations ranging from 9 to 90 ppm and adult exposure concentrations ranged from 25 to 250 ppm. In the mice, the perinatal exposure concentrations of ETU in the diet ranged from 33 to 330 ppm, and in the adults the concentrations were 100 to 1000 ppm. A total of eight exposure groups (including controls) were used with 60 animals in each group. Ten animals from each group were killed at Month 9 of the study for interim evaluation. The thyroid gland in rats and mice and the liver in mice were identified as target organs of ETU toxicity at the 9-month interim evaluation. The perinatal only exposure to ETU was not carcinogenic in rats or mice, while adult or perinatal/adult combination exposures to ETU were carcinogenic both in rats and in mice. The thyroid gland was the major site of ETU carcinogenicity both in rats and in mice. The liver and pituitary glands were other major sites of ETU carcinogenicity in mice. The carcinogenic effects of ETU were generally similar by adult and perinatal/adult combination protocols except that the incidences of thyroid tumors were slightly higher in the rats receiving the perinatal/adult combination of ETU exposure in the diet.

Animals

An examination of the association between maximum-tolerated dose and carcinogenicity in 326 long-term studies in rats and mice.

The association between rodent carcinogenicity and maximum-tolerated dose (MTD) was evaluated in 326 long-term carcinogenicity studies in mice and rats. Others investigating this association have focused primarily on positive studies, but our investigation considered all experimental outcomes. We found that chemicals with low MTDs were somewhat more likely to be rodent carcinogens than chemicals with high MTDs, but this association was limited primarily to gavage studies. Overall, the MTD was not a reliable predictor of whether or not a chemical would be a rodent carcinogen. Our investigation confirms that comparisons of carcinogenic potencies based only on positive studies may result in artifactually elevated estimates of the underlying association between chemical toxicity and rodent carcinogenicity and thus may also inflate the estimated interspecies correlation in carcinogenic response. Nevertheless, the results of our study are consistent with the frequently cited 75% concordance in carcinogenicity outcome between rats and mice. This concordance is quite high, particularly since 80% is approximately the maximum level of observable interspecies concordance achievable for a set of chemicals with relatively low carcinogenic potency, because of the variability in observed tumor responses that can induce false negative or false positive outcomes in either of the two species. Thus, the underlying qualitative interspecies correlation in carcinogenic response between rats and mice may be greater than is commonly recognized.

Animals

Toxicity and carcinogenicity of hydroquinone in F344/N rats and B6C3F1 mice.

Toxicology and carcinogenesis studies were conducted by administering hydroquinone (more than 99% pure) by gavage to groups of F344/N rats and B6C3F1 mice of each sex for 14 days, 13 wk or 2 yr. 14-day studies were conducted by administering hydroquinone in corn oil to rats at doses ranging from 63 to 1000 mg/kg body weight and to mice at doses ranging from 31 to 500 mg/kg, 5 days/wk. In the 13-wk studies, doses for rats and mice ranged from 25 to 400 mg/kg. At those doses showing some indication of toxicity in the 14-day and 13-wk studies, the central nervous system, forestomach and liver were identified as target organs in both species and renal toxicity was observed in rats. Based on these results, 2-yr studies were conducted by administering 0, 25 or 50 mg hydroquinone/kg in deionized water by gavage to groups of 65 rats of each sex, 5 days/wk. Groups of 65 mice of each sex were given 0, 50 or 100 mg/kg on the same schedule. 10 rats and 10 mice from each group were killed and evaluated after 15 months. Mean body weights of high-dose male rats and high-dose mice were approx. 5-14% lower than those of controls during the second half of the study. No differences in survival were observed between dosed and control groups of rats or mice. Nearly all male rats and most female rats in all vehicle control and exposed groups had nephropathy, which was judged to be more severe in high-dose male rats. Hyperplasia of the renal pelvic transitional epithelium and renal cortical cysts were increased in male rats. Tubular cell hyperplasia of the kidney was seen in two high-dose male rats, and renal tubular adenomas were seen in 4/55 low-dose and 8/55 high-dose male rats; none was seen in vehicle controls or in female rats. Mononuclear cell leukaemia in female rats occurred with increased incidences in the dosed groups (vehicle control, 9/55; low dose, 15/55; high dose, 22/55). Compound-related lesions observed in the liver of high-dose male mice included anisokaryosis, syncytial alteration and basophilic foci. The incidences of hepatocellular neoplasms, primarily adenomas, were increased in dosed female mice (3/55; 16/55; 13/55). Follicular cell hyperplasia of the thyroid gland was increased in dosed mice.(ABSTRACT TRUNCATED AT 400 WORDS)

Administration, Oral

Liver carcinogenesis by methyl carbamate in F344 rats and not in B6C3F1 mice.

Short-term and long-term carcinogenicity of methyl carbamate (MCB) was evaluated in F344 rats and B6C3F1 mice. In experiments lasting 6, 12, and 18 months, MCB was given in water by gavage to groups of 10 male and 10 female rats at 0 or 400 mg/kg body weight, 5 days per week, and to similar groups of mice at 0 or 1,000 mg/kg. At 6 months, MCB induced atypical mitoses, cytologic alterations, cytomegaly, pigmentation, necrosis, and neoplastic nodules of the liver in rats. At 12 and 18 months, carcinomas of the liver were induced by MCB in 80-90% of male rats and in 60-80% of female rats. None was observed in control rats or in mice. In the 2-year studies, MCB was given to groups of 50 male and 50 female rats at 0, 100, or 200 mg/kg and to similar groups of mice at 0, 500, or 1,000 mg/kg, 5 days/week. Chronic focal inflammation, cytologic alteration, hyperplasia, and neoplastic nodules and carcinomas (200 mg/kg groups only) of the liver were induced by MCB in rats. Liver tumor incidence data for combined experiments in rats were: males--5% in controls, 0% in 100 mg/kg group, 14% in 200 mg/kg group, and 77% in 400 mg/kg group; females--5% in controls, 0% in controls, 0% in 100 mg/kg group, 12% in 200 mg/kg group, and 63% in 400 mg/kg group. MCB was not shown to be carcinogenic in mice.

Animals

Effects of corn oil, time-related changes, and inter-laboratory variability on tumor occurrence in control Fischer 344 (F344/N) rats.

Survival, body weight, and site-specific tumor rates in untreated, corn oil gavage, and water gavage control Fischer 344 (F344/N) rats from 88 National Toxicology Program (NTP) long term carcinogenicity studies were evaluated to determine which factors were primarily responsible for inter-study variability. For male rats, previously-reported decreases in leukemia and increases in body weight, survival, and pancreatic acinar cell tumors attributable to corn oil gavage were confirmed. Corn oil did not appear to affect tumor rates in female rats. The gavage technique per se did not appear to influence tumor rates in rats of either sex. Previously reported time-related increases in certain site-specific neoplasia in control rats appeared to have stabilized in recent years, but control tumor rates are still much greater than those seen a decade ago. More recent studies continue to show increasing rates of leukemia and mammary gland tumors and decreasing survival. Female rats also continue to show time-related increases in maximum mean body weight. Inter-laboratory variability in body weight and in the rates of a number of site-specific neoplasms were also significant. High mean body weights in control groups were found to be associated with increased rates of mammary and pituitary tumors. Our evaluation supports the view that if historical control data are to be utilized in the interpretation of experimental results, primary emphasis should be given to lab and route of administration-specific tumor rates for studies that are contemporary to the study under evaluation. It also suggests that certain experimental design changes (e.g., dietary modifications) may be needed to reduce tumor rates and to increase survival.

Animals

Results and conclusions of the National Toxicology Program's rodent carcinogenicity studies with sodium fluoride.

The US National Toxicology Program (NTP) has conducted toxicity and carcinogenicity studies with sodium fluoride administered in the drinking water to F344/N rats and B6C3F1 mice. The drinking water concentrations used in the 2-year studies were 0, 25, 100, or 175 ppm sodium fluoride (equivalent to 0, 11, 45 or 79 ppm fluoride). Survival and weight gains of rats and mice were not affected by fluoride treatment. Animals receiving sodium fluoride developed effects typical of dental fluorosis, and female rats given 175 ppm had increased osteosclerosis. There were no increases in neoplasms in female rats or in male or female mice that were attributed to sodium fluoride administration. There was equivocal evidence of carcinogenic activity of sodium fluoride in male rats based on the occurrence of a small number of osteosarcomas in treated animals.

Animals

Inhalation of tetranitromethane causes nasal passage irritation and pulmonary carcinogenesis in rodents.

Fischer 344 rats and B6C3F1 mice were exposed for 2 years to vapors of tetranitromethane at concentrations below (0.5 ppm) and slightly above (2 or 5 ppm) the current U.S. recommended occupational exposure limit. Under the conditions of exposure of 6 h/day, 5 days/week, tetranitromethane was found to cause mild irritation and hyperplastic lesions in the nasal passages, but not nasal cavity neoplasms were observed. In contrast, nearly all animals exposed to the higher TNM concentrations, and the majority of animals exposed to the lower concentrations developed alveolar/bronchiolar adenoma or carcinoma; squamous cell neoplasms of the lung also occurred in exposed rats. The extent of the lung tumor response, and the low concentrations of tetranitromethane required for this response, are unprecedented in National Toxicology Program (NTP) studies.

Adenocarcinoma, Bronchiolo-Alveolar

Statistical methods for analyzing developmental toxicity data.

A description and review of methods for performing per-litter analyses involving extrabinomial proportion response is provided. It is stressed that the litter should be regarded as the appropriate experimental unit for quantitative analysis in studies for teratogenic or heritable mutagenic effects. Attention is directed at statistical identification of possible treatment effects, such as a positive dose response to a chemical stimulus. The methods range from distribution-free, nonparametric analyses to models involving parametric distributions such as the beta-binomial density. It is seen that most current methods require computer implementation. When concern is raised over misspecification of assumptions critical to the statistical analysis, it is argued that relatively parameter-free methods are appropriate for use. These include statistical bootstrapping and rank-based analyses.

Models, Statistical

Comparative toxicity and carcinogenicity studies of tetracycline and oxytetracycline in rats and mice.

Two-year toxicity and carcinogenicity studies of oxytetracycline hydrochloride and tetracycline hydrochloride, two structurally similar and widely used antibiotics, were performed in F344/N rats and B6C3F1 mice. Rats and mice were continuously exposed via their diet to the following levels of antibiotic: oxytetracycline HCl--rats 0, 25,000, or 50,000 ppm; mice 0,6,300, or 12,500 ppm; tetracycline HCl--rats and mice 0, 12,500, or 25,000 ppm. On a milligram per kilogram of body weight basis these exposures represent doses that are 20 to 140 times daily human therapeutic doses. Dose-related increased survival was noted among oxytetracycline-treated male rats and tetracycline-treated female rats and male mice, while treatment-related reduced body weight gain occurred in oxytetracycline- and tetracycline-treated mice. Microscopic changes included fatty metamorphosis and focal cellular change in livers of oxytetracycline-treated male rats and basophilic cytoplasmic and clear cell change in livers of tetracycline-treated male rats. The only neoplastic changes were a marginally increased trend in pheochromocytoma of the adrenal medulla (equivocal evidence only) among oxytetracycline-exposed male rats (12/50 controls, 19/50 low dose, 24/50 high dose) and an increased incidence of pituitary adenoma or adenocarcinoma among high-dose oxytetracycline-treated female rats (20/50 controls, 32/50 high dose). Although oxytetracycline and tetracycline appeared to increase the incidence of pituitary hyperplasia in high-dose male and female rats, respectively, the total incidence of proliferative changes (hyperplasia, adenoma, and adenocarcinoma) was not affected by antibiotic exposure. The results from these studies therefore support the notion that neither antibiotic is carcinogenic in rodents. There were several negative trends suggesting possible protective effects by both these tetracycline analogs against certain spontaneous neoplastic and non-neoplastic changes.

Animals

Carcinogenicity of p-chloroaniline in rats and mice.

p-Chloroaniline (PCA), a dye intermediate, was evaluated for potential long-term toxicity and carcinogenicity. Groups of 50 F344/N rats of each sex were given by gavage PCA hydrochloride in deionized water at doses of 0, 2, 6 or 18 mg/kg body weight, 5 days/wk for 103 wk. Groups of 50 male and female B6C3F1 mice of each sex were given 0, 3, 10 or 30 mg/kg on the same schedule. In general, body weights and survival were unaffected by PCA administration. In rats the group given 18 mg/kg had mild haemolytic anaemia and slight increases in methaemoglobin at various times during the study. Fibrosis of the spleen was significantly increased in all PCA-treated groups of male rats and in the 18-mg/kg group of female rats. Sarcomas of the spleen occurred in male rats, their incidence being 0/49, 1/50, 3/50 and 38/50 in control low-, mid- and high-dose groups, respectively. There was a slightly increased incidence of pheochromocytomas of the adrenal gland in both male and female rats. Dosed groups of male mice had increased incidences of hepatocellular adenomas or carcinomas (11/50, 21/49, 20/50 and 21/50 in controls, low- mid- and high-dose groups, respectively). Haemangiosarcomas of the liver or spleen were also increased in the high-dose group (incidences of 4/50, 4/49, 1/50 and 10/50 in controls, low-, mid- and high-dose groups, respectively). In conclusion, PCA was carcinogenic in male rats and male mice.

Adenoma

Carcinogenesis studies of dichlorvos in Fischer rats and B6C3F1 mice.

Dichlorvos (dichlorovinyl dimethyl phosphoric acid ester) is a cholinesterase inhibitor used widely as a contact and stomach insecticide for control of internal and external parasites. Carcinogenesis studies were conducted by administering dichlorvos in corn oil by gavage 5 times a week for 103 weeks to groups of 50 male and 50 female Fischer rats at 0, 4, or 8 mg/kg body weight, to groups of 50 male B6C3F1 mice at 0, 10, or 20 mg/kg, and to groups of 50 female B6C3F1 mice at 0, 20, or 40 mg/kg. During the course of the studies, body weights and survival rates of the male and female rats and mice were not different from those of their respective controls; females of both species appeared to gain more weight than controls. Neoplasms induced by dichlorvos included adenomas of the exocrine pancreas (male rats), mononuclear cell leukemia (male rats), and squamous cell papilloma of the forestomach (male and female mice; two other female mice had squamous cell carcinomas). Lesions observed in female rats that may have been due to dichlorvos administration included adenomas of the exocrine pancreas and fibroadenomas of the mammary gland. The results demonstrated that dichlorvos is carcinogenic for Fischer rats and B6C3F1 mice.

Adenoma

Toxicity and carcinogenicity studies of nalidixic acid in rodents.

Toxicity and carcinogenicity studies of nalidixic acid, an antimicrobial agent used to treat bacterial infections of the urinary tract, were conducted in F344/N rats and B6C3F1 mice of each sex for 13 weeks or 2 years. In the 13-week studies, nalidixic acid was administered at dietary concentrations ranging from 1,000 to 16,000 ppm. Body weights of both rats and mice were reduced in the groups receiving diet containing 8,000 and 16,000 ppm, and feed consumption of rats in the highest treatment groups was approximately two-thirds that of controls. Degeneration of the germinal epithelium in the seminiferous tubules of the testis was observed in male rats that received 16,000 ppm; no other compound-related histopathologic effects were observed in either species. Two-year studies were conducted by feeding diets containing 0, 2,000, or 4,000 ppm nalidixic acid to groups of 50 rats and mice/sex/group. The average daily feed consumption was slightly reduced compared to control groups and resulted in approximate daily doses of 82 or 175 mg nalidixic acid/kg for low dose and high dose rats, and 220 or 475 mg/kg for low dose and high dose mice. Mean body weights of dosed rats and mice were lower than those of controls, except for groups of low dose female rats and male mice. The incidences of preputial gland neoplasms in dosed male rats and of clitoral gland neoplasms in dosed female rats were significantly increased compared to those in controls; responses in low dose groups were similar to those in high dose groups. There were decreased incidences of leukemia and mammary gland neoplasms in dosed female rats and of pituitary gland neoplasms in dosed male rats. Subcutaneous tissue fibrosarcomas were marginally increased in dosed male mice. There were no increased incidences of neoplasms in dosed female mice. Under the conditions of these studies, the dietary administration of nalidixic acid was carcinogenic for rats, causing preputial gland or clitoral gland neoplasms in males and females, respectively. The association of subcutaneous neoplasms with administration of nalidixic acid to male mice was equivocal.

Animals

Evaluation of four in vitro genetic toxicity tests for predicting rodent carcinogenicity: confirmation of earlier results with 41 additional chemicals.

The effectiveness of four in vitro short-term tests (STT) for genetic toxicity, induction of mutations in Salmonella (SAL) and mouse lymphoma L5178Y cells (MLA), and induction of sister chromatid exchanges (SCE) and chromosome aberrations (ABS) in Chinese hamster ovary cells that are used for predicting rodent carcinogenicity were examined. The in vitro results were compared with the results from 41 rodent carcinogenicity studies performed by the National Toxicology Program. The predictive values of, and interrelationships among, the STT for these 41 chemicals were similar to those previously reported for 73 chemicals and confirm those earlier results [Tennant RW, Margolin BH, Shelby MD, Zeiger E, Haseman JK, Spalding J, Caspary W, Resnick M, Stasiewicz S, Anderson B, Minor R (1987): Science 236:933-941]. Because of this similarity among the two datasets, the chemicals were combined into a single dataset of 114. The results with 114 chemicals show that SAL had the lowest sensitivity (.48) and the highest specificity (.91), whereas MLA had the highest sensitivity (.72) and the lowest specificity (.40). The concordances of the test results with rodent carcinogenicity were .66, .61, .59, and .59, for SAL, ABS, SCE, and MLA, respectively. Salmonella was the most predictive for carcinogenicity; 89% of the chemicals mutagenic in SAL were carcinogenic in rodents, however a negative result in any or all of the STT was not indicative of noncarcinogenicity. The STT results reported here show good agreement with the potential electrophilicity of the chemicals, and the majority of carcinogens that are undetected by the STT do not have an electrophilic structure. There was no complementarity among the tests and no combination of the four tests was more effective than any single test for predicting carcinogenicity.

Animals

Carcinogenicity results for 114 laboratory animal studies used to assess the predictivity of four in vitro genetic toxicity assays for rodent carcinogenicity.

Carcinogenicity results are presented for 114 long-term rodent studies carried out by the National Toxicology Program. Tumor rates are given for each positive or equivocal effect observed in 67 studies judged to show carcinogenic effects and in the 17 studies that show equivocal effects. The liver was found to be the most common site of carcinogenicity for both mice and rats; other frequent target sites included the lung, kidney, hematopoietic system, forestomach, thyroid gland, and mammary gland. The evaluative approach used in reaching decisions regarding the carcinogenicity of chemicals is discussed. No rigid statistical decision rules were employed, and biological as well as statistical factors were considered in the overall evaluation of the data. These long-term studies were utilized in a comprehensive evaluation of the ability of four in vitro genetic toxicity tests to predict rodent carcinogenicity. Details concerning these procedures and the results of this investigation are given elsewhere [Zeiger E, Haseman JK, Shelby MD, Margolin BH, Tennant RW 1990: Environ Mol Mutagen 16 (Supp. 18):1-14]. Interestingly, those chemicals evaluated at relatively low doses in the rodent experiments (because of the underlying toxicity of the chemicals) were far more likely to be positive in each of the four genetic toxicity assays than were "less toxic" chemicals evaluated in higher doses in the rodent studies.

Animals