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Biomedical subjects

E E McConnell

Publications and source records attributed to E E McConnell.

At least 19 recordsLinked to original sources

Pulmonary toxicity of inhaled polypropylene fibers in rats.

This study was initiated to assess the pulmonary toxicity of a polyolefin fiber composed of polypropylene in male Fischer 344 rats after 90 days of inhalation exposure. To increase fiber respirability in the rodent, polypropylene fibers were size-selected before aerosolization to have a geometric mean diameter of 1.6 microns (46% < 1 micron) and a geometric mean length of 30.3 microns. Three groups of animals were exposed in nose-only inhalation chambers, 6 hr/day, 5 days/week, for 90 days to 15, 30, or 60 mg/m3 of polypropylene, or filtered air (negative control). Microscopic examination of the polypropylene fiber-exposed lungs revealed that, at all time points examined in the study, there was a dose-dependent increase in pulmonary macrophages. These minimal or mild increases in cellularity appeared to be reversible, especially at the lower doses 30 days post exposure. No fibrosis was observed in any of the groups. A strong correlation was found between the external exposure concentration, the time of exposure, and the lung fiber burden. The number of partially degraded (segmented) fibers within the lung increased with the exposure concentration and period of exposure, as well as with the period of recovery after termination of exposure at 90 days. Fibers were recovered from exposed lungs using a hypochlorite digestion technique.

Administration, Inhalation

Approaches to evaluating the toxicity and carcinogenicity of man-made fibers: summary of a workshop held November 11-13, 1991, Durham, North Carolina.

The Workshop on Approaches to Evaluating the Toxicity and Carcinogenicity of Man-Made Fibers (MMF) was held in Durham, North Carolina, on November 11-13, 1991. The goal of the workshop was to reach a consensus, or to determine the extent to which a consensus existed, in two areas. Participants were asked to identify scientifically sound approaches for evaluating the toxicity and carcinogenicity of man-made fibers based on today's science and to determine research appropriate for study during the next 5 years that can provide an improved scientific basis for future revisions of approaches used to evaluate man-made fiber toxicity and carcinogenicity. During the first day, a series of "state of knowledge" presentations were made to provide all participants with a common data base from which to interact and discuss scientific issues. The workshop participants were assigned to one of four discussion groups, which met separately in three half-day sessions following the first day of presentations. All groups discussed the same topics: exposure assessment, hazard identification, and dose-response information needed to integrate to characterize risk in the first session; approaches to obtaining the needed information in the second session; and recommended approaches and guidelines for evaluating the toxicity and carcinogenicity of MMF and research needs in the third session. The workshop participants reconvened as a whole after each discussion session, and one member from each group reported the group's conclusions. A closure period was also included at the end of the workshop for review and discussion of items that had been considered during the workshop. The primary conclusions reached were the following: -All fiber types capable of depositing in the thorax are not alike in their pathogenic potential. -Only fiber samples with dimensions similar to those to which humans can inhale should be tested. -A complete characterization (i.e., dimensions, fiber number, mass, and aerodynamic diameter) of the fiber aerosol and retained dose is essential. -Appropriate aerosol generation methods must be used for inhalation studies in order to preserve fiber lengths. -A tiered approach to toxicity evaluation is recommended that includes: 1. In vitro screening for durability, surface properties, cytotoxicity, and similar properties, etc; 2. Short-term inhalation or other in vivo studies; 3. That chronic inhalation studies are the "gold standard" (i.e., provide most appropriate data for risk characterization). -The rat is the most appropriate species for inhalation studies. -In chronic inhalation studies, animals should be retained to at least 20% survival after 2-year exposure. -Serial lung burden analyses are an essential component of inhalation studies and are essential for understanding exposure-dose-response relationships. -Studies oriented to understanding mechanisms of toxicity and carcinogenicity are important adjuncts to traditional toxicity studies. -Histopathological analyses of tissues of the respiratory tract represent primary endpoints for evaluating effects of inhaled fibers. Major effects include pulmonary fibrosis, lung tumors, and mesotheliomas. Experimental tissues should be archived for future studies; wherever possible, handling and preservation of tissues should be done in a way that maximizes their future use in mechanistic studies. -Potential human exposures throughout the entire life-cycle of the fiber must be considered and fibrous material for toxicologic studies prepared accordingly. -Intracavity studies are inappropriate for risk characterization but can play a useful screening role in assessing fiber toxicity.(ABSTRACT TRUNCATED AT 400 WORDS)

Animals

Thyroid follicular cell carcinogenesis: results from 343 2-year carcinogenicity studies conducted by the NCI/NTP.

The National Toxicology Program data base on 343 mouse and rat carcinogenesis studies was reviewed to determine the frequency of and relationship between hyperplastic and neoplastic follicular lesions of the thyroid gland. The frequency of chemically related lesions in the thyroid was also compared to neoplastic lesions in the liver to investigate a possible correlation. The percentage of studies observed to have positive or equivocal chemically related thyroid proliferative lesions was rats: male, 14%, female, 11%; mice; male, 8%; female, 9%. When positive in one sex for a given chemical, there was a 60-80% chance of it being positive in the other sex of the same species, although interspecies correlation was not as strong. Thyroid follicular cell neoplasia without hyperplasia was uncommon in mice but was common in rats. Chemicals that caused thyroid proliferative changes were more likely (P less than 0.05) to produce liver neoplasms (both within and between species) than were chemicals causing no thyroid changes. However, this correlation was far from perfect, with many chemicals producing thyroid proliferative lesions, but not liver neoplasms and vice versa. This suggests that universal correlations are not supportable by the data and that individual chemicals should be evaluated on a case-by-case basis.

Adenocarcinoma

NTP carcinogens--interpretational problems.

The National Toxicology Program (NTP) was established in 1978 with the broad goal of strengthening the science base of chemical toxicity, thus providing better information to regulatory and research agencies. Since that time the NTP has conducted in-depth toxicity/carcinogenesis studies on over 200 chemicals of importance to industry, the public at large and the general environment; clearly the largest such database in the world. This database is unique in that it represents an objective fairly standard accumulation of peer-reviewed information on a myriad of chemicals composed of various chemical classes, non-carcinogens as well as carcinogens. The results of these studies are reported as "no evidence, equivocal evidence, some evidence or clear evidence of carcinogenic activity" in a single sex/species. There is also an "inadequate" category for studies that have major limitations. Although noted, no attempt is made to give added weight to chemicals which cause neoplasms at multiple sites, at rare versus common sites, in both species/sexes, which occur early in the study, at low as well as high doses, or those observed in the presence or absence of toxicity (necrosis, degeneration, etc.) in the same organ. Such observational data may serve as "markers" or "alerts" for whether a chemical's in vivo carcinogenic activity is the result of mutagenic or non-mutagenic activity.

Animals

Toxicology and carcinogenesis studies of two grades of pentachlorophenol in B6C3F1 mice.

Toxicology and carcinogenesis studies of pentachlorophenol (penta), a biocide used primarily as a wood preservative, were conducted by feeding diets containing a technical-grade composite or Dowicide EC-7 (a commercial grade with lower levels of contaminants) to groups of B6C3F1 mice. Based primarily on liver lesions (hepatocellular necrosis, degeneration, and cytomegaly) observed in 6-month studies, diets containing 100 or 200 ppm technical-grade pentachlorophenol or 100, 200, or 600 ppm EC-7 were fed to groups of 50 male and 50 female mice for 2 years. Control groups consisted of 35 animals. For the most part, mean body weights of mice exposed to technical-grade penta were comparable to those of controls. During the second year, the 600-ppm EC-7 female mice averaged 85% of the control body weights. Feed consumption by exposed mice was similar to that by controls. The average daily doses of penta were approximately 0, 17-18, 35, or 114-118 (EC-7) mg/kg. Survival of mice did not appear to be significantly affected by exposure to either technical penta or EC-7 at the doses used in these studies; survival of the control male mice (technical-grade) was comparatively low. Compound-related neoplasms were observed in three organs/systems: liver, adrenal gland medulla, and vascular endothelium. Dose-related increases of hepatocellular adenomas and of carcinomas were observed in male and female mice exposed to both technical penta and EC-7, although the increase was less marked in females exposed to technical penta. Pheochromocytomas of the adrenal gland in exposed male mice were significantly greater than those in controls for both technical penta and EC-7. These neoplasms were also increased in female mice exposed to EC-7 but not to technical penta. Hemangiosarcomas in the spleen and/or liver were increased in female mice that received technical penta and EC-7. The results of these studies show that both technical penta and Dowicide EC-7 are carcinogenic for mice, causing neoplasms in multiple organs/systems. In addition, the results suggest that the carcinogenic responses were due almost exclusively to penta itself, with possibly a minimal potentiating influence by the contaminants in the induction of liver neoplasms in male mice.

Animals

Forestomach neoplasms in Fischer F344/N rats and B6C3F1 mice exposed to diglycidyl resorcinol ether--an epoxy resin.

Repeated dose (14 days), subchronic (13 wk) and chronic (2 yr) studies were carried out in succession to evaluate the toxic and carcinogenic effects of diglycidyl resorcinol ether (DGRE), a liquid spray epoxy resin, in F344/N rats and B6C3F1 mice. DGRE in corn oil was administered by gavage for 14 consecutive days in the repeated dose study and 5 days/wk in the subchronic and chronic studies. The mortality rate was increased in rats and mice in the repeated dose and subchronic studies. Hyperkeratosis, basal cell hyperplasia and squamous cell papillomas of the forestomach were observed in a few treated rats and mice in the subchronic study. Based on the results of the subchronic study, F344/N rats and B6CF1 mice (50 males and 50 females/species/dose) were administered DGRE (rats--0, 12, 25 and 50 mg/kg body weight, mice--0, 50 and 100 mg/kg body weight) in corn oil by gavage 5 days/wk for 103 wk. The incidence of neoplastic and non-neoplastic changes of the forestomach was increased in rats and mice in the chronic study. Under the conditions of the study, DGRE is considered to be carcinogenic to F344/N rats and B6C3F1 mice.

Animals

The impact of toxicity on carcinogenicity studies: implications for risk assessment.

This paper explores the inter-relationship between toxicity, genotoxicity, and carcinogenicity in laboratory rodents. To our knowledge this is the first attempt to integrate these factors and evaluate their implications for the process of risk assessment. The evaluation is based on information obtained from 2-year laboratory-animal studies involving 99 chemicals. The data suggest that only seven of the 53 positive carcinogenicity studies exhibited the types of target organ toxicity that could have been the cause of all observed carcinogenic effects. Furthermore, no apparent difference in mutagenicity as measured by the Ames Salmonella assay was observed between 'high dose only' carcinogens and the entire set of carcinogens. These findings suggest that the number of chemical carcinogens that we can identify solely through rodent studies as being potential tumor inducers through some indirect mechanism is small. Generally speaking, the identification of histopathological effects is not sufficient in itself for justifying mechanistic assumptions, and supplemental biological information will be necessary to reach definitive conclusions.

Animals

Comparative results of 327 chemical carcinogenicity studies.

The National Cancer Institute (NCI) and the National Toxicology Program (NTP) have carried out a number of laboratory animal carcinogenicity studies and presented the results of these experiments in a series of Technical Reports. This paper tabulates the results of the 327 NCI/NTP studies carried out to date on 308 distinct chemicals, and discusses certain issues relevant to the evaluation of carcinogenicity in these experiments. This compilation of results from NCI/NTP carcinogenicity experiments provides a large database that can be used to study structure-activity correlations, interspecies concordance, and associations between laboratory animal carcinogenicity and other toxicological effects.

Animals

Comparison of site-specific and overall tumor incidence analyses for 81 recent National Toxicology Program carcinogenicity studies.

Eighty-one recent carcinogenicity studies carried out by the National Toxicology Program (NTP) were evaluated to determine how the utilization of statistical analyses based on the proportion of animals with primary tumors (all sites) or the proportion of animals with malignant neoplasms (all sites) affected the interpretation of the data compared to analyses of site-specific effects. Utilizing site-specific analyses, the NTP concluded that 45 of the 81 studies (56%) showed carcinogenic responses, 7 (9%) produced equivocal effects, and 29 (36%) showed no evidence of carcinogenicity. An analysis of tumors at all sites often resulted in site-specific carcinogenic responses going undetected. Less than half of the 45 carcinogens identified as producing site-specific carcinogenic responses showed a significant increase in the incidence of primary tumors (22 chemicals) or malignant tumors (21 chemicals). Among the 29 chemicals interpreted as not carcinogenic based on site-specific effects, only two showed significant increases in overall tumor incidence. Two major problems are associated with an evaluation based on overall (all sites) tumor rates: The pooling of various tumor types reduces study sensitivity for detecting chemically related increases in site-specific tumor incidences, and the biological relevance of combining the incidences of tumors of varying morphologies and topographies is questionable. Most national and international guidelines for studying chemicals for carcinogenicity in rodents (or in humans) emphasize site-specific effects. Thus, despite purported advantages of analyses based on overall tumor rates (e.g., simplicity; reducing concerns regarding false positive results) primary emphasis should continue to be on site-specific analyses.

Animals

National Toxicology Program nomenclature for hepatoproliferative lesions of rats.

Diagnostic criteria for hepatoproliferative lesions of Fischer 344 rats are presented to permit more complete categorization of the spectrum of lesions observed in two-year chemical carcinogenicity studies. A nomenclature recently adopted by the National Toxicology Program differs from previous classification schemes in that hepatocellular hyperplasia and hepatocellular adenoma are to be used for lesions which were previously combined under the diagnosis of neoplastic nodule. The term hyperplasia is reserved for proliferative lesions that are perceived to be secondary, nonneoplastic responses to degenerative changes in the liver. Foci of cellular alteration, hepatocellular adenoma, and hepatocellular carcinoma are believed to represent a spectrum of changes that comprise the natural history of neoplasia. This change in nomenclature was made subsequent to a peer review of representative hepatoproliferative lesions from two-year carcinogenicity studies. The revised nomenclature is consistent with traditional pathologic diagnoses for proliferative lesions in other epithelial tissues and should facilitate the interpretation of conventional toxicity and carcinogenicity studies in rats. Morphologic features of other selected rat liver lesions are also presented.

Animals

Guidelines for combining neoplasms for evaluation of rodent carcinogenesis studies.

In a continuing review of long-term toxicology and carcinogenesis studies in rats and mice, the National Toxicology Program (NTP) is confronted with many problems concerning the interpretation of tumor data. A frequently raised question is: "Should certain neoplasms be combined for overall assessment of rodent carcinogenesis data?" NTP policy is that certain neoplasms may be combined for statistical assessment of tumor data and that hyperplastic responses may be used as supportive evidence. The primary reason for combining neoplastic lesions is to gain more insight into the evidence of the carcinogenicity of a given chemical in that species of animal. This report gives the rationale, criteria, and guidelines used by the NTP for combining neoplasms for the evaluation of long-term rodent toxicology and carcinogenesis studies. The guidelines are based mainly on lesions occurring in the F344/N inbred rat and (C57BL/6 X C3H)F1 mouse and may or may not be appropriate for other strains or species. The concepts of combining neoplasms and sites should be viewed in terms of the study as a whole, since tumor formation is only one of many responses caused by chemicals in mammals. The resulting information becomes part of the "weight of the evidence" for estimating the potential hazard of a given chemical.

Animals

Malathion and malaoxon: histopathology reexamination of the National Cancer Institute's carcinogenesis studies.

In the early 1970s the National Cancer Institute (NCI) studied malathion and the oxygen analog, malaoxon, for possible carcinogenicity in rats and mice. The results from these long-term studies were reported in three NCI Technical Reports with the conclusions that neither chemical was shown to be carcinogenic in rodents. In response to the renewed public health interest and concern about the increasing use of malathion in agriculture and especially its use to eliminate Mediterranean fruit fly infestations in California and Florida during the 1980s, the National Toxicology Program (NTP) in consultation and agreement with the NCI reevaluated the histopathology of the NCI studies of malathion in Osborne-Mendel and Fischer 344 rats and of malaoxon in Fischer 344 rats. The NTP histopathology reexamination confirmed the original NCI interpretative conclusions that malathion was not carcinogenic. For the malaoxon study, the only difference between the original and subsequent interpretations was for C-cell neoplasms of the thyroid gland, in that the NTP concluded there was equivocal evidence of carcinogenicity for male and female F344 rats.

Animals