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Biomedical subjects

R S Waritz

Publications and source records attributed to R S Waritz.

14 recordsLinked to original sources

Thyroid function and thyroid tumors in toxaphene-treated rats.

Historically, a direct and irreversible genotoxic reaction of a xenobiotic with DNA has been considered to be a universal and obligatory initiating event in the etiology of neoplasia, and it was assumed therefore that (1) there was no threshold other than zero exposure for cancer initiation, and (2) like radiation, exposure was additive over a lifetime. Human exposure to xenobiotics causing neoplasia in laboratory rodents has been regulated in many countries on that basis. In the last decade evidence has accumulated indicating that some neoplasia in laboratory rodents may not be caused by a direct and irreversible interaction of xenobiotics with DNA. In addition, it has been found that some neoplasia caused in laboratory rodents by xenobiotics may not be relevant for biochemical/physiological reasons. This has raised the question whether human exposure to these xenobiotics should be regulated by the no-threshold philosophy used for direct-acting genotoxic xenobiotics or whether they can be regulated by the threshold philosophy used for classical xenobiotic-induced toxic effects. In a bioassay carried out by the National Cancer Institute and published in 1979, toxaphene was found to cause an increase in the occurrence of two spontaneously occurring tumors in laboratory rodents that since have been found to have both genotoxic and nongenotoxic etiologies in laboratory rodents. Experiments described in this paper are part of a program to help elucidate whether the increased incidence of these two neoplasms in laboratory rodents could have had a nongenotoxic origin, and thus whether toxaphene could be regulated by a threshold approach. Forty male rats were orally intubated with 100 mg/kg/day technical grade toxaphene in corn oil for 3 days. The dose was reduced to 75 mg/ kg/day on Day 4 due to toxicity. This lower dose was administered daily for 25 days. Another group of 40 male rats was orally gavaged daily with equivalent volumes of corn oil. After 0, 7, 14, and 28 doses, 10 test and 10 vehicle control animals were sacrificed for gross and histopathological examination of thyroid, parathyroid, and pituitary glands. Weights of these endocrine organs, body weights, and brain weights were determined. Prior to sacrifice, a blood sample was obtained from each animal for preparation of serum for analyses of thyroid stimulating hormone (TSH), thyroxine (T4), thyroid hormone (T3), and reverse T3 (rT3). Thyroid glands were evaluated microscopically for follicular cell hypertrophy, hyperplasia, and colloid storage. There were significant time-related increases in serum TSH in the test animals after 7, 14, and 28 doses of toxaphene. The serum levels of T3, T4, rT3, and corrected T3 (CrT3) in the test group were not significantly different from controls at each interval. Thyroid gland weights and thyroid to brain weight ratios were not significantly (p > 0.05) increased in the test group at each sacrifice interval. Pituitary weight, brain weight, and the ratios of these organ weights to body weights were similar in the test and control groups at each sacrifice interval. Thyroid follicular cell hypertrophy and intrafollicular hyperplasia increased and thyroid follicular cell colloid stores decreased with duration of treatment with toxaphene. The hormonal and histopathologic changes seen in the test group were consistent with increased excretion of T3 and/or T4 resulting from cytochrome P450 enzyme induction in the liver. This mechanism for thyroid neoplasia is not known to occur in humans.

Animals↗

Monochloroacetic acid toxicity in the mouse associated with blood-brain barrier damage.

Monochloroacetic acid (MCA) causes front paw rigidity in 10% of mice surviving a single oral toxic dose (320-380 mg/kg). Mice exhibiting front paw rigidity were killed at various times after MCA treatment and their brains were prepared for histological examination. As early as 48 hr post-treatment, RBCs were found outside capillaries in several brain regions, especially the cerebellum. At time points up to 8 weeks after MCA, extracapillary RBCs were seen to be undergoing lysis, and there was loss of cerebellar Purkinje cells. Three hours after oral administration of an LD80 of MCA (380 mg/kg), entry of iv-injected [14C]inulin or [3H]dopamine (1.0 microCi) into all brain regions was significantly increased compared to controls. Increased entry of [14C]inulin into the brains of mice occurred as early as 2 hr after MCA, coinciding with the onset of signs of toxicity, and remained elevated for up to 8 hr following treatment. Further studies revealed that only those mice which were moribund but not those which were unaffected by MCA (380 mg/kg) 4-6 hr after treatment had significantly increased brain levels of [14C]inulin or [3H]dopamine. However, mice which survived an LD80 of MCA and exhibited front paw rigidity 24 hr later also had brain radiotracer concentrations significantly greater than controls. Both the lethal effects of MCA and the physical deficits observed in survivors may be associated with impairment of blood-brain barrier function.

Acetates↗

Pulmonary response and transmigration of inorganic fibers by inhalation exposure.

Rats, hamsters, and guinea pigs were exposed by inhalation to different concentrations of potassium octatitanate fibers. Following 3 months of exposure, the animals were sacrificed between the 15th and 24th month. The exposed animals showed dose-related dust deposition and pulmonary fibrosis mainly in the respiratory bronchiolar region. Most short fibers (less than 5 micrograms) were phagocytized by alveolar macrophages, but long fibers (greater than 10 micrograms) were phagocytized by foreign body giant cells. Dust-laden macrophages (dust cells) entered into the lumen of bronchial lymphatic or pulmonary blood vessels. Numerous dust cells were transported from the lung to the tracheobronchial and mediastinal lymph nodes where some dust cells penetrated into the blood or lymphatic circulation. Massive direct cell migration of the mediastinal adipose tissue from the lymph nodes occurred occasionally. Dust-laden giant cells were found only occasionally in the liver, and there was widespread migration of the fibers into other vital organs and tissues without any significant responses.

Animals↗

Pulmonary response to glass fiber by inhalation exposure.

Rats, hamsters, and guinea pigs were exposed to airborne glass fiber at a gravimetric concentration of 0.42 mg. per liter for 6 hours per day, 5 days per week for 90 days. The number of dust particles greater than 5 micron. in length was 0.73 x 10(6) per liter with an average diameter of approximately 1.2 micron. Most particles were less than 2 micron. in size and only 15% of the dust particles had a fibrous shape. Few fibers were longer than 10 micron. The pulmonary response was characterized by macrophage reaction with alveolar proteinosis at 90 days of inhalation. The light and ultrastructural alterations were similar to the other experimental or human alveolar proteinosis. The alveolar proteinosis disappeared at 1-year postexposure, but focal dust cell accumulation with proliferating granular pneumocytes persisted throughout the 2-year recovery period. No significant fibrosis or stromal changes were found in the dust-deposited areas. In hamsters and guinea pigs, most ferruginous bodies were developed from fibrous fibers but not from tiny dust particles. The tracheobronchial lymph nodes were markedly swollen and laden with dust cells.

Animals↗

Toxicological evaluations of some brominated biphenyls.

Extensive toxicological studies were carried out to define the probable hazard of octabromobiphenyl (OBB) to workers, users, and the environment. OBB had low acute toxicity in mammals and birds by various routes of administration. It was essentially non-irritating to rabbit eyes, non-irritating to human skin and caused only mild skin irritation and no sensitization in the guinea pig. OBB caused equivocal effects in the rat fetus. OBB was stored in the body fat of rats and caused liver enlargement at high single doses or low repeated doses. The studies indicate probable low safety factors in application and use and probable bioaccumulation. Hexabromobiphenyl (HBB) was more acutely toxic than OBB by skin absorption in the rabbit and caused liver enlargement at lower single doses.

Abnormalities, Drug-Induced↗

Acute and subacute inhalation toxicities of phosphine, phenylphosphine and triphenylphosphine.

The four-hour LC50 values for ChR-CD male rats for phosphine, phenylphosphine and triphenylphosphine have been determined to be 0.44 micromoles per liter (muM/liter), 1.56 muM/liter and 47.8 muM/liter respectively. The dose-death curves are parallel. During exposure, all three caused clinical signs indicative of mild respiratory irritation. Triphenylphosphine also caused severe weight loss immediately after exposure, followed by normal rate of weight gain. No histopathologic effects due to exposure were seen in any of the tissues examined after single exposures to any of the three compounds. Phosphine and triphenylphosphine caused mild weight loss during a 10-day exposure period followed by normal rate of weight gain during a 14-day recovery period. The phenylphosphine exposures caused a decreased rate of weight gain during the exposure period which returned to normal during the recovery period. Silver nitrate paper was found to be unsuitable for field analysis of phenylphosphine.

Air Pollutants↗

Octabromobiphemyl-induced ultrastructural changes in rat liver.

Single oral administration of octabromobiphenyls at 1,000 mg/kg, or two consecutive doses of 3,000 mg/kg, to rats produced liver enlargement. Light microscopic examination revealed hepatocellular hyperplasia, margination of basophillic cytoplasm, and foamy cytoplasmic alteration on the third day posttreatment. Laminated cytoplasmic inclusions developed seven days after treatment and subsequently disappeared about one week later. Under electron microscopy, the cytoplasmic margination corresponded to peripherally displaced granular reticulum and the foamy cytoplasm was recognizable as proliferating agranular reticulum with depletion of particualte glycogen. The cytoplasmic inclusions were identified as myelin configurations enclosing lipid bodies, membrane-bound vacuoles with whorled figures, and vesicular agranular reticulum. In the early developmental stages, the myelin figures were studded with ribosomes and associated with the granular reticulum.

Administration, Oral↗

An industrial approach to evaluation of pyrolysis and combustion hazards.

In addition to the usual toxicology studies necessary for the safe manufacture and use of polymers at room temperature, special studies are needed for polymers which will be used at elevated temperatures. This paper discusses various areas to be investigated and principles for deciding on test materials, tests, and test conditions, polytetrafluoroethylene (PTFE) and fluorinated polyethylene-propylene (PFEP) pyrolysis studies being used as an illustrative case history. Some limitations of animal testing also are mentioned. A toxicological spectrum relating toxicological determinants to PTFE temperature is developed.

Animals↗

Subchronic inhalation toxicity of 3.5-microm diameter carbon fibers in rats.

No effects were seen when rats were exposed for 6 h day(-1), 5 days per week, for 16 weeks to an atmosphere of 20 mg m(-3) of carbon fibers (25 x 10(6) fibers m(-3)) and small amounts of fiber particulate resulting from preparation of the ultimate test material. The carbon fibers were made from polyacrylonitrile fiber. They were 3.5 microm in diameter and 72% were 10-60 microm long. Histopathological evaluations were made after each of 4, 8, 12 and 16 weeks of exposure and after 36 and 80 weeks of recovery. No effects due to the exposure were seen, as judged by clinical signs, body weight, organ weight, organ-body weight ratios, organ-brain weight ratios, gross and microscopic examination of internal organs, special stains of lung tissue for fibrous tissue, reticulin and fat and pulmonary function measurements. Non-fibrous particles were seen in the pulmonary lymphoid clearance system and in alveolar histiocytes (macrophages) at each histopathological evaluation period. Non-fibrous particles were seen in histiocytes in the mucociliary clearance system after 12 and 16 weeks of exposure. Fibers were seen in the nasal cavity at each histopathological examination. Fibers also occasionally were seen in tissue sections from the lower respiratory tract, but their exact location in life could not be determined. There was no indication of fibrosis.

Animals↗