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Biomedical subjects

S Banerjee

Publications and source records attributed to S Banerjee.

At least 613 records · Page 34Linked to original sources

Covalent interaction of metabolites of the carcinogen trichloroethylene in rat hepatic microsomes.

Trichloroethylene (TCE), a structural analog of vinyl chloride, is known to induce hepatocellular carcinoma and other tumors in C57BL/6 X C3H/He F1 (hereafter known as B6C3F1) hybrid mice. TCE epoxide, a possible metabolite, is expected to be highly reactive toward cellular nucleophiles, e.g., proteins and nucleic acids. Hence, the microsomal metabolism of TCE and its covalent binding to microsomal protein were examined. Rat liver microsomes were incubated in vitro with [14C]TCE. The results showed that TCE binds covalently to microsomal protein since extensive organic extractions and Pronase digestion do not dissociate the TCE-protein complex. The binding was decreased by 7,8-benzoflavone, blocked by SKF-525A, and enhanced by i.p. administration of phenobarbital. The possibility that TCE epoxide, once formed, could be converted to water-soluble products through enzymatic hydrolysis by epoxide hydrase was also investigated. Addition of 3,3,3-trichloropropene oxide, a potent inhibitor of epoxide hydrase, to the incubation system markedly enhanced the binding of TCE. These observations support the view that, in order to bind to protein, it is necessary for TCE to be metabolized to its epoxide, a reactive intermediate that is most likely involved in TCE carcinogenesis and toxicity.

Animals↗

Enzymatic responses of transplanted tumour cells towards estrogen, progesterone and testosterone.

The influence of estrogen, progesterone and testosterone on the activities of alkaline and acid phosphatases, adenosine triphosphatase and succinate dehydrogenase were determined by cytochemical methods in sarcoma 180 and Ehrlich's carcinoma cells transplanted in male and female Swiss mice. The results revealed differential effects of the sex hormones on different enzymes which seemed to depend on the type of tumour cell studied and the sex of the host mice.

Acid Phosphatase↗

Inhibition of the acute toxicity and adrenocorticolytic effect of 7,12-dimethylbenz(a)anthracene by isopropylvaleramide and allylisopropylacetamide in the rat.

Isopropylvaleramide (IVA) and allylisopropylacetamide (AIA) inhibit hemorrhagic adrenocortical necrosis and mortality caused by 7,12-dimethylbenz(a)anthracene (DMBA) in female Sprague-Dawley rats. Unlike their effect on hepatic microsomal cytochrome P-450, the anti-DMBA action of these compounds does not depend on the presence of the reactive allyl group in the molecule. Similarly, related barbiturates, regardless of whether they contain, like AIA, an allyl group and consequently destroy cytochrome P-450 (secobarbital and aprobarbital) or have, like IVA, saturated side chains and therefore do not effect the microsomal hemoprotein (pentobarbital and phenobarbital), proved ineffective in preventing both adrenal damage and death caused by DMBA. Hence, the protective action of IVA and AIA cannot be attributed to the destruction of the microsomal enzyme system responsible for the activation of DMBA. The toxicity of another carcinogen, dimethylnitrosamine, which also requires metabolic activation by microsomal enzymes, is not influenced by either IVA or AIA. IVA, which counteracts the adrenocorticolytic action of DMBA when given prior to, simultaneously with, or even after this carcinogen, has no discernible effect on hydrocarbon metabolism in vivo or in vitro. IVA is one of the most powerful inhibitors of the acute toxicity of DMBA. It has the simplest aliphatic structure and the smallest molecule among protectors of the adrenals against hydrocarbon-induced damage; its mechanism of action awaits further elucidation.

9,10-Dimethyl-1,2-benzanthracene↗