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Dose-Dependent Cytotoxicity of Chlorinated Hydrocarbons in IsolatedRat Hepatocytes. DAHLSTROM-KJNG, L., COUTURE, J., LAMOUREUX,C, VAILLANCOURT, T., AND PLAA, G. L. (1990). Fundam. Appl. Toxicol.14, 833–841. The aim was to determine if isolated suspendedhepatocytes could differentiate between the effects of fourchlorinated hydrocarbons that are hepatotoxic In vivo and fourthat are not. Membrane integrity was assessed by measuring alanineaminotransferase (ALT) release after 30- to 180-min incubationsin vitro. From the results, the chlorinated hydrocarbons fellinto three groups: tetrachloroethylene and 1,1,2,2-tetrachloroeth-anewere the most potent cytotoxicants; CCl4, 1,1,2-trichloroethane,and trichloroethylene exhibited intermediate cytotoxicity; andlow cytotoxicity was observed with CHCl3, 1,1,1 -trichlo-roethane,and 1,1-dichloroethylene. Cytotoxicity ranking correlated poorlywith the reported In vivo hepatotoxicity of these agents. Theeffect of adding SKF-525A on the cytotoxicity of tetrachloroethyleneand CCI4 was also assessed. In addition, hepatocytes from ratspretreated with 2,5-hexanedione were used to determine if theywere more susceptible to the effects of CHCl3, CCl4 or tetrachloroethylene.SKF-525A decreased the cytotoxicity of both CO, and tetrachloroethylene,whereas pretreatment with 2,5-hexanedione enhanced their effect.The effects of both SKF-525A and 2,5-hexanedione on CCl in vitroare consistent with In vivo findings. However, tetrachloroethyleneis not hepatotoxic In vivo, suggesting that SKF-525A might actby stabilizing plasma membranes rendering the hepatocyte moreresistant to lysis. Overall, the results cast doubts on theuse of ALT release from isolated hepatocytes as an appropriatein vitro model for assessing hepatotoxic properties of chlorinatedhydrocarbons.  相似文献   
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