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Comparative Analysis of the Relationship between Trichloroethylene Metabolism and Tissue-Specific Toxicity among Inbred Mouse Strains: Kidney Effects

机译:自交系小鼠三氯乙烯代谢与组织特异性毒性之间关系的比较分析:肾脏效应

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摘要

Trichloroethylene (TCE) is a well-known environmental and occupational toxicant that is classified as carcinogenic to humans based on the epidemiological evidence of an association with higher risk of renal cell carcinoma. A number of scientific issues critical for assessing human health risks from TCE remain unresolved, such as the amount of kidney-toxic glutathione conjugation metabolites formed, inter-species and -individual differences, and the mode of action for kidney carcinogenicity. We hypothesized that TCE metabolite levels in the kidney are associated with kidney-specific toxicity. Oral dosing with TCE was conducted in sub-acute (600 mg/kg/d; 5 days; 7 inbred mouse strains) and sub-chronic (100 or 400 mg/kg/d; 1, 2, or 4 weeks; 2 inbred mouse strains) designs. We evaluated the quantitative relationship between strain-, dose-, and time-dependent formation of TCE metabolites from cytochrome P450-mediated oxidation [trichloroacetic acid (TCA), dichloroacetic acid (DCA), and trichloroethanol] and glutathione conjugation [S-(1,2-dichlorovinyl)-L-cysteine and S-(1,2-dichlorovinyl)glutathione], and various kidney toxicity phenotypes. In sub-acute study, we observed inter-strain differences in TCE metabolite levels in the kidney. In addition, we found that in several strains kidney-specific effects of TCE included induction of peroxisome proliferator-marker genes Cyp4a10 and Acox1, increased cell proliferation, and expression of KIM-1, a marker of tubular damage and regeneration. In sub-chronic study, peroxisome proliferator-marker gene induction and kidney toxicity diminished while cell proliferative response was elevated in a dose-dependent manner in NZW/LacJ, but not C57BL/6J mice. Overall, we show that TCE metabolite levels in the kidney are associated with kidney-specific toxicity and that these effects are strain-dependent.
机译:三氯乙烯(TCE)是一种众所周知的环境和职业毒物,根据与肾细胞癌高风险相关的流行病学证据,被分类为对人类致癌。对于评估TCE对人类健康的危害至关重要的许多科学问题仍未解决,例如形成的具有肾脏毒性的谷胱甘肽共轭代谢产物的数量,种间和个体间的差异以及肾脏致癌性的作用方式。我们假设肾脏中的TCE代谢物水平与肾脏特异性毒性有关。在非急性期(600 mg / kg / d; 5天; 7个自交系小鼠品系)和亚慢性(100或400 mg / kg / d; 1、2或4周; 2个近交系)进行TCE口服给药小鼠品系)设计。我们评估了由细胞色素P450介导的氧化[三氯乙酸(TCA),二氯乙酸(DCA)和三氯乙醇]与谷胱甘肽共轭[S-(1 ,2-二氯乙烯基)-L-半胱氨酸和S-(1,2-二氯乙烯基)谷胱甘肽],以及各种肾脏毒性表型。在亚急性研究中,我们观察到了肾脏中TCE代谢产物水平的株间差异。此外,我们发现,在某些菌株中,TCE的肾脏特异性作用包括诱导过氧化物酶体增殖物标记基因Cyp4a10和Acox1,增加细胞增殖以及表达KIM-1(肾小管损伤和再生的标记)。在亚慢性研究中,过氧化物酶体增殖物标记基因的诱导和肾脏毒性降低,而NZW / LacJ小鼠的细胞增殖反应以剂量依赖性方式升高,但C57BL / 6J小鼠没有。总体而言,我们显示肾脏中的TCE代谢物水平与肾脏特异性毒性相关,并且这些作用是菌株依赖性的。

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