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人源肝癌细胞系HepG2中溴苯的解毒作用

Bromobenzene detoxification in the human liver-derived HepG2 cell line.

作者信息

Duthie S J, Melvin W T, Burke M D

机构信息

Department of Biomedical Sciences, University of Aberdeen, Marischal College, UK.

出版信息

Xenobiotica. 1994 Mar;24(3):265-79. doi: 10.3109/00498259409043238.

Abstract
  1. The applicability of the human hepatoma cell line, HepG2, as a cell culture model for studying xenobiotic liver toxicity has been investigated using the well-characterized hepatotoxic chemical, bromobenzene. 2. Bromobenzene caused a concentration- (0-10 mM) and time-dependent (0-180 min) decrease in HepG2 cell viability. The degree of toxicity was dependent upon the culture medium composition and the state of cell growth. Toxicity in Modified Earle's and Williams' E Media was maximal at 7 days growth compared with 3 and 10 days, and was greater in Williams' than in Earle's medium. Toxicity in Dulbecco's medium was apparent only at 10 days growth and was less than the maximum toxicity in the other media. 3. Bromobenzene was detoxified by epoxide hydrase. The question of metabolic activation by P450 remained unresolved, but any involvement of P450 was by forms not inhibited by ketoconazole. 4. The mechanism of bromobenzene toxicity did not appear to involve lipid peroxidation, depletion of reduced glutathione, calcium-mediated proteolysis or metabolic activation by prostaglandin synthetase, but may have involved direct solvent-induced cell damage. 5. This study demonstrates the potential usefulness of HepG2 cells in toxicity testing and highlights the importance of standardizing culture conditions.
摘要
  1. 利用特性明确的肝毒性化学物质溴苯,研究了人肝癌细胞系HepG2作为研究外源性肝毒性细胞培养模型的适用性。2. 溴苯导致HepG2细胞活力呈浓度(0 - 10 mM)和时间依赖性(0 - 180分钟)下降。毒性程度取决于培养基组成和细胞生长状态。与3天和10天相比,在改良厄尔氏培养基和威廉姆斯培养基中,7天生长时毒性最大,且在威廉姆斯培养基中的毒性大于厄尔氏培养基。在杜尔贝科培养基中,毒性仅在10天生长时明显,且小于其他培养基中的最大毒性。3. 溴苯可被环氧化物水解酶解毒。细胞色素P450的代谢活化问题仍未解决,但细胞色素P450的任何参与都是由酮康唑不抑制的形式介导的。4. 溴苯毒性机制似乎不涉及脂质过氧化、还原型谷胱甘肽耗竭、钙介导的蛋白水解或前列腺素合成酶的代谢活化,但可能涉及直接的溶剂诱导细胞损伤。5. 本研究证明了HepG2细胞在毒性测试中的潜在用途,并强调了标准化培养条件的重要性。

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