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苯巴比妥、2-乙酰氨基芴和4-乙酰氨基芴在正常及起始/选择的肝细胞中诱导的细胞骨架修饰:与“抗性”表型的关系

Cytoskeleton modifications induced by phenobarbital, 2-acetylaminofluorene and 4-acetylaminofluorene in normal and initiated/selected hepatocytes: relation with the "resistant" phenotype.

作者信息

Nizard C, Martin M, Decloitre F

机构信息

Institut de Recherches Scientifiques sur le Cancer, Villejuif, France.

出版信息

Cell Biol Toxicol. 1993 Jan-Mar;9(1):61-76. doi: 10.1007/BF00755140.

Abstract

Initiated/selected (ISH) and normal (NH) rat hepatocytes were used to study cytoskeleton modifications induced by three liver acting chemicals: 2-AAF, a liver complete carcinogen; PB, a liver tumor promoter; and 4-AAF, a non-carcinogen analogue of 2-AAF. Cytoskeleton alterations were visualized by disappearance of F-actin fibers and tubulin depolymerization. The three drugs induced actin fragmentation in normal hepatocytes; a net loss of actin protein was observed with PB. They also induced varied tubulin depolymerization. The principal difference between chemicals is that 2-AAF led to non-reversible effects, in comparison with PB and 4-AAF which induced reversible damages on cytoskeleton. By contrast to normal hepatocytes, the cytoskeleton of ISH obtained from rats subjected to the "resistant" hepatocyte protocol was much less susceptible to the effect of the three chemicals. Moreover, we observed a lack of LDH release in the culture medium and a very rapid inducibility of GST activity after exposure of ISH to drugs. The moderate effect of the three chemicals on actin and tubulin in ISH could thus be explained by the "resistant" metabolic profile of these cells.

摘要

使用起始/选择(ISH)大鼠肝细胞和正常(NH)大鼠肝细胞来研究三种肝脏作用化学物质诱导的细胞骨架修饰:2-乙酰氨基芴(2-AAF),一种肝脏完全致癌物;苯巴比妥(PB),一种肝脏肿瘤促进剂;以及4-乙酰氨基芴(4-AAF),2-AAF的非致癌物类似物。通过F-肌动蛋白纤维的消失和微管蛋白解聚来观察细胞骨架的改变。这三种药物在正常肝细胞中诱导肌动蛋白片段化;用PB观察到肌动蛋白蛋白净损失。它们还诱导了不同程度的微管蛋白解聚。化学物质之间的主要差异在于,与诱导细胞骨架可逆损伤的PB和4-AAF相比,2-AAF导致不可逆的影响。与正常肝细胞相比,从接受“抗性”肝细胞方案的大鼠获得的ISH的细胞骨架对这三种化学物质的影响更不敏感。此外,我们观察到ISH暴露于药物后,培养基中缺乏乳酸脱氢酶(LDH)释放,并且谷胱甘肽S-转移酶(GST)活性诱导非常迅速。因此,这三种化学物质对ISH中肌动蛋白和微管蛋白的适度影响可以通过这些细胞的“抗性”代谢特征来解释。

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