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用于研究CYP1、环氧化物水解酶和谷胱甘肽S-转移酶活性诱导的精密肝切片和肺切片系统的评估。

Evaluation of the precision-cut liver and lung slice systems for the study of induction of CYP1, epoxide hydrolase and glutathione S-transferase activities.

作者信息

Pushparajah Daphnee S, Umachandran Meera, Plant Kathryn E, Plant Nick, Ioannides Costas

机构信息

Molecular Toxicology Group, School of Biomedical and Molecular Sciences, University of Surrey, Guildford, Surrey GU2 7XH, UK.

出版信息

Toxicology. 2007 Feb 28;231(1):68-80. doi: 10.1016/j.tox.2006.11.063. Epub 2006 Nov 26.

Abstract

The principal objective was to ascertain whether precision-cut tissue slices can be used to evaluate the potential of chemicals to induce CYP1, epoxide hydrolase and glutathione S-transferase activities, all being important enzymes involved in the metabolism of polycyclic aromatic hydrocarbons. Precision-cut rat liver and lung slices were incubated with a range of benzo[a]pyrene concentrations for various time periods. A rise in the O-deethylation of ethoxyresorufin was seen in both liver and lung slices exposed to benzo[a]pyrene, which was accompanied by increased CYP1A apoprotein levels. Pulmonary CYP1B1 apoprotein levels and hepatic mRNA levels were similarly enhanced. Elevated epoxide hydrolase and glutathione S-transferase activities were also observed in liver slices following incubation for 24h; similarly, a rise in apoprotein levels of both enzymes was evident, peak levels occurring at the same time point. When mRNA levels were monitored, a rise in the levels of both enzymes was seen as early as 4h after incubation, but maximum levels were attained at 24 h. In lung slices, induction of epoxide hydrolase by benzo[a]pyrene was observed after a 24-h incubation, and at a concentration of 1 microM; a rise in apoprotein levels was seen at this time point. Glutathione S-transferase activity was not inducible in lung slices by benzo[a]pyrene but a modest increase was observed in hepatic slices. Collectively, these studies confirmed CYP1A induction in rat liver slices and established that CYP1B1 expression, and epoxide hydrolase and glutathione S-transferase activities are inducible in precision-cut tissue slices.

摘要

主要目的是确定精密切割组织切片是否可用于评估化学物质诱导CYP1、环氧水解酶和谷胱甘肽S-转移酶活性的潜力,这些都是参与多环芳烃代谢的重要酶。将精密切割的大鼠肝脏和肺切片与一系列苯并[a]芘浓度在不同时间段进行孵育。在暴露于苯并[a]芘的肝脏和肺切片中均观察到乙氧基试卤灵O-脱乙基化增加,同时伴有CYP1A载脂蛋白水平升高。肺CYP1B1载脂蛋白水平和肝脏mRNA水平也同样升高。在孵育24小时后,肝脏切片中还观察到环氧水解酶和谷胱甘肽S-转移酶活性升高;同样,两种酶的载脂蛋白水平明显升高,峰值出现在同一时间点。监测mRNA水平时,孵育后4小时就可见到两种酶水平升高,但在24小时达到最高水平。在肺切片中,孵育24小时后,在浓度为1 microM时观察到苯并[a]芘诱导环氧水解酶;此时可见载脂蛋白水平升高。苯并[a]芘不能诱导肺切片中的谷胱甘肽S-转移酶活性,但在肝脏切片中观察到适度增加。总体而言,这些研究证实了大鼠肝脏切片中CYP1A的诱导作用,并确定CYP1B1表达以及环氧水解酶和谷胱甘肽S-转移酶活性在精密切割组织切片中是可诱导的。

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