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Metabolism of styrene to styrene oxide and vinylphenols in cytochrome P450 2F2- and P450 2E1-knockout mouse liver and lung microsomes

机译:在细胞色素P450 2F2-和P450 2E1敲除小鼠肝和肺微粒体中苯乙烯代谢为氧化苯乙烯和乙烯基苯酚

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摘要

Pulmonary toxicity of styrene is initiated by cytochromes P450-dependent metabolic activation. P450 2E1 and P450 2F2 are considered to be two main cytochrome P450 (CYP) enzymes responsible for styrene metabolism in mice. The objective of the current study was to determine the correlation between the formation of styrene metabolites (i.e. styrene oxide and 4-vinylphenol) and pulmonary toxicity of styrene, using Cyp2e1- and Cyp2f2-null mouse models. Dramatic decrease in the formation of styrene glycol and 4-vinylphenol was found in Cyp2f2-null mouse lung microsomes, relative to that in the wild-type mouse lung microsomes. However, no significant difference in the production of the styrene metabolites was observed between lung microsomes obtained from Cyp2e1-null and the wild-type mice. The knock–out and wild-type mice were treated with styrene (6.0 mmol/kg, ip), and cell counts and LDH activity in bronchoalveolar lavage fluids were monitored to evaluate the pulmonary toxicity induced by styrene. Cyp2e1-null mice displayed similar susceptibility to lung toxicity of styrene as the wild-type animals. However, Cyp2f2-null mice were resistant to styrene-induced pulmonary toxicity. In conclusion, both P450 2E1 and P450 2F2 are responsible for the metabolic activation of styrene. The latter enzyme plays an important role in styrene-induced pulmonary toxicity. Both styrene oxide and 4-vinylphenol are suggested to participate in the development of lung injury induced by styrene.
机译:苯乙烯的肺毒性是由细胞色素P450依赖的代谢活化引发的。 P450 2E1和P450 2F2被认为是负责小鼠苯乙烯代谢的两种主要细胞色素P450(CYP)酶。本研究的目的是使用Cyp2e1-和Cyp2f2-null小鼠模型确定苯乙烯代谢产物(即氧化苯乙烯和4-乙烯基苯酚)的形成与苯乙烯的肺毒性之间的相关性。相对于野生型小鼠肺微粒体,在Cyp2f2缺失的小鼠肺微粒体中,发现苯乙烯乙二醇和4-乙烯基苯酚的形成显着减少。但是,在从Cyp2e1-null获得的肺微粒体与野生型小鼠之间,未观察到苯乙烯代谢产物产生的显着差异。用苯乙烯(6.0 mmol / kg,腹膜内)处理基因敲除和野生型小鼠,监测支气管肺泡灌洗液中的细胞计数和LDH活性,以评估苯乙烯诱导的肺毒性。 Cyp2e1-null小鼠对苯乙烯的肺毒性表现出与野生型动物相似的敏感性。但是,Cyp2f2无效的小鼠对苯乙烯诱导的肺毒性有抗性。总之,P450 2E1和P450 2F2都负责苯乙烯的代谢活化。后者在苯乙烯诱导的肺毒性中起重要作用。建议氧化苯乙烯和4-乙烯基苯酚都参与由苯乙烯引起的肺损伤的发展。

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