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2-甲基丙烯(异丁烯)及其环氧化物在挥发性化合物改良沙门氏菌试验中的致突变性。

Mutagenicity of 2-methylpropene (isobutene) and its epoxide in a modified Salmonella assay for volatile compounds.

作者信息

Cornet M, Castelain P, Vercruysse A, Laib R, Kirsch-Volders M, Rogiers V

机构信息

Department of Toxicology, Vrije Universiteit Brussel, Belgium.

出版信息

Mutat Res. 1992 Jun;271(3):213-21. doi: 10.1016/0165-1161(92)90016-f.

Abstract

The mutagenic properties of 2-methylpropene (MP) and 2-methyl-1,2- epoxypropane (MEP) were investigated in the Salmonella assay. A simple exposure system, consisting of gastight tissue culture flasks, was used. This method has the advantage that the volatile test chemical is present during the entire incubation period and that several concentrations of the investigated compound can be tested on a single day. MP is not mutagenic in strains TA100, TA102 and TA1535, and in the latter strain not even in the presence of metabolizing S9 mix. MEP is mutagenic in all the strains tested, as demonstrated by a clear dose-response relationship. Strain TA1535 seems to be most sensitive to MEP compared with the other bacterial strains studied. For this strain, the mutagenic activity of MEP decreased significantly in the presence of S9 mix, compatible with the epoxide being inactivated by epoxide hydrolase and by glutathione S-transferase, as reported previously. From the present study it can be concluded that the parent compound MP is not mutagenic, but that its primary metabolite MEP is a mutagenic substance. However, very high concentrations are necessary to induce a mutagenic effect and the epoxide is efficiently detoxified by different liver enzymes.

摘要

在沙门氏菌试验中研究了2-甲基丙烯(MP)和2-甲基-1,2-环氧丙烷(MEP)的致突变特性。使用了一种简单的暴露系统,该系统由气密组织培养瓶组成。该方法的优点是挥发性测试化学品在整个孵育期间都存在,并且可以在同一天测试几种浓度的被研究化合物。MP在TA100、TA102和TA1535菌株中不具有致突变性,而在后者菌株中,即使存在代谢S9混合物也不具有致突变性。MEP在所有测试菌株中都具有致突变性,这通过明显的剂量反应关系得到证明。与其他研究的细菌菌株相比,TA1535菌株似乎对MEP最敏感。对于该菌株,在S9混合物存在下,MEP的致突变活性显著降低,这与环氧化物被环氧化物水解酶和谷胱甘肽S-转移酶灭活一致,如先前报道。从本研究可以得出结论,母体化合物MP不具有致突变性,但其主要代谢产物MEP是一种致突变物质。然而,需要非常高的浓度才能诱导致突变效应,并且环氧化物可被不同的肝脏酶有效解毒。

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