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苯并[a]蒽和7,12-二甲基苯并[a]蒽的二氢二醇的诱变作用与恶性转化的比较。

Comparison of mutagenesis and malignant transformation by dihydrodiols from benz[a]anthracene and 7,12-dimethylbenz[a]anthracene.

作者信息

Marquardt H, Baker S, Tierney B, Grover P L, Sims P

出版信息

Br J Cancer. 1979 May;39(5):540-7. doi: 10.1038/bjc.1979.99.

Abstract

Five dihydrodiols derived from benz[a]anthracene (BA) and 4 dihydrodiols derived from 7,12-dimethylbenz[a]anthracene (DMBA) have been tested, together with the parent hydrocarbons, for their abilities to induce mutations to 8-azaguanine resistance in V79 (Chinese hamster cells and malignant transformation in M2 mouse fibroblasts. The syn- and anti-isomers of benz[a]anthracene 8,9-diol 10,11-oxide were also tested for biological activity in these two systems. The non-K-region 1,2- and 3,4-dihydrodiols of BA induced mutations but the non-K-region 8,9-dihydrodiol and the K-region 5,6-dihydrodiol were inactive as mutagens; none of these BA diols transformed M2 mouse fibroblasts. The 3,4- and the 8,9-dihydrodiols derived from 7,12-dimethylbenz[a]anthracene induced mutations in V79 cells and malignant transformation in M2 mouse fibroblasts and both were more active than the hydrocarbon itself. The K-region 5,6-dihydrodiol and the non-K-region 10,11-dihydrodiol of DMBA were inactive in both test systems. The results are not inconsistent with other data suggesting that the metabolic activation of both BA and DMBA occurs through conversion of the respective 3,4-dihydrodiols into the related vicinal diol-epoxides, although other dihydrodiols may also be involved in vivo. Both the BA diol-epoxides tested were mutagenic, but although the anti-isomer transformed M2 fibroblasts, the syn-isomer was inactive.

摘要

已对源自苯并[a]蒽(BA)的5种二氢二醇和源自7,12 - 二甲基苯并[a]蒽(DMBA)的4种二氢二醇,连同其母体碳氢化合物,进行了测试,以考察它们在V79细胞(中国仓鼠细胞)中诱导对8 - 氮杂鸟嘌呤抗性突变的能力,以及在M2小鼠成纤维细胞中诱导恶性转化的能力。还对苯并[a]蒽8,9 - 二醇10,11 - 氧化物的顺式和反式异构体在这两个系统中的生物活性进行了测试。BA的非K区域1,2 - 二氢二醇和3,4 - 二氢二醇可诱导突变,但非K区域8,9 - 二氢二醇和K区域5,6 - 二氢二醇作为诱变剂无活性;这些BA二氢二醇均未使M2小鼠成纤维细胞发生转化。源自7,12 - 二甲基苯并[a]蒽的3,4 - 二氢二醇和8,9 - 二氢二醇可在V79细胞中诱导突变,并使M2小鼠成纤维细胞发生恶性转化,且二者均比碳氢化合物本身更具活性。DMBA的K区域5,6 - 二氢二醇和非K区域10,11 - 二氢二醇在两个测试系统中均无活性。这些结果与其他数据并不矛盾,其他数据表明BA和DMBA的代谢活化是通过将各自的3,4 - 二氢二醇转化为相关的邻位二醇环氧化物来实现的,尽管其他二氢二醇在体内也可能参与其中。所测试的两种BA二醇环氧化物均具有诱变性,但尽管反式异构体可使M2成纤维细胞发生转化,顺式异构体却无活性。

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