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首页> 外文期刊>Mutation Research: International Journal on Mutagenesis, Chromosome Breakage and Related Subjects >CP-arene oxides: the ultimate, active mutagenic forms of cyclopenta-fused polycyclic aromatic hydrocarbons (CP-PAHs).
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CP-arene oxides: the ultimate, active mutagenic forms of cyclopenta-fused polycyclic aromatic hydrocarbons (CP-PAHs).

机译:CP-芳烃氧化物:环戊基稠合多环芳烃(CP-PAHs)的最终活性诱变形式。

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摘要

The bacterial mutagenic response (Ames-assay, Salmonella typhimurium strain TA98+/-S9-mix) of a series of monocyclopenta-fused polycyclic aromatic hydrocarbons (CP-PAHs) identified in combustion exhausts, viz. cyclopenta[cd]pyrene (1), acephenanthrylene (2), aceanthrylene (3) and cyclopenta[hi]chrysene (4), is re-evaluated. The mutagenic effects are compared with those exerted by the corresponding partially hydrogenated derivatives, 3,4-dihydrocyclopenta[cd]pyrene (5), 4,5-dihydroacephenanthrylene (6), 1,2-dihydroaceanthrylene (7) and 4,5-dihydrocyclopenta[hi]chrysene (8). It is shown that the olefinic bond of the externally fused five-membered ring of 1, 3 and 4 is of importance for a positive mutagenic response. In contrast, whilst CP-PAH 2 is found inactive, its dihydro analogue (6) shows a weak metabolism-dependent response. The importance of epoxide formation at the external olefinic bond in the five-membered ring is substantiated by the bacterial mutagenic response of independently synthesized cyclopenta[cd]pyrene-3,4-epoxide (9), acephenanthrylene-4,5-epoxide (10), aceanthrylene-1,2-epoxide (11) and cyclopenta[hi]chrysene-4,5-epoxide (12). Their role as ultimate, active mutagenic forms, when CP-PAHs 1, 3 and 4 exhibit a positive mutagenic response, is confirmed. Semi-empirical Austin Model 1 (AM1) calculations on the formation of the CP-arene oxides (9-12) and their conversion into the monohydroxy-carbocations (9a-12a and 9b-12b) via epoxide-ring opening support our results. For 2 and 4, which also possess a bay-region besides an annelated cyclopenta moiety, the calculations rationalize that epoxidation at the olefinic bond of the cyclopenta moiety is favoured.
机译:在燃烧废气中鉴定出的一系列单环戊缩合多环芳烃(CP-PAHs)的细菌诱变反应(Ames分析,鼠伤寒沙门氏菌菌株TA98 +/- S9-mix)。重新评估了环戊[cd]((1),对苯二甲苯(2),对苯乙炔(3)和环戊五ch(4)。将诱变作用与相应的部分氢化衍生物,3,4-二氢环戊[cd]((5),4,5-二氢苯并菲(6),1,2-二氢并蒽(7)和4,5-所产生的致突变作用进行了比较。二氢环戊五烯(8)。结果表明,外部稠合的五元环1、3和4的烯键对于正诱变反应很重要。相反,虽然发现CP-PAH 2没有活性,但其二氢类似物(6)显示出微弱的代谢依赖性反应。在五元环的外部烯烃键处形成环氧化物的重要性通过独立合成的环戊[cd] py-3,4-环氧化物(9),对苯并菲-4,5-环氧化物(10)的细菌诱变反应得以证实。 ),1,2-亚乙基1,2-环氧化物(11)和环戊基-4,5-环戊烯(12)。当CP-PAH 1、3和4表现出积极的诱变反应时,证实了它们作为最终的活性诱变形式的作用。半经验奥斯汀模型1(AM1)对CP-芳烃氧化物(9-12)的形成以及它们通过环氧化物开环转化为单羟基碳化(9a-12a和9b-12b)的计算得到了支持。对于2和4,其除了具有环化的环戊烯部分之外还具有海湾区域,该计算合理化是有利于在环戊部分的烯烃键处的环氧化。

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