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苯并芘两种环戊稠合异构体的细菌诱变性。

Bacterial mutagenicity of two cyclopentafused isomers of benzpyrene.

作者信息

Ball L M, Warren S H, Sangaiah R, Gold A

机构信息

Department of Environmental Sciences and Engineering, School of Public Health, University of North Carolina, Chapel Hill 27599-7400.

出版信息

Mutat Res. 1991 Jul;260(3):271-9. doi: 10.1016/0165-1218(91)90036-l.

Abstract

Two novel cyclopentafused polycyclic aromatic hydrocarbons, naphtho(1,2,3-mno)acephenanthrylene (cyclopenta benzo[e]pyrene) and naphtho(2,1,8-hij)acephenanthrylene (cyclopenta(ij)benzo[a]pyrene) were evaluated for mutagenic activity in the Ames Salmonella typhimurium plate incorporation assay. Both compounds required S9 metabolic activation, and showed optimal activity at low S9 concentrations (below 0.6 mg/plate). Both compounds induced frameshift and base-pair substitution mutations, being active in strains TA98, TA100, TA1537, TA1538 and TA104, but not in strain TA1535. Cyclopenta(ij)benzo[a]pyrene was more active than cyclopentabenzo[e]pyrene, and both were more potent than their parent ring systems, benzo[a]pyrene and benzo[e]pyrene, respectively. Cyclopenta(ij)benzo[a]pyrene was more active in strain TA104 than in TA100 or TA98 (250-470, 340 and 80-100 rev/nmole) as was benzo[a]pyrene (120, 70 and 40 rev/nmole respectively); cyclopentabenzo[e]pyrene was more active in TA100 than TA104 or TA98 (70 versus 50 and 40 rev/nmole), and benzo[e]pyrene showed a similar pattern (4, 3.5 and 0.6 rev/nmole). The relative potencies of the four compounds are in accord with predictions based on perturbational molecular orbital calculations. The peak of activity at low S9 concentrations is consistent with epoxidation at the cyclopentafused ring being the major route of metabolic activation for both these cyclopentafused compounds.

摘要

对两种新型的环戊稠合多环芳烃,即萘并(1,2,3 - mno)苊烯(环戊并苯并[e]芘)和萘并(2,1,8 - hij)苊烯(环戊并(ij)苯并[a]芘),在鼠伤寒沙门氏菌平板掺入试验中进行了致突变活性评估。两种化合物都需要S9代谢激活,且在低S9浓度(低于0.6毫克/平板)时显示出最佳活性。两种化合物都诱导移码突变和碱基对置换突变,在TA98、TA100、TA1537、TA1538和TA104菌株中具有活性,但在TA1535菌株中无活性。环戊并(ij)苯并[a]芘比环戊并苯并[e]芘更具活性,且两者分别比其母体环系苯并[a]芘和苯并[e]芘更具效力。环戊并(ij)苯并[a]芘在TA104菌株中比在TA100或TA98菌株中更具活性(分别为250 - 470、340和80 - 100回复突变/纳摩尔),苯并[a]芘也是如此(分别为120、70和40回复突变/纳摩尔);环戊并苯并[e]芘在TA100菌株中比在TA104或TA98菌株中更具活性(70对50和40回复突变/纳摩尔),苯并[e]芘也呈现类似模式(4、3.5和0.6回复突变/纳摩尔)。这四种化合物的相对效力与基于微扰分子轨道计算的预测一致。低S9浓度下的活性峰值与环戊稠合环处的环氧化是这两种环戊稠合化合物代谢激活的主要途径相一致。

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