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氯代烃类杀虫剂与膜的相互作用。

Interactions of chlorinated hydrocarbon insecticides with membranes.

作者信息

Omann G M, Lakowicz J R

出版信息

Biochim Biophys Acta. 1982 Jan 4;684(1):83-95. doi: 10.1016/0005-2736(82)90052-9.

Abstract

Chlorinated hydrocarbon insecticides quench the fluorescence of N-alkyl derivatives of carbazole. We used phospholipids with covalently attached carbazole as probes for the interactions of chlorinated hydrocarbon insecticides with lipid bilayers, the object being to understand better the toxicities of chlorinated hydro-carbons. Fluorescence quenching measurements revealed the lipid-water partition coefficients of the chlorinated hydrocarbons, their diffusion coefficients in the membranes, and the binding capacities of the membranes for the chlorinated hydrocarbons. Active insecticides were compared with inactive analogues to test whether activities correlated with chlorinated hydrocarbon-membrane interactions. Thus DDT and methoxychlor were compared with inactive DDE, and insecticidal gamma-lindane was compared with three less active stereoisomers. The partition coefficients, diffusion coefficients and membrane saturation capacities did not correlate with insecticidal potency. The partition coefficients of these chlorinated hydrocarbons were larger in bilayers containing unsaturated fatty acyl chains as compared to bilayers containing saturated fatty acyl chains. Interestingly, neural membranes are known to contain a large percentage of unsaturated lipids. Our results indicate that the activities of chlorinated hydrocarbons are not a result of specific interactions of these compounds with the lipids of membranes. However, the neurotoxicity of chlorinated hydrocarbons may be amplified by selective partitioning in the unsaturated neural membranes.

摘要

氯代烃类杀虫剂会淬灭咔唑 N - 烷基衍生物的荧光。我们使用了共价连接咔唑的磷脂作为探针,来研究氯代烃类杀虫剂与脂质双层的相互作用,目的是更好地理解氯代烃的毒性。荧光淬灭测量揭示了氯代烃类的脂 - 水分配系数、它们在膜中的扩散系数以及膜对氯代烃类的结合能力。将活性杀虫剂与非活性类似物进行比较,以测试活性是否与氯代烃 - 膜相互作用相关。因此,将滴滴涕(DDT)和甲氧滴滴涕与非活性的滴滴伊(DDE)进行比较,将杀虫用的γ - 六六六与三种活性较低的立体异构体进行比较。分配系数、扩散系数和膜饱和容量与杀虫效力不相关。与含有饱和脂肪酰链的双层膜相比,这些氯代烃在含有不饱和脂肪酰链的双层膜中的分配系数更大。有趣的是,已知神经膜含有很大比例的不饱和脂质。我们的结果表明,氯代烃类的活性并非这些化合物与膜脂质特异性相互作用的结果。然而,氯代烃的神经毒性可能会因在不饱和神经膜中的选择性分配而增强。

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