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农药杀虫脒与小鼠脑内肾上腺素能受体的相互作用:一项体外研究。

Interaction of the pesticide chlordimeform with adrenergic receptors in mouse brain: an in vitro study.

作者信息

Costa L G, Murphy S D

出版信息

Arch Toxicol. 1987 Feb;59(5):323-7. doi: 10.1007/BF00295083.

Abstract

Chlordimeform (N'(4-chloro-o-tolyl)-N, N-dimethylformamidine; CDM) is a formamidine insecticide acaricide whose major active metabolite is its N-monomethyl analog, desmethylchlordimeform, (DCDM). While their pesticidal action in invertebrates appears to be related to activation of octopamine receptors, their mechanism of action in mammals has not been established. Because of similarities between octopamine and adrenergic receptors and suggestions of CDM and DCDM action on adrenoceptors, the in vitro interactions of CDM and DCDM with adrenoceptors were studied. In mouse brain membrane preparations CDM inhibited the binding of [3H]-clonidine to alpha 2- adrenoceptors and of [3H]-WB4101 to alpha 1-adrenoceptors with IC50 values of 18.2 and 87 microM, respectively. DCDM was a much more potent inhibitor, with IC50 values toward alpha 2-, and alpha 1-adrenoceptors of 44 nM and 1 microM, respectively. Both compounds were only weak inhibitors of the binding of [3H]-dihydroalprenolol to beta-adrenoceptors and of [3H]-quinuclidinyl benzilate to muscarinic receptors and were inactive toward benzodiazepines and gamma aminobutyric acid (GABAA) receptors. Inhibition of [3H]-clonidine binding by both compounds was competitive, as indicated by a decreased receptor affinity without changes in receptor density. Interaction of CDM and DCDM with [3H]-WB4101 binding, on the other hand, was more complex, and not of the competitive type. These results show that CDM and its metabolite DCDM can interact directly in vitro with alpha-adrenergic receptors, suggesting that these receptors could mediate some of the effects of CDM and DCDM in vivo.

摘要

杀虫脒(N'-(4-氯-邻甲苯基)-N,N-二甲基甲脒;CDM)是一种甲脒类杀虫杀螨剂,其主要活性代谢物是其N-单甲基类似物去甲基杀虫脒(DCDM)。虽然它们在无脊椎动物中的杀虫作用似乎与章鱼胺受体的激活有关,但它们在哺乳动物中的作用机制尚未明确。由于章鱼胺和肾上腺素能受体之间存在相似性,且有研究表明CDM和DCDM对肾上腺素能受体有作用,因此对CDM和DCDM与肾上腺素能受体的体外相互作用进行了研究。在小鼠脑膜制剂中,CDM抑制[3H]-可乐定与α2-肾上腺素能受体的结合以及[3H]-WB4101与α1-肾上腺素能受体的结合,IC50值分别为18.2和87微摩尔。DCDM是一种更强效的抑制剂,对α2-和α1-肾上腺素能受体的IC50值分别为44纳摩尔和1微摩尔。这两种化合物对[3H]-二氢阿普洛尔与β-肾上腺素能受体的结合以及[3H]-喹核醇基苯甲酸酯与毒蕈碱受体的结合只是弱抑制剂,对苯二氮䓬和γ-氨基丁酸(GABAA)受体无活性。两种化合物对[3H]-可乐定结合的抑制作用是竞争性的,表现为受体亲和力降低而受体密度不变。另一方面,CDM和DCDM与[3H]-WB4101结合的相互作用更为复杂,不是竞争性类型。这些结果表明,CDM及其代谢物DCDM在体外可直接与α-肾上腺素能受体相互作用,提示这些受体可能介导CDM和DCDM在体内的某些效应。

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