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茚虫威、氰氟虫腙及其他钠通道抑制剂类杀虫剂:对哺乳动物电压门控钠通道的作用机制及作用位点

Indoxacarb, Metaflumizone, and Other Sodium Channel Inhibitor Insecticides: Mechanism and Site of Action on Mammalian Voltage-Gated Sodium Channels.

作者信息

von Stein Richard T, Silver Kristopher S, Soderlund David M

机构信息

Insecticide Toxicology Laboratory, Department of Entomology, Cornell University, Geneva, NY 14456.

出版信息

Pestic Biochem Physiol. 2013 Jul 1;106(3):101-112. doi: 10.1016/j.pestbp.2013.03.004.

Abstract

Sodium channel inhibitor (SCI) insecticides were discovered almost four decades ago but have only recently yielded important commercial products (eg., indoxacarb and metaflumizone). SCI insecticides inhibit sodium channel function by binding selectively to slow-inactivated (non-conducting) sodium channel states. Characterization of the action of SCI insecticides on mammalian sodium channels using both biochemical and electrophysiological approaches demonstrates that they bind at or near a drug receptor site, the "local anesthetic (LA) receptor." This mechanism and site of action on sodium channels differentiates SCI insecticides from other insecticidal agents that act on sodium channels. However, SCI insecticides share a common mode of action with drugs currently under investigation as anticonvulsants and treatments for neuropathic pain. In this paper we summarize the development of the SCI insecticide class and the evidence that this structurally diverse group of compounds have a common mode of action on sodium channels. We then review research that has used site-directed mutagenesis and heterologous expression of cloned mammalian sodium channels in oocytes to further elucidate the site and mechanism of action of SCI insecticides. The results of these studies provide new insight into the mechanism of action of SCI insecticides on voltage-gated sodium channels, the location of the SCI insecticide receptor, and its relationship to the LA receptor that binds therapeutic SCI agents.

摘要

钠通道抑制剂(SCI)类杀虫剂大约在四十年前被发现,但直到最近才产生重要的商业产品(如茚虫威和氰氟虫腙)。SCI类杀虫剂通过选择性结合缓慢失活(非传导性)的钠通道状态来抑制钠通道功能。运用生化和电生理方法对SCI类杀虫剂作用于哺乳动物钠通道的特性进行研究表明,它们在一个药物受体位点或其附近结合,即“局部麻醉药(LA)受体”。这种作用于钠通道的机制和位点使SCI类杀虫剂与其他作用于钠通道的杀虫剂区分开来。然而,SCI类杀虫剂与目前正在研究用于抗惊厥和治疗神经性疼痛的药物具有共同的作用模式。在本文中,我们总结了SCI类杀虫剂的发展情况以及这一结构多样的化合物组对钠通道具有共同作用模式的证据。然后,我们回顾了利用定点诱变和在卵母细胞中克隆哺乳动物钠通道的异源表达来进一步阐明SCI类杀虫剂作用位点和机制的研究。这些研究结果为SCI类杀虫剂作用于电压门控钠通道的机制、SCI类杀虫剂受体的位置及其与结合治疗性SCI药物的LA受体的关系提供了新的见解。

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