Salgado V L, Hayashi J H
BASF Corporation, 26 Davis Drive, Research Triangle Park, NC 27709, USA.
Vet Parasitol. 2007 Dec 15;150(3):182-9. doi: 10.1016/j.vetpar.2007.08.032. Epub 2007 Oct 23.
Metaflumizone is a novel semicarbazone insecticide, derived chemically from the pyrazoline sodium channel blocker insecticides (SCBIs) discovered at Philips-Duphar in the early 1970s, but with greatly improved mammalian safety. This paper describes studies confirming that the insecticidal action of metaflumizone is due to the state-dependent blockage of sodium channels. Larvae of the moth Spodoptera eridania injected with metaflumizone became paralyzed, concomitant with blockage of all nerve activity. Furthermore, tonic firing of abdominal stretch receptor organs from Spodoptera frugiperda was blocked by metaflumizone applied in the bath, consistent with the block of voltage-dependent sodium channels. Studies on native sodium channels, in primary-cultured neurons isolated from the CNS of the larvae of the moth Manduca sexta and on Para/TipE sodium channels heterologously expressed in Xenopus (African clawed frog) oocytes, confirmed that metaflumizone blocks sodium channels by binding selectively to the slow-inactivated state, which is characteristic of the SCBIs. The results confirm that metaflumizone is a novel sodium channel blocker insecticide.
甲氟虫腙是一种新型的氨基脲类杀虫剂,其化学结构源自20世纪70年代初在飞利浦-杜法尔公司发现的吡唑啉钠通道阻滞剂类杀虫剂(SCBIs),但对哺乳动物的安全性有了极大提高。本文描述的研究证实,甲氟虫腙的杀虫作用是由于其对钠通道的状态依赖性阻断。注射了甲氟虫腙的甜菜夜蛾幼虫会麻痹,同时所有神经活动均被阻断。此外,浴槽中加入甲氟虫腙会阻断草地贪夜蛾腹部伸展感受器器官的紧张性放电,这与电压依赖性钠通道的阻断情况一致。对从烟草天蛾幼虫中枢神经系统分离出的原代培养神经元中的天然钠通道,以及对非洲爪蟾卵母细胞中异源表达的Para/TipE钠通道的研究证实,甲氟虫腙通过选择性结合慢失活状态来阻断钠通道,这是SCBIs的特征。这些结果证实甲氟虫腙是一种新型的钠通道阻滞剂类杀虫剂。