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Pharmacological Inhibition of Inward Rectifier Potassium Channels Induces Lethality in Larval Aedes aegypti

机译:内向整流钾通道的药理抑制作用导致埃及伊蚊幼虫死亡。

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摘要

The inward rectifier potassium (Kir) channels play key roles in the physiology of mosquitoes and other insects. Our group, among others, previously demonstrated that small molecule inhibitors of Kir channels are promising lead molecules for developing new insecticides to control adult female mosquitoes. However, the potential use of Kir channel inhibitors as larvicidal agents is unknown. Here we tested the hypothesis that pharmacological inhibition of Kir channels in the larvae of Aedes aegypti, the vector of several medically important arboviruses, induces lethality. We demonstrated that adding barium, a non-specific blocker of Kir channels, or VU041, a specific small-molecule inhibitor of mosquito Kir1 channels, to the rearing water (deionized H2O) of first instar larvae killed them within 48 h. We further showed that the toxic efficacy of VU041 within 24 h was significantly enhanced by increasing the osmolality of the rearing water to 100 mOsm/kg H2O with NaCl, KCl or mannitol; KCl provided the strongest enhancement compared to NaCl and mannitol. These data suggest: (1) the important role of Kir channels in the acclimation of larvae to elevated ambient osmolality and KCl concentrations; and (2) the disruption of osmoregulation as a potential mechanism of the toxic action of VU041. The present study provides the first evidence that inhibition of Kir channels is lethal to larval mosquitoes and broadens the potential applications of our existing arsenal of small molecule inhibitors of Kir channels, which have previously only been considered for developing adulticides.
机译:内向整流钾通道在蚊子和其他昆虫的生理中起着关键作用。我们的研究小组除其他外,先前证明了Kir通道的小分子抑制剂是有前途的先导分子,可用于开发新型杀虫剂来控制成年雌性蚊子。但是,未知使用Kir通道抑制剂作为杀幼虫剂。在这里,我们测试了以下假设:药典抑制埃及伊蚊幼虫(几种医学上重要的虫媒病毒的载体)中的Kir通道会导致致死性。我们证明向第一龄幼虫的饲养水(去离子水)中添加钡(一种非特异性的Kir通道阻滞剂钡)或VU041(一种特定的蚊式Kir1通道小分子抑制剂),在48小时内杀死了它们。我们进一步表明,通过用NaCl,KCl或甘露醇将饲养水的重量克分子渗透压浓度提高到100 mOsm / kg H2O,VU041在24小时内的毒性显着增强。与氯化钠和甘露醇相比,氯化钾提供了最强的增强作用。这些数据表明:(1)Kir通道在幼虫适应环境渗透压和KCl浓度升高中的重要作用; (2)渗透调节的破坏是VU041毒性作用的潜在机制。本研究提供了第一个证据,表明对Kir通道的抑制对幼虫是致命的,并扩大了我们现有的Kir通道小分子抑制剂库的潜在应用范围,而后者以前仅被考虑用于开发杀人剂。

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