埃及伊蚊
基孔肯雅
伊蚊
生物
寨卡病毒
登革热
黄热病
虫媒病毒
毒理
登革热病毒
载体(分子生物学)
灭蚊
幼虫
病毒学
药理学
病毒
疟疾
生态学
免疫学
遗传学
基因
重组DNA
作者
Christopher D. Aretz,Sujay V. Kharade,Keagan S. Chronister,Renata Rusconi Trigueros,Erick J. Martínez Rodríguez,Peter M. Piermarini,Jerod S. Denton,Corey R. Hopkins
出处
期刊:ChemMedChem
[Wiley]
日期:2020-09-24
卷期号:16 (2): 319-327
被引量:5
标识
DOI:10.1002/cmdc.202000598
摘要
Zika virus (ZIKV), dengue fever (DENV) and chikungunya (CHIKV) are arboviruses that are spread to humans from the bite of an infected adult female Aedes aegypti mosquito. As there are no effective vaccines or therapeutics for these diseases, the primary strategy for controlling the spread of these viruses is to prevent the mosquito from biting humans through the use of insecticides. Unfortunately, the commonly used classes of insecticides have seen a significant increase in resistance, thus complicating control efforts. Inhibiting the renal inward rectifier potassium (Kir) channel of the mosquito vector Aedes aegypti has been shown to be a promising target for the development of novel mosquitocides. We have shown that Kir1 channels play key roles in mosquito diuresis, hemolymph potassium homeostasis, flight, and reproduction. Previous work from our laboratories identified a novel (phenylsulfonyl)piperazine scaffold as potent AeKir channel inhibitors with activity against both adult and larval mosquitoes. Herein, we report further SAR work around this scaffold and have identified additional compounds with improved in vitro potency and mosquito larvae toxicity.
科研通智能强力驱动
Strongly Powered by AbleSci AI