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A testing cascade to identify repurposed insecticides for next-generation vector control tools: screening a panel of chemistries with novel modes of action against a malaria vector

机译:测试级联以识别用于下一代媒介控制工具的重新使用的杀虫剂:筛选一组具有针对疟疾媒介的新作用方式的化学物质

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摘要

>Background: With insecticide resistance in malaria vectors spreading in geographical range and intensity, there is a need for compounds with novel modes of action to maintain the successes achieved to date by long-lasting insecticidal nets and indoor residual sprays, used as part of an insecticide resistance management strategy. Screening existing registered pesticides, predominantly those developed for use in agriculture, may provide a more rapid and less logistically challenging route to identifying active ingredients of value to public health than screening and chemical synthesis programmes for novel compounds. >Methods: Insecticides and acaricides from all IRAC classes, including those with unclassified modes of action, were assessed for inclusion in a laboratory bioassay testing cascade against adult female Anopheles gambiae mosquitoes. A longlist of representative candidate compounds was selected, excluding those with safety concerns, unsuitable physiochemical properties, and likely hurdles to registration for public health use.  An initial screen using topical application eliminated compounds with insufficient intrinsic activity, and a tarsal contact assay identified those with activity at an appropriate concentration. Compounds of interest were ranked by relative potency using dose response assays and discriminating dose calculations. >Results: Inclusion of an adjuvant enhanced the tarsal efficacy of several compounds, facilitating the promotion of chemistries with great potential, given suitable formulation, which would not progress based on activity of compound alone. Comparison of data between stages in the testing cascade suggest that a more streamlined approach, topical application to test for intrinsic activity and determining the discriminating dose to compare relative potency of compounds, may be sufficient to identify compounds with potential value for use in long lasting insecticidal nets and indoor residual spray products. >Conclusions: Identified were 11 compounds of interest as vector control agents (in descending order of potency): clothianidin, spinetoram, metaflumizone, dinotefuran, indoxacarb, abamectin, sulfoxaflor, oxazosulfyl, triflumezopyrim, fenpyroximate, and tolfenpyrad.
机译:>背景:由于疟疾媒介中的杀虫剂耐药性在地理范围和强度上不断扩展,因此需要具有新颖作用方式的化合物,以维持迄今为止通过长效杀虫网和室内残留喷雾剂获得的成功。 ,用作抗药性管理策略的一部分。与新化合物的筛选和化学合成程序相比,筛选现有的注册农药(主要是为农业开发的注册农药)可能为鉴定对公众健康有价值的活性成分提供了一种更快速,对物流没有挑战性的途径。 >方法:对来自所有IRAC类的杀虫剂和杀螨剂(包括具有未分类作用模式的杀虫剂和杀螨剂)进行了评估,以纳入针对成年雌性冈比亚按蚊的实验室生物分析测试中。选择了具有代表性的候选化合物长名单,但不包括那些出于安全考虑,不适当的理化性质以及可能会阻碍公共卫生用途注册的化合物。使用局部应用的初步筛选消除了固有活性不足的化合物,并且接触分析确定了在适当浓度下具有活性的化合物。使用剂量反应分析和区分剂量计算,根据相对效力对目标化合物进行排名。 >结果:如果添加合适的制剂,佐剂的加入可以增强几种化合物的喱功效,从而促进具有巨大潜力的化学物质的推广,而仅基于化合物的活性就不会进展。测试级联中各阶段之间数据的比较表明,更简化的方法,局部应用以测试内在活性并确定区分剂量以比较化合物的相对效价,可能足以确定具有潜在价值的化合物,可用于长期杀虫蚊帐和室内残留喷雾产品。 >结论:确定了11种作为载体控制剂的目标化合物(以效力递减的顺序):布比尼丁,斯吡托拉姆,甲氟米松,地诺呋喃,茚虫威,阿巴菌素,磺胺氧磷,恶唑亚磺酰基,三氟甲并吡喃,芬吡肟酯和托芬吡拉德。

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