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首页> 外文期刊>Chemical research in toxicology >Golden Age of RyR and GABA-R Diamide and Isoxazoline Insecticides: Common Genesis, Serendipity, Surprises, Selectivity, and Safety
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Golden Age of RyR and GABA-R Diamide and Isoxazoline Insecticides: Common Genesis, Serendipity, Surprises, Selectivity, and Safety

机译:RyR和GABA-R双酰胺和异恶唑啉杀虫剂的黄金时代:常见的成因,偶然性,意外,选择性和安全性

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The serendipitous observation of the insecticidal activity of a candidate herbicide was the first in a series of surprises that changed the course of insecticide research and opened the Golden Age of Diamide and Isoxazoline Insecticides which have a common genesis. Two novel modes of action were discovered, one involving the ?-aminobutyric acid (GABA) receptor of the chloride channel and the other the ryanodine receptor (RyR) of the calcium-activated calcium channel. These are old insecticide targets, but physiological assays and radioligand binding studies reveal that the new diamides and isoxazolines act at previously unrecognized sites without cross-resistance to other chemotypes and more important differing between insects and mammals resulting in selective toxicity and mechanistically based safety. The phthalic diamide flubendiamide and anthranilic diamides chlorantraniliprole and cyantraniliprole act at an allosteric site of the RyR to activate calcium release in insects but not mammals. They are the most important insecticide introductions of the past decade. Isoxazoline and meta-diamide insecticides and their previously unrecognized GABA-R target are more recent discoveries. Isoxazolines are currently important in flea and tick control in dogs and cats, and meta-diamides show promise for pest management and crop protection. These 21st century RyR and GABA-R diamides and isoxazolines were serendipitous discoveries and developments showing the importance of mechanism studies in maintaining the arsenal of safe and effective insecticides.
机译:对候选除草剂的杀虫活性进行偶然的观察是一系列令人惊奇的事情中的第一件事,这些改变改变了杀虫剂的研究方向,并开启了具有共同起源的双酰胺和异恶唑啉杀虫剂的黄金时代。发现了两种新颖的作用方式,一种涉及氯化物通道的α-氨基丁酸(GABA)受体,而另一种涉及钙激活的钙通道的ryanodine受体(RyR)。这些是古老的杀虫剂靶标,但生理测定和放射性配体结合研究表明,新的二酰胺和异恶唑啉可在以前无法识别的位点起作用,而不会与其他化学型产生交叉耐药性,更重要的是昆虫与哺乳动物之间的差异导致选择性毒性和基于机械的安全性。邻苯二甲酸二酰胺氟苯二酰胺和邻氨基苯二甲酰氯甲腈和氰基甲腈在RyR的变构位点起作用,以激活昆虫而非哺乳动物中的钙释放。它们是过去十年中最重要的杀虫剂介绍。异恶唑啉和间二酰胺类杀虫剂及其以前无法识别的GABA-R靶标是最新发现。异恶唑啉目前在控制猫和狗的跳蚤和壁虱中很重要,而偏二酰胺显示出对有害生物管理和作物保护的希望。这些21世纪的RyR和GABA-R二酰胺和异恶唑啉是偶然的发现和发展,显示出机制研究对于维持安全有效的杀虫剂库的重要性。

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