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拟除虫菊酯衍生酸和醇:生物活性及其对驱蚊和毒性的协同作用。

Pyrethroid-Derived Acids and Alcohols: Bioactivity and Synergistic Effects on Mosquito Repellency and Toxicity.

机构信息

Emerging Pathogens Institute, Department of Entomology and Nematology, University of Florida, Gainesville, Florida 32610, United States.

USDA, ARS, Center for Medical, Agricultural and Veterinary Entomology, Gainesville, Florida 32608, United States.

出版信息

J Agric Food Chem. 2020 Mar 11;68(10):3061-3070. doi: 10.1021/acs.jafc.9b07979. Epub 2020 Feb 26.

Abstract

Pyrethroids are one of the most commonly used classes of insecticides, and their acid and alcohol components are esterase degradation products, usually considered to be biologically inactive. In this study, it was found that several pyrethroid acids had a spatial repellent activity that was greater than DEET, often more active than the parent pyrethroids, and showed little cross resistance in a pyrethroid-resistant Puerto Rico strain of mosquitoes. Further investigation revealed that the acids can synergize not only contact repellent standards but also other pyrethroid components as well as the parent pyrethroids themselves. Synergism by the pyrethroid acids is expressed as both increased spatial repellency and vapor toxicity as well as human bite protection. Electrophysiological studies confirmed that pyrethroid acids (100 μM) had no effect on neuronal discharge in larval CNS and were detected by electroantennography, and there was little resistance to olfactory sensing of these acids in antennae from Puerto Rico strain mosquitoes carrying kdr mutations. Thus, the data suggest that the pyrethroid acids have a different mode of action than the parent pyrethroids, unrelated to the voltage-sensitive sodium channel. The results highlight the potential of pyrethroid acids to be useful in future repellent formulations.

摘要

拟除虫菊酯是最常用的杀虫剂之一,其酸和醇成分是酯酶降解产物,通常被认为是生物上无活性的。本研究发现,几种拟除虫菊酸具有比避蚊胺更强的空间驱避活性,通常比母体拟除虫菊酯更具活性,并且在对拟除虫菊酯具有抗性的波多黎各蚊虫品系中表现出很小的交叉抗性。进一步的研究表明,这些酸不仅可以与接触驱避标准协同增效,还可以与其他拟除虫菊酯成分以及母体拟除虫菊酯本身协同增效。拟除虫菊酸的协同作用表现为空间驱避性和蒸气毒性增加以及对人体叮咬的保护作用。电生理学研究证实,拟除虫菊酸(100 μM)对幼虫中枢神经系统神经元放电没有影响,并且用电触角电图法检测到,带有 kdr 突变的来自波多黎各品系蚊虫的触角对这些酸的嗅觉感知几乎没有抗性。因此,数据表明拟除虫菊酸具有不同于母体拟除虫菊酯的作用模式,与电压敏感的钠离子通道无关。研究结果突出了拟除虫菊酸在未来驱避剂配方中的潜在用途。

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