Verma Vaishali, Elamathi N, Velamuri Poonam S, Sreehari U, Agrawal O P, Raghavendra K
National Institute of Malaria Research (ICMR), Dwarka, New Delhi, India.
J Vector Borne Dis. 2015 Mar;52(1):99-103.
BACKGROUND & OBJECTIVES: For effective management of vector resistance there is a need for new insecticide molecules with novel modes of action. For desired toxic effect of an insecticide, apart from other behavioural aspects, toxicity and chemical nature of the molecule are important that may cause irritability in the mosquito to the insecticide affecting the uptake. In this study, a pyrrole class insecticide, chlorfenapyr (a late acting insecticide) was tested for its irritability against multiple-insecticide-susceptible and -resistant strains of Anopheles stephensi Liston 1901 (Diptera: Culicidae).
Studies were conducted to assess the irritability due to chlorfenapyr, DDT, malathion, deltamethrin and permethrin and intrinsic toxicity of chlorfenapyr in multiple-insecticide-susceptible and -resistant laboratory strains of An. stephensi following standard WHO methods.
Chlorfenapyr molecule has shown least irritant effect against susceptible and resistant strains among all the insecticides tested allowing more landing time to the vector species on the impregnated surfaces to pick-up lethal dose.
Chlorfenapyr could be an ideal insecticide for management of multiple-insecticide-resistance including pyrethroids.
为有效管理病媒抗药性,需要具有新作用方式的新型杀虫剂分子。对于杀虫剂的预期毒性作用,除其他行为方面外,分子的毒性和化学性质很重要,这可能会使蚊子对影响摄取的杀虫剂产生易怒反应。在本研究中,测试了吡咯类杀虫剂虫螨腈(一种迟效杀虫剂)对1901年斯蒂芬斯按蚊(双翅目:蚊科)多种杀虫剂敏感和抗性品系的刺激性。
按照世界卫生组织标准方法,对虫螨腈、滴滴涕、马拉硫磷、溴氰菊酯和氯菊酯引起的刺激性以及虫螨腈在斯蒂芬斯按蚊多种杀虫剂敏感和抗性实验室品系中的内在毒性进行了研究。
在所测试的所有杀虫剂中,虫螨腈分子对敏感和抗性品系的刺激作用最小,使病媒物种在浸渍表面上有更多的停留时间来摄取致死剂量。
虫螨腈可能是管理包括拟除虫菊酯在内的多种杀虫剂抗性的理想杀虫剂。