Dynamics of insecticide resistance and exploring biochemical mechanisms involved in pyrethroids and dichlorodiphenyltrichloroethane (DDT) cross-resistance in Anopheles gambiae s.l populations from Benin, West Africa

Nazaire Aïzoun, R. Azondekon, R. Aïkpon, Rodrigue Anagonou, V. Gnanguénon, M. Eto
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引用次数: 7

Abstract

As a result of the free-insecticide treated net distribution by National Malaria Control Programme (NMCP) in July 2011 throughout the entire country, it is useful to investigate the dynamics of insecticide resistance in Anopheles gambiae from Benin and the metabolic resistance mechanisms involved in this evolution of resistance. Larvae and pupae of A. gambiae s.l. mosquitoes were collected from the breeding sites in Littoral, Oueme and Zou departments. Centers for Disease Control and Prevention (CDC), bioassays were performed with permethrin (21.5 µg per bottle) and dichlorodiphenyltrichloroethane (DDT) (100 µg per bottle) whereas World Health Organization (WHO) susceptibility tests were performed with lambdacyhalothrin (0.05%). CDC biochemical assays using synergists piperonyl butoxide (PBO) and ethacrynic acid (ETAA) were also carried out. A. gambiae Akron, Suru-lere and Bame populations were resistant to permethrin and DDT in 2008 and 2013. A. gambiae Akron and Suru-lere were resistant to lambdacyhalothrin in 2013. A. gambiae Akron were susceptible to this product in 2008 whereas lambdacyhalothrin resistance status in A. gambiae Suru-lere populations in 2008 required further investigation. Mono-oxygenases were involved in resistance of A. gambiae Suru-lere to pyrethroids whereas glutathione S-transferases (GSTs) may play a role in A. gambiae Akron and Suru-lere resistant to DDT. This study shows that metabolic resistance conferred by detoxifying enzymes is an indication of phenotypic resistance to both DDT and pyrethroids in Southern Benin. Key words: Dynamics, piperonyl butoxide, ethacrynic acid, insecticide, vectors, resistance.
西非贝宁冈比亚按蚊(Anopheles gambiae s.l)种群拟除虫菊酯与DDT交叉抗性动态及生化机制探讨
由于2011年7月国家疟疾控制规划(NMCP)在全国范围内分发了无杀虫剂处理过的蚊帐,因此有必要调查贝宁冈比亚按蚊的杀虫剂抗性动态以及这种抗性演变所涉及的代谢抗性机制。在滨海省、乌梅省和邹省孳生地采集冈比亚伊蚊幼虫和蛹。美国疾病控制与预防中心(CDC)采用氯菊酯(21.5µg /瓶)和二氯二苯三氯乙烷(DDT)(100µg /瓶)进行生物测定,而世界卫生组织(WHO)采用高效氯氰菊酯(0.05%)进行药敏试验。CDC生化分析采用增效剂胡椒酰丁醇(PBO)和乙酸(ETAA)。2008年和2013年,冈比亚蠓Akron、Suru-lere和Bame种群对氯菊酯和滴滴涕均有抗药性。2013年冈比亚拟蚊Akron和Suru-lere对高效氯氰菊酯有抗药性。2008年冈比亚阿克伦伊蚊对该产品敏感,2008年冈比亚苏鲁伊蚊种群对氯氰菊酯的抗性情况有待进一步调查。单加氧酶参与了冈比亚拟南田鼠对拟除虫菊酯的抗性,而谷胱甘肽s -转移酶(GSTs)可能在冈比亚拟南田鼠Akron和Suru-lere对DDT的抗性中起作用。这项研究表明,解毒酶赋予的代谢抗性是贝宁南部对滴滴涕和拟除虫菊酯类杀虫剂表型抗性的一个指标。关键词:动力学,胡椒酰丁醇,乙酸,杀虫剂,媒介,抗性。
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