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代谢抗性和 1014F kdr 突变高频的组合导致喀麦隆几内亚草原地区的按蚊种群对拟除虫菊酯产生抗性。

A combination of metabolic resistance and high frequency of the 1014F kdr mutation is driving pyrethroid resistance in Anopheles coluzzii population from Guinea savanna of Cameroon.

机构信息

LSTM Research Unit, Centre for Research in Infectious Diseases (CRID), P.O. Box 13591, Yaoundé, Cameroon.

Department of Microbiology and Parasitology, University of Buea, P.O. Box 63, Buea, Cameroon.

出版信息

Parasit Vectors. 2019 May 27;12(1):263. doi: 10.1186/s13071-019-3523-7.

Abstract

BACKGROUND

The scale-up in the distribution of long-lasting insecticidal nets (LLINs) and indoor residual spraying has significantly reduced malaria burden and mortality. However, insecticide resistance, among other factors, is responsible for a recent rebound in malaria transmission in 2015-2016, threatening the progress so far made. As a contribution towards understanding patterns of resistance and its mechanism in the field we characterized a population of Anopheles gambiae (s.l.) from Gounougou, a Guinea savanna of north/central Cameroon.

RESULTS

Indoor collection conducted in September 2017 identified Anopheles coluzzii and Anopheles arabiensis as the unique Anopheles vector species, with abundances of 83 and 17%, respectively. Analysis of infection with TaqMan assays using heads/thoraces of indoor collected females of An. coluzzii revealed a low Plasmodium falciparum parasite rate of 4.7%. Bioassays conducted with female An. coluzzii revealed extreme resistance, with low mortalities of only 3.75 ± 1.25%, 3.03 ± 1.59% and 1.45 ± 1.45%, respectively, for permethrin, deltamethrin and DDT. In contrast, high susceptibility was obtained with the organophosphates and carbamates, with mortalities in the range of 98-100%. Synergist assays with piperonyl butoxide (PBO) recovered some susceptibility with increased mortality for permethrin to 14.88 ± 8.74%, and for deltamethrin to 32.50 ± 10.51% (~27-fold increase compared to mortalities with deltamethrin alone, χ = 29, df = 1, P < 0.0001). These correlated with the results of cone bioassays which revealed complete loss of efficacy of Olyset®Net (0% mortality) and PermaNet®2.0 (0% mortality), and the considerable loss of efficacy of Olyset®Plus (mortality of 2 ± 2%), PermaNet®3.0 side panel (mortality of 2 ± 2%) and PermaNet3.0® roof (mortality of 16 ± 5.1%). Time-course bioassays conducted with deltamethrin established a high intensity of resistance, with LT of 309.09 (95% CI 253.07-393.71, Fiducial), and a resistance ratio of 93.09 compared with the fully susceptible Ngoussou laboratory colony. TaqMan genotyping revealed a high frequency of the 1014F allele (65.25%) in the An. coluzzii populations. Sequencing of a fragment of the voltage-gated sodium channel identified a single An. arabiensis female harbouring the 1014S kdr mutation.

CONCLUSIONS

This finding of high pyrethroid and DDT resistance in An. coluzzii from north-central Cameroon is a major obstacle to malaria control using pyrethroid bednets and indoor residual spraying with DDT.

摘要

背景

长效杀虫蚊帐(LLINs)和室内滞留喷洒的推广显著降低了疟疾负担和死亡率。然而,杀虫剂耐药性等因素导致 2015-2016 年疟疾传播出现反弹,威胁到迄今为止取得的进展。为了了解田间的耐药模式及其机制,我们对来自喀麦隆北部/中部几内亚草原的 Gounougou 的冈比亚按蚊(s.l.)种群进行了特征描述。

结果

2017 年 9 月进行的室内采集鉴定出安蚊属和阿拉伯按蚊为唯一的疟蚊种,丰度分别为 83%和 17%。使用室内采集的安蚊属雌性头部/胸部进行 TaqMan 检测分析,发现恶性疟原虫寄生虫率很低,为 4.7%。用女性安蚊属进行的生物测定显示出极端的抗药性,仅 3.75±1.25%、3.03±1.59%和 1.45±1.45%的死亡率,分别为氯菊酯、溴氰菊酯和滴滴涕。相比之下,有机磷和氨基甲酸酯的敏感性较高,死亡率在 98-100%之间。用胡椒基丁醚(PBO)进行的增效剂测定显示,氯菊酯的死亡率恢复到 14.88±8.74%,溴氰菊酯的死亡率恢复到 32.50±10.51%(与单独使用溴氰菊酯相比增加了约 27 倍,χ=29,df=1,P<0.0001)。这与锥体生物测定的结果相吻合,锥体生物测定显示 Olyset®Net(0%死亡率)和 PermaNet®2.0(0%死亡率)完全失效,Olyset®Plus(死亡率 2±2%)、PermaNet®3.0 侧板(死亡率 2±2%)和 PermaNet3.0®屋顶(死亡率 16±5.1%)的效能大大降低。用溴氰菊酯进行的时间进程生物测定确定了高抗性强度,LT 为 309.09(95%CI 253.07-393.71,置信区间),与完全敏感的 Ngoussou 实验室种群相比,抗性比为 93.09。TaqMan 基因分型显示,安蚊属种群中 1014F 等位基因的频率很高(65.25%)。电压门控钠通道的片段测序发现,一只雌性阿拉伯按蚊携带 1014S kdr 突变。

结论

喀麦隆中北部发现的安蚊属对拟除虫菊酯和滴滴涕高度耐药,这是使用拟除虫菊酯蚊帐和滴滴涕室内滞留喷洒控制疟疾的主要障碍。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/57ba/6537440/d9afa5c5fbb3/13071_2019_3523_Fig1_HTML.jpg

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