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喀麦隆南部埃博洛瓦地区恶性疟原虫复合体的杀虫剂抗性概况及机制

Insecticide Resistance Profile and Mechanisms in s.l. from Ebolowa, South Cameroon.

作者信息

Efa Salomon, Elanga-Ndille Emmanuel, Poumachu Yacouba, Tene Billy, Mikande Jacqueline Ze, Zakariaou Njoumémi, Wondji Charles S, Ndo Cyrille

机构信息

Department of Medical Entomology, Centre for Research in Infectious Diseases (CRID), Yaoundé P.O. Box 13591, Cameroon.

Faculty of Sciences, University of Yaoundé I, Yaoundé P.O. Box 337, Cameroon.

出版信息

Insects. 2022 Dec 8;13(12):1133. doi: 10.3390/insects13121133.

Abstract

Monitoring the trend of insecticide resistance and understanding associated genetic mechanisms is important for designing efficient malaria vector control strategies. This study was conducted to provide temporal data on insecticide resistance status and mechanisms in the major malaria vector Anopheles gambiae s.l. from Ebolowa, Southern Cameroon. Methods: Larvae of An. gambiae s.l. were collected from typical breeding sites throughout the city and reared to adulthood. Emerging adults were morphologically identified and WHO tube assays were performed to determine their susceptibility to carbamate, organophosphate and pyrethroid insecticides at diagnostic doses. When resistance was observed, its intensity was determined by performing WHO tube tests using 5 and 10 times the concentration of the diagnostic dose. Metabolic resistance mechanisms were investigated using insecticide-synergist assays. Sibling species of the An. gambiae complex were identified using SINE-PCR protocol. TaqMan assay was used to genotype the L1014F and L1014S kdr mutations, and the N1575Y mutation, an amplifier of the resistance conferred by the L1014F mutation. Results: Anopheles coluzzii was by far the dominant (99%) member of the An. gambiae s.l. complex in Ebolowa. The species was fully susceptible to carbamates and organophosphates, but resistant to all pyrethroid insecticides tested. Resistance was of moderate intensity for deltamethrin (mortality: 37%, 70% and 99% for 1×, 5× and 10× insecticide concentration, respectively) but rather of high intensity for permethrin (5% for 1×; 62% for 5× and 75% for 10×) and for alphacypermethrin (4.4% for 1×; 57% for 5× and 80% for 10×). Pre-exposure to the synergist PBO resulted in a full recovery of the susceptibility to delthametrin, but this was not observed for the other two pyrethroids tested. L1014S (kdr-East) and the N1575Y mutations were absent, whereas the L1014F (kdr-West) mutation was present at a high frequency (75%), showing a significant association with resistance to permethrin (OR = 3.8; 95%; CI [1.9−7.4]; p < 0.0001) and alphacypermethrin (OR = 3; 95%; CI [1.6−5.4]; p = 0.0002). Conclusion: The increased resistance of An. gambiae s.l. to pyrethroid insecticides as observed in Ebolowa poses a threat to the efficacy of LLINs used to protect populations from the bites of Anopheles mosquitoes that transmit malaria parasites. The present study further highlights the urgent need to implement resistance management strategies in order to maintain the effectiveness of insecticide-based vector control interventions and prevent a rebound in malaria-related mortality.

摘要

监测杀虫剂抗性趋势并了解相关遗传机制对于设计有效的疟疾媒介控制策略至关重要。本研究旨在提供喀麦隆南部埃博洛瓦主要疟疾媒介冈比亚按蚊复合种群杀虫剂抗性状况及机制的时间数据。方法:从全市典型繁殖地收集冈比亚按蚊复合种群幼虫并饲养至成虫。对羽化出的成虫进行形态学鉴定,并进行世卫组织药管法检测,以确定其对诊断剂量的氨基甲酸酯类、有机磷类和拟除虫菊酯类杀虫剂的敏感性。当观察到抗性时,通过使用诊断剂量5倍和10倍浓度进行世卫组织药管法检测来确定其强度。使用杀虫剂增效剂检测法研究代谢抗性机制。采用SINE-PCR方案鉴定冈比亚按蚊复合种群的姊妹种。使用TaqMan检测法对L1014F和L1014S kdr突变以及N1575Y突变(L1014F突变赋予抗性的增强子)进行基因分型。结果:在埃博洛瓦,科氏按蚊是冈比亚按蚊复合种群中占主导地位(99%)的成员。该物种对氨基甲酸酯类和有机磷类完全敏感,但对所有测试的拟除虫菊酯类杀虫剂均有抗性。对溴氰菊酯的抗性为中等强度(杀虫剂浓度为1倍、5倍和10倍时死亡率分别为37%、70%和99%),但对氯菊酯(1倍时为5%;5倍时为62%,10倍时为75%)和高效氯氰菊酯(1倍时为4.4%;5倍时为57%,10倍时为80%)的抗性较强。预先接触增效剂PBO可使对溴氰菊酯的敏感性完全恢复,但对其他两种测试的拟除虫菊酯类未观察到这种情况。不存在L1014S(kdr-东)和N1575Y突变,而L1014F(kdr-西)突变高频存在(75%),显示出与对氯菊酯(比值比=3.8;95%;置信区间[1.9−7.4];p<0.0001)和高效氯氰菊酯(比值比=3;95%;置信区间[1.6−5.4];p=0.0002)的抗性显著相关。结论:如在埃博洛瓦所观察到的,冈比亚按蚊复合种群对拟除虫菊酯类杀虫剂抗性增加对用于保护人群免受传播疟原虫的按蚊叮咬的长效驱虫蚊帐的效果构成威胁。本研究进一步凸显了实施抗性管理策略的迫切需求,以维持基于杀虫剂的媒介控制干预措施的有效性并防止疟疾相关死亡率反弹。

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