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昆虫学监测数据为科特迪瓦实施适当和可持续的疟疾病媒控制提供决策依据。

Entomological monitoring data driving decision-making for appropriate and sustainable malaria vector control in Côte d'Ivoire.

机构信息

PMI VectorLink project, Abidjan, Côte d'Ivoire.

Swiss Centre of Scientific Research in Côte d'Ivoire, Abidjan, Côte d'Ivoire.

出版信息

Malar J. 2023 Jan 12;22(1):14. doi: 10.1186/s12936-023-04439-z.

Abstract

BACKGROUND

Entomological surveillance provides critical information on vectors for appropriate malaria vector control and strategic decision-making. The widely documented insecticide resistance of malaria vectors in Côte d'Ivoire requires that any vector control intervention deployment be driven by entomological data to optimize its effectiveness and appropriate resource allocations. To achieve this goal, this study documents the results of monthly vector surveillance and insecticide susceptibility tests conducted in 2019 and a review of all previous entomological monitoring data used to guide vector control decision making. Furthermore, susceptibility to pirimiphos-methyl and clothianidin was assessed in addition to chlorfenapyr and pyrethroids (intensity and piperonyl butoxide (PBO) synergism) tests previously reported. Vector bionomic data were conducted monthly in four sites (Sakassou, Béoumi, Dabakala and Nassian) that were selected based on their reported high malaria incidence. Adult mosquitoes were collected using human landing catches (HLCs), pyrethrum spray catches (PSCs), and human-baited CDC light traps to assess vector density, behaviour, species composition and sporozoite infectivity.

RESULTS

Pirimiphos-methyl and clothianidin susceptibility was observed in 8 and 10 sites, respectively, while previous data reported chlorfenapyr (200 µg/bottle) susceptibility in 13 of the sites, high pyrethroid resistance intensity and increased mortality with PBO pre-exposure at all 17 tested sites. Anopheles gambiae sensu lato was the predominant malaria vector collected in all four bionomic sites. Vector density was relatively higher in Sakassou throughout the year with mean biting rates of 278.2 bites per person per night (b/p/n) compared to Béoumi, Dabakala and Nassian (mean of 48.5, 81.4 and 26.6 b/p/n, respectively). The mean entomological inoculation rate (EIR) was 4.44 infective bites per person per night (ib/p/n) in Sakassou, 0.34 ib/p/n in Beoumi, 1.17 ib/p/n in Dabakala and 1.02 ib/p/n in Nassian. The highest EIRs were recorded in October in Béoumi (1.71 ib/p/n) and Nassian (3.22 ib/p/n), in July in Dabakala (4.46 ib/p/n) and in May in Sakassou (15.6 ib/p/n).

CONCLUSION

Based on all results and data review, the National Malaria Control Programme developed and implemented a stratified insecticide-treated net (ITN) mass distribution in 2021 considering new generation ITNs. These results also supported the selection of clothianidin-based products and an optimal spraying time for the first indoor residual spraying (IRS) campaign in Sakassou and Nassian in 2020.

摘要

背景

昆虫学监测为适当的疟疾媒介控制和战略决策提供了关键信息。科特迪瓦疟疾媒介广泛存在的杀虫剂抗性,要求任何媒介控制干预措施的部署都必须以昆虫学数据为依据,以优化其效果和适当的资源分配。为了实现这一目标,本研究记录了 2019 年每月进行的蚊虫监测和杀虫剂敏感性测试的结果,并回顾了所有以前用于指导媒介控制决策的昆虫学监测数据。此外,除了以前报告的氯菊酯和拟除虫菊酯(强度和增效醚(PBO)协同作用)测试外,还评估了对吡虫啉和噻虫啉的敏感性。每月在四个地点(Sakassou、Béoumi、Dabakala 和 Nassian)进行蚊虫生物学数据收集,这些地点是根据其报告的高疟疾发病率选择的。使用人体降落捕获(HLC)、除虫菊喷雾捕获(PSC)和人类诱饵 CDC 诱蚊灯收集成蚊,以评估媒介密度、行为、物种组成和孢子感染性。

结果

在 8 个和 10 个地点观察到对吡虫啉和噻虫啉的敏感性,而以前的数据报告在 13 个地点对氯菊酯(200μg/瓶)敏感,在所有 17 个测试地点均观察到高拟除虫菊酯抗性强度和增效醚预暴露时死亡率增加。在所有四个生物学监测点均采集到按蚊属长角亚属,是主要的疟疾媒介。全年 Sakassou 的蚊虫密度相对较高,平均每人每晚叮咬率为 278.2 次/人/夜(b/p/n),而 Béoumi、Dabakala 和 Nassian 的平均叮咬率分别为 48.5、81.4 和 26.6 b/p/n。平均昆虫感染率(EIR)在 Sakassou 为 4.44 感染性叮咬/人/夜(ib/p/n),在 Beoumi 为 0.34 ib/p/n,在 Dabakala 为 1.17 ib/p/n,在 Nassian 为 1.02 ib/p/n。Béoumi 和 Nassian 的最高 EIR 出现在 10 月(分别为 1.71 ib/p/n 和 3.22 ib/p/n),Dabakala 的最高 EIR 出现在 7 月(4.46 ib/p/n),Sakassou 的最高 EIR 出现在 5 月(15.6 ib/p/n)。

结论

根据所有结果和数据回顾,国家疟疾控制规划于 2021 年制定并实施了分层驱虫蚊帐(ITN)大规模分发计划,考虑了新一代 ITN。这些结果还支持在 2020 年在 Sakassou 和 Nassian 选择基于噻虫啉的产品和最佳喷雾时间进行第一轮室内滞留喷洒(IRS)运动。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4c05/9838048/2c8f583f61bb/12936_2023_4439_Fig1_HTML.jpg

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