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在非洲通过实验小屋试验评估经杀虫剂处理蚊帐的昆虫学影响的系统评价。

Systematic review of the entomological impact of insecticide-treated nets evaluated using experimental hut trials in Africa.

作者信息

Nash Rebecca K, Lambert Ben, NʼGuessan Raphael, Ngufor Corine, Rowland Mark, Oxborough Richard, Moore Sarah, Tungu Patrick, Sherrard-Smith Ellie, Churcher Thomas S

机构信息

MRC Centre for Global Infectious Disease Analysis, Department of Infectious Disease Epidemiology, Imperial College London, Norfolk Place, London, W2 1PG, UK.

Institut Pierre Richet, Institut National de Santé Publique, Bouaké, Côte d'Ivoire.

出版信息

Curr Res Parasitol Vector Borne Dis. 2021 Aug 18;1:100047. doi: 10.1016/j.crpvbd.2021.100047. eCollection 2021.

Abstract

Resistance of anopheline mosquitoes to pyrethroid insecticides is spreading rapidly across sub-Saharan Africa, diminishing the efficacy of insecticide-treated nets (ITNs) - the primary tool for preventing malaria. The entomological efficacy of indoor vector control interventions can be measured in experimental hut trials (EHTs), where hut structures resemble local housing, but allow the collection of mosquitoes that entered, exited, blood-fed and/or died. There is a need to understand how the spread of resistance changes ITN efficacy and to elucidate factors influencing EHT results, including differences in experimental hut design, to support the development of novel vector control tools. A comprehensive database of EHTs was compiled following a systematic review to identify all known trials investigating ITNs or indoor residual spraying across sub-Saharan Africa. This analysis focuses on EHTs investigating ITNs and uses Bayesian statistical models to characterise the complex interaction between ITNs and mosquitoes, the between-study variability, and the impact of pyrethroid resistance. As resistance rises, the entomological efficacy of ITNs declines. They induce less mortality and are less likely to deter mosquitoes from entering huts. Despite this, ITNs continue to offer considerable personal protection by reducing mosquito feeding until resistance reaches high levels. There are clear associations between the different entomological impacts of ITNs, though there is still substantial variability between studies, some of which can be accounted for by hut design. The relationship between EHT outcomes and the level of resistance (as measured by discriminating dose bioassays) is highly uncertain. The meta-analyses show that EHTs are an important reproducible assay for capturing the complex entomological efficacy of ITNs on blood-feeding mosquitoes. The impact of pyrethroid resistance on these measures appears broadly consistent across a wide geographical area once hut design is accounted for, suggesting results can be extrapolated beyond the sites where the trials were conducted. Further work is needed to understand factors influencing EHT outcomes and how the relationship between outcomes and resistance varies when different methods are used to assess the level of resistance in wild mosquito populations. This will allow more precise estimates of the efficacy of these important vector control tools.

摘要

按蚊对拟除虫菊酯类杀虫剂的抗性正在撒哈拉以南非洲迅速蔓延,这降低了经杀虫剂处理的蚊帐(ITNs)的功效,而ITNs是预防疟疾的主要工具。室内病媒控制干预措施的昆虫学效果可在实验小屋试验(EHTs)中进行测量,在这种试验中,小屋结构类似当地住房,但能收集进入、离开、吸食血液和/或死亡的蚊子。有必要了解抗性的传播如何改变ITN的功效,并阐明影响EHT结果的因素,包括实验小屋设计的差异,以支持新型病媒控制工具的开发。在进行系统综述后,编制了一个EHTs综合数据库,以识别撒哈拉以南非洲所有调查ITNs或室内滞留喷洒的已知试验。本分析聚焦于调查ITNs的EHTs,并使用贝叶斯统计模型来描述ITNs与蚊子之间的复杂相互作用、研究间的变异性以及拟除虫菊酯抗性的影响。随着抗性增加,ITNs的昆虫学效果下降。它们导致的死亡率降低,并且不太可能阻止蚊子进入小屋。尽管如此,在抗性达到高水平之前,ITNs通过减少蚊子叮咬仍能提供相当程度的个人防护。ITNs的不同昆虫学影响之间存在明显关联,不过研究之间仍存在很大变异性,其中一些可归因于小屋设计。EHT结果与抗性水平(通过区分剂量生物测定法测量)之间的关系高度不确定。荟萃分析表明,EHTs是一种重要的可重复测定方法,用于捕捉ITNs对吸食血液蚊子的复杂昆虫学效果。一旦考虑小屋设计,拟除虫菊酯抗性对这些指标的影响在广泛地理区域内似乎大致一致,这表明结果可以外推到试验进行地点之外的地方。需要进一步开展工作,以了解影响EHT结果的因素,以及当使用不同方法评估野生蚊子种群的抗性水平时,结果与抗性之间的关系如何变化。这将使这些重要病媒控制工具的功效估计更加精确。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/cd13/8906077/8f19ceacd558/ga1.jpg

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