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Development of an Insecticide-Free Trapping Bednet to Control Mosquitoes and Manage Resistance in Malaria Vector Control: A New Way of Thinking

机译:开发杀虫剂的诱捕蚊帐以控制蚊子和管理疟疾抗抗性:一种新的思维方式

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摘要

Insecticide resistance in mosquitoes reduces the effectiveness of malaria control interventions and has reversed the gains made in reducing malaria morbidity. Hence, new strategies are needed to mitigate the spread of resistance, preserve the efficacy of available insecticides, and restore the effectiveness of control. To combat resistance to insecticides in malaria mosquitoes, WHO recommends using long-lasting insecticide-impregnated mosquito bednets (LLINs) as well as the synergist piperonyl-butoxide (PBO). PBO enhances the insecticidal effect of the treated bednet. Unfortunately, decreases in performance of PBO-LLINs are now reported in some regions of Africa where mosquitoes are resistant to insecticides. Our objective was to develop an insecticide-free, mechanical solution that kills mosquitoes regardless of their insecticide resistance status, ultimately overcoming the problem of insecticide resistance. We designed and developed an insecticide-free mosquito trapping bednet for mass mosquito trapping and killing, the “T-Net”, and we show its efficacy compared to a conventional LLIN in Africa. Mathematical models were also developed to predict T-Net efficacy in individual homes and at the community level.
机译:蚊虫抗性抗性降低了疟疾控制干预的有效性,并扭转了降低疟疾发病率的增益。因此,需要进行新的策略来减轻抗性的扩散,保持可用杀虫剂的疗效,并恢复控制的有效性。为了应对疟疾蚊虫的杀虫剂,他建议使用长持久的杀虫剂浸渍的蚊帐(LLINS)以及增效者哌烷 - 丁氧化物(PBO)。 PBO增强了经过处理病床的杀虫作用。不幸的是,PBO-Llins的性能下降现在在非洲的一些地区报道,其中蚊子对杀虫剂抵抗力。我们的目标是开发一种无杀虫剂的机械解决方案,无论其杀虫剂抵抗状态如何,最终克服了杀虫剂抵抗的问题。我们设计和开发了一种无杀虫剂的蚊子诱捕蚊帐,用于大规模蚊子捕获和杀戮,“T-net”,与非洲传统的Llin相比,我们展示了效果。还开发了数学模型来预测个体家庭和社区层面的T净功效。

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