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Prospects for malaria control through manipulation of mosquito larval habitats and olfactory-mediated behavioural responses using plant-derived compounds

机译:通过控制蚊子幼虫栖息地和使用植物来源的化合物进行嗅觉介导的行为反应来控制疟疾的前景

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Malaria presents an overwhelming public health challenge, particularly in sub-Saharan Africa where vector favourable conditions and poverty prevail, potentiating the disease burden. Behavioural variability of malaria vectors poses a great challenge to existing vector control programmes with insecticide resistance already acquired to nearly all available chemical compounds. Thus, approaches incorporating plant-derived compounds to manipulate semiochemical-mediated behaviours through disruption of mosquito olfactory sensory system have considerably gained interests to interrupt malaria transmission cycle. The combination of push-pull methods and larval control have the potential to reduce malaria vector populations, thus minimising the risk of contracting malaria especially in resource-constrained communities where access to synthetic insecticides is a challenge. In this review, we have compiled information regarding the current status of knowledge on manipulation of larval ecology and chemical-mediated behaviour of adult mosquitoes with plant-derived compounds for controlling mosquito populations. Further, an update on the current advancements in technologies to improve longevity and efficiency of these compounds for field applications has been provided.
机译:疟疾给公共卫生带来了巨大的挑战,特别是在撒哈拉以南非洲,那里的病媒条件和贫困普遍存在,加剧了疾病负担。疟疾媒介的行为变异性对现有的媒介控制计划提出了巨大挑战,因为已经对几乎所有可用化合物产生了杀虫剂抗药性。因此,掺入植物来源的化合物以通过破坏蚊子嗅觉感觉系统来操纵化学信息素介导的行为的方法已经引起了人们对中断疟疾传播周期的兴趣。推挽方法和幼虫控制相结合,有可能减少疟疾媒介种群,从而使感染疟疾的风险降到最低,尤其是在资源有限的社区,在这些社区中获取合成杀虫剂是一个挑战。在这篇综述中,我们已经汇编了有关使用幼虫控制植物种群的化合物控制成虫的幼虫生态学和化学介导的行为的知识的当前状态的信息。此外,已经提供了用于改善这些化合物在现场应用中的寿命和效率的技术进步的最新进展。

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