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Current and Future Repellent Technologies: The Potential of Spatial Repellents and Their Place in Mosquito-Borne Disease Control

机译:当前和未来的驱蚊技术:空间驱蚊剂的潜力及其在蚊媒疾病控制中的地位

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摘要

Every year, approximately 700,000 people die from complications associated with etiologic disease agents transmitted by mosquitoes. While insecticide-based vector control strategies are important for the management of mosquito-borne diseases, insecticide-resistance and other logistical hurdles may lower the efficacy of this approach, especially in developing countries. Repellent technologies represent another fundamental aspect of preventing mosquito-borne disease transmission. Among these technologies, spatial repellents are promising alternatives to the currently utilized contact repellents and may significantly aid in the prevention of mosquito-borne disease if properly incorporated into integrated pest management approaches. As their deployment would not rely on prohibitively expensive or impractical novel accessory technologies and resources, they have potential utility in developing countries where the burden of mosquito-borne disease is most prevalent. This review aims to describe the history of various repellent technologies, highlight the potential of repellent technologies in preventing the spread of mosquito-borne disease, and discuss currently known mechanisms that confer resistance to current contact and spatial repellents, which may lead to the failures of these repellents. In the subsequent section, current and future research projects aimed at exploring long-lasting non-pyrethroid spatial repellent molecules along with new paradigms and rationale for their development will be discussed.
机译:每年,约有70万人死于与蚊子传播的病因相关的并发症。尽管基于杀虫剂的病媒控制策略对蚊媒疾病的管理很重要,但抗药性和其他后勤障碍可能会降低这种方法的效果,特别是在发展中国家。驱蚊技术代表了防止蚊子传播疾病的另一个基本方面。在这些技术中,空间驱避剂是当前使用的接触性驱避剂的有前途的替代方法,如果适当地整合到病虫害综合治理方法中,它们可以显着帮助预防蚊媒疾病。由于它们的部署不会依赖于昂贵的或不切实际的新型辅助技术和资源,因此它们在蚊媒疾病负担最普遍的发展中国家具有潜在的实用性。这篇综述旨在描述各种驱蚊技术的历史,重点介绍驱蚊技术在防止蚊媒疾病传播方面的潜力,并讨论目前已知的对当前接触和空间驱虫剂产生抵抗力的机制,这可能会导致驱虫失败。这些驱蚊剂。在随后的部分中,将讨论旨在探索长效的非拟除虫菊酯类空间驱避剂分子的新方法和原理的当前和将来的研究项目。

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