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蚊子对疟原虫的多方面反应。

The multifaceted mosquito anti-Plasmodium response.

机构信息

INSERM U963, CNRS UPR9022, 15 rue René Descartes, 67084 Strasbourg, Cedex, France.

出版信息

Curr Opin Microbiol. 2011 Aug;14(4):429-35. doi: 10.1016/j.mib.2011.07.016. Epub 2011 Jul 27.

Abstract

Plasmodium development within its mosquito vector is an essential step in malaria transmission, as illustrated in world regions where malaria was successfully eradicated via vector control. The innate immune system of most mosquitoes is able to completely clear a Plasmodium infection, preventing parasite transmission to humans. Understanding the biological basis of this phenomenon is expected to inspire new strategies to curb malaria incidence in countries where vector control via insecticides is unpractical, or inefficient because insecticide resistance genes have spread across mosquito populations. Several aspects of mosquito biology that condition the success of the parasite in colonizing its vector begin to be understood at the molecular level, and a wealth of recently published data highlights the multifaceted nature of the mosquito response against parasite invasion. In this brief review, we attempt to provide an integrated view of the challenges faced by the parasite to successfully invade its mosquito host, and discuss the possible intervention strategies that could exploit this knowledge for the fight against human malaria.

摘要

疟原虫在其蚊子媒介内的发育是疟疾传播的一个重要步骤,这在世界上疟疾通过媒介控制成功消除的地区得到了体现。大多数蚊子的先天免疫系统能够完全清除疟原虫感染,防止寄生虫传播给人类。了解这一现象的生物学基础有望激发新的策略,以遏制那些通过杀虫剂进行媒介控制不切实际或效率低下的国家(因为杀虫剂耐药基因已经在蚊子种群中传播)的疟疾发病率。蚊子生物学的几个方面开始在分子水平上理解影响寄生虫成功定殖其媒介的因素,并且大量最近发表的数据强调了蚊子对寄生虫入侵的多方面反应的性质。在这篇简要综述中,我们试图提供一个综合的视角,了解寄生虫为成功入侵其蚊子宿主而面临的挑战,并讨论可能利用这一知识的干预策略,以对抗人类疟疾。

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