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疟原虫在蚊子中肠的定殖——将疟原虫卵囊中心舞台。

Malaria parasite colonisation of the mosquito midgut--placing the Plasmodium ookinete centre stage.

机构信息

The Walter and Eliza Hall Institute of Medical Research, Parkville, VIC 3052, Australia.

出版信息

Int J Parasitol. 2012 May 15;42(6):519-27. doi: 10.1016/j.ijpara.2012.02.004. Epub 2012 Mar 3.

Abstract

Vector-borne diseases constitute an enormous burden on public health across the world. However, despite the importance of interactions between infectious pathogens and their respective vector for disease transmission, the biology of the pathogen in the insect is often less well understood than the forms that cause human infections. Even with the global impact of Plasmodium parasites, the causative agents of malarial disease, no vaccine exists to prevent infection and resistance to all frontline drugs is emerging. Malaria parasite migration through the mosquito host constitutes a major population bottleneck of the lifecycle and therefore represents a powerful, although as yet relatively untapped, target for therapeutic intervention. The understanding of parasite-mosquito interactions has increased in recent years with developments in genome-wide approaches, genomics and proteomics. Each development has shed significant light on the biology of the malaria parasite during the mosquito phase of the lifecycle. Less well understood, however, is the process of midgut colonisation and oocyst formation, the precursor to parasite re-infection from the next mosquito bite. Here, we review the current understanding of cellular and molecular events underlying midgut colonisation centred on the role of the motile ookinete. Further insight into the major interactions between the parasite and the mosquito will help support the broader goal to identify targets for transmission-blocking therapies against malarial disease.

摘要

虫媒传染病在全球范围内给公共卫生带来了巨大负担。然而,尽管传染病病原体与其各自的媒介在疾病传播方面的相互作用非常重要,但病原体在昆虫中的生物学特性往往不如引起人类感染的形式了解得那么透彻。即使是全球范围内寄生虫疟原虫(引起疟疾的病原体)的影响,也没有疫苗可以预防感染,而且对所有一线药物的耐药性正在出现。疟原虫在蚊子宿主中的迁移构成了生命周期中的一个主要种群瓶颈,因此代表了一个强大的、尽管尚未充分开发的治疗干预靶点。近年来,随着全基因组方法、基因组学和蛋白质组学的发展,对寄生虫与蚊子相互作用的理解有所增加。每一项发展都极大地揭示了疟原虫在生命周期的蚊子阶段的生物学。然而,对于肠道定植和卵囊形成的过程,即下一次蚊子叮咬时寄生虫重新感染的前兆,了解得较少。在这里,我们回顾了以运动性合子为中心的肠道定植的细胞和分子事件的现有理解。进一步深入了解寄生虫与蚊子之间的主要相互作用将有助于支持更广泛的目标,即确定针对疟疾传播阻断疗法的靶标。

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