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利用转基因技术研究寄生虫的免疫反应。

Investigating immune responses to parasites using transgenesis.

机构信息

Centre for Animal Biotechnology, Faculty of Veterinary and Agricultural Sciences, The University of Melbourne, Melbourne, VIC, 3010, Australia.

College of Science, Health and Engineering, La Trobe University, Melbourne, VIC, 3086, Australia.

出版信息

Parasit Vectors. 2019 Jun 15;12(1):303. doi: 10.1186/s13071-019-3550-4.

Abstract

Parasites comprise diverse and complex organisms, which substantially impact human and animal health. Most parasites have complex life-cycles, and by virtue of co-evolution have developed multifaceted, often life-cycle stage-specific relationships with the immune system of their hosts. The complexity in the biology of many parasites often limits our knowledge of parasite-specific immune responses, to in vitro studies only. The relatively recent development of methods to stably manipulate the genetic make-up of many parasites has allowed a better understanding of host-parasite interactions, particularly in vivo. In this regard, the use of transgenic parasites can facilitate the study of immunomodulatory mechanisms under in vivo conditions. Therefore, in this review, we specifically highlighted the current developments in the use of transgenic parasites to unravel the host's immune response to different life-cycle stages of some key parasite species such as Leishmania, Schistosoma, Toxoplasma, Plasmodium and Trypanosome and to some degree, the use of transgenic nematode parasites is also briefly discussed.

摘要

寄生虫包括多种多样且复杂的生物体,它们会对人类和动物的健康产生重大影响。大多数寄生虫的生命周期都很复杂,并且由于共同进化,它们与宿主的免疫系统形成了多方面的、常常是生命周期阶段特异性的关系。许多寄生虫的生物学复杂性往往限制了我们对寄生虫特异性免疫反应的了解,仅限于体外研究。近年来,一些方法的发展已经能够稳定地操纵许多寄生虫的遗传构成,这使得我们能够更好地理解宿主-寄生虫相互作用,特别是在体内。在这方面,使用转基因寄生虫可以促进在体内条件下研究免疫调节机制。因此,在这篇综述中,我们特别强调了使用转基因寄生虫来揭示宿主对一些关键寄生虫物种(如利什曼原虫、血吸虫、弓形虫、疟原虫和锥虫)不同生命周期阶段的免疫反应的最新进展,并且在某种程度上,还简要讨论了使用转基因线虫寄生虫的情况。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/56b0/6570953/8ee8f8143362/13071_2019_3550_Fig1_HTML.jpg

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