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对刚地弓形虫先天免疫反应的免疫生物学

The immunobiology of the innate response to Toxoplasma gondii.

作者信息

Miller Catherine M, Boulter Nicola R, Ikin Rowan J, Smith Nicholas C

机构信息

Institute for the Biotechnology of Infectious Diseases, University of Technology, Sydney, PO Box 123, Broadway, NSW 2007, Australia.

出版信息

Int J Parasitol. 2009 Jan;39(1):23-39. doi: 10.1016/j.ijpara.2008.08.002. Epub 2008 Aug 22.

Abstract

Toxoplasma gondii is a unique intracellular parasite. It can infect a variety of cells in virtually all warm-blooded animals. It has a worldwide distribution and, overall, around one-third of people are seropositive for the parasite, with essentially the entire human population being at risk of infection. For most people, T. gondii causes asymptomatic infection but the parasite can cause serious disease in the immunocompromised and, if contracted for the first time during pregnancy, can cause spontaneous abortion or congenital defects, which have a substantial emotional, social and economic impact. Toxoplasma gondii provokes one of the most potent innate, pro-inflammatory responses of all infectious disease agents. It is also a supreme manipulator of the immune response so that innate immunity to T. gondii is a delicate balance between the parasite and its host involving a coordinated series of cellular interactions involving enterocytes, neutrophils, dendritic cells, macrophages and natural killer cells. Underpinning these interactions is the regulation of complex molecular reactions involving Toll-like receptors, activation of signalling pathways, cytokine production and activation of anti-microbial effector mechanisms including generation of reactive nitrogen and oxygen intermediates.

摘要

刚地弓形虫是一种独特的细胞内寄生虫。它几乎能感染所有温血动物的多种细胞。其分布广泛,总体而言,约三分之一的人对该寄生虫血清学呈阳性,实际上整个人口都有感染风险。对大多数人来说,刚地弓形虫会引起无症状感染,但该寄生虫可在免疫功能低下者中引发严重疾病,并且如果在孕期首次感染,可导致自然流产或先天性缺陷,这会产生重大的情感、社会和经济影响。刚地弓形虫引发了所有传染病原体中最强烈的固有促炎反应之一。它也是免疫反应的高超操控者,因此对刚地弓形虫的固有免疫是寄生虫与其宿主之间的微妙平衡,涉及一系列涉及肠上皮细胞、中性粒细胞、树突状细胞、巨噬细胞和自然杀伤细胞的协调细胞相互作用。支撑这些相互作用的是对复杂分子反应的调节,这些反应涉及Toll样受体、信号通路的激活、细胞因子的产生以及包括活性氮和氧中间体生成在内的抗菌效应机制的激活。

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