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针对蠕虫感染的Toll样受体特异性免疫反应。

TLR Specific Immune Responses against Helminth Infections.

作者信息

Rajasekaran Sivaprakasam, Anuradha Rajamanickam, Bethunaickan Ramalingam

机构信息

Department of Immunology, National Institute for Research in Tuberculosis, Chennai, India.

International Center for Excellence in Research, National Institutes of Health, National Institute for Research in Tuberculosis, Chennai, India.

出版信息

J Parasitol Res. 2017;2017:6865789. doi: 10.1155/2017/6865789. Epub 2017 Oct 31.

Abstract

Despite marked improvement in the quality of lives across the globe, more than 2 million individuals in socioeconomically disadvantaged environments remain infected by helminth (worm) parasites. Owing to the longevity of the worms and paucity of immunologic controls, these parasites survive for long periods within the bloodstream, lymphatics, and gastrointestinal tract resulting in pathologic conditions such as anemia, cirrhosis, and lymphatic filariasis. Despite infection, an asymptomatic state may be maintained by the host immunoregulatory environment, which involves multiple levels of regulatory cells and cytokines; a breakdown of this regulation is observed in pathological disease. The role of TLR expression and function in relation to intracellular parasites has been documented but limited studies are available for multicellular helminth parasites. In this review, we discuss the unique and shared host effector mechanisms elicited by systemic helminth parasites and their derived products, including the role of TLRs and sphingolipids. Understanding and exploiting the interactions between these parasites and the host regulatory network are likely to highlight new strategies to control both infectious and immunological diseases.

摘要

尽管全球范围内人们的生活质量有了显著提高,但在社会经济条件不利环境中的200多万人仍受蠕虫寄生虫感染。由于蠕虫寿命长且免疫控制不足,这些寄生虫在血液、淋巴管和胃肠道中长期存活,导致贫血、肝硬化和淋巴丝虫病等病理状况。尽管受到感染,但宿主免疫调节环境可能维持无症状状态,这涉及多个层次的调节细胞和细胞因子;在病理疾病中可观察到这种调节的破坏。Toll样受体(TLR)表达和功能与细胞内寄生虫的关系已有文献记载,但关于多细胞蠕虫寄生虫的研究有限。在本综述中,我们讨论了全身性蠕虫寄生虫及其衍生产物引发的独特和共同的宿主效应机制,包括TLR和鞘脂的作用。了解并利用这些寄生虫与宿主调节网络之间的相互作用,可能会凸显出控制感染性疾病和免疫性疾病的新策略。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6705/5684585/958ff5692411/JPR2017-6865789.001.jpg

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