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多房棘球绦虫及其中间宿主:寄生虫 - 宿主相互作用的模型

Echinococcus multilocularis and its intermediate host: a model of parasite-host interplay.

作者信息

Vuitton Dominique Angèle, Gottstein Bruno

机构信息

WHO-Collaborating Centre for the Prevention and Treatment of Human Echinococcosis, CHU de Besançon, Besançon, France.

出版信息

J Biomed Biotechnol. 2010;2010:923193. doi: 10.1155/2010/923193. Epub 2010 Mar 21.

Abstract

Host-parasite interactions in the E. multilocularis-intermediate host model depend on a subtle balance between cellular immunity, which is responsible for host's resistance towards the metacestode, the larval stage of the parasite, and tolerance induction and maintenance. The pathological features of alveolar echinococcosis. the disease caused by E. multilocularis, are related both to parasitic growth and to host's immune response, leading to fibrosis and necrosis, The disease spectrum is clearly dependent on the genetic background of the host as well as on acquired disturbances of Th1-related immunity. The laminated layer of the metacestode, and especially its carbohydrate components, plays a major role in tolerance induction. Th2-type and anti-inflammatory cytokines, IL-10 and TGF-beta, as well as nitric oxide, are involved in the maintenance of tolerance and partial inhibition of cytotoxic mechanisms. Results of studies in the experimental mouse model and in patients suggest that immune modulation with cytokines, such as interferon-alpha, or with specific antigens could be used in the future to treat patients with alveolar echinococcosis and/or to prevent this very severe parasitic disease.

摘要

在多房棘球绦虫中间宿主模型中,宿主与寄生虫的相互作用取决于细胞免疫、宿主对绦虫蚴(寄生虫的幼虫阶段)的抵抗力、耐受性诱导和维持之间的微妙平衡。泡型棘球蚴病(由多房棘球绦虫引起的疾病)的病理特征既与寄生虫生长有关,也与宿主的免疫反应有关,从而导致纤维化和坏死。疾病谱显然取决于宿主的遗传背景以及Th1相关免疫的后天紊乱。绦虫蚴的分层层,尤其是其碳水化合物成分,在耐受性诱导中起主要作用。Th2型和抗炎细胞因子、IL-10和TGF-β以及一氧化氮参与耐受性的维持和细胞毒性机制的部分抑制。在实验小鼠模型和患者中的研究结果表明,未来可以使用细胞因子(如干扰素-α)或特定抗原来进行免疫调节,以治疗泡型棘球蚴病患者和/或预防这种非常严重的寄生虫病。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5348/2842905/358d3a14286b/JBB2010-923193.001.jpg

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