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钩虫排泄/分泌产物可诱导白细胞介素 4(IL-4)+白细胞介素 10(IL-10)+CD4+T 细胞应答,并抑制结肠炎小鼠模型的病理。

Hookworm excretory/secretory products induce interleukin-4 (IL-4)+ IL-10+ CD4+ T cell responses and suppress pathology in a mouse model of colitis.

机构信息

Centre for Biodiscovery and Molecular Development of Therapeutics, Queensland Tropical Health Alliance, James Cook University, Cairns, Queensland, Australia.

出版信息

Infect Immun. 2013 Jun;81(6):2104-11. doi: 10.1128/IAI.00563-12. Epub 2013 Apr 1.

Abstract

Evidence from human studies and mouse models shows that infection with parasitic helminths has a suppressive effect on the pathogenesis of some inflammatory diseases. Recently, we and others have shown that some of the suppressive effects of hookworms reside in their excretory/secretory (ES) products. Here, we demonstrate that ES products of the hookworm Ancylostoma caninum (AcES) suppress intestinal pathology in a model of chemically induced colitis. This suppression was associated with potent induction of a type 2 cytokine response characterized by coexpression of interleukin-4 (IL-4) and IL-10 by CD4(+) T cells, downregulation of proinflammatory cytokine expression in the draining lymph nodes and the colon, and recruitment of alternatively activated (M2) macrophages and eosinophils to the site of ES administration. Protease digestion and heat denaturation of AcES resulted in impaired induction of CD4(+) IL-4(+) IL-10(+) cell responses and diminished ability to suppress colitis, indicating that protein component(s) are responsible for some of the immunosuppressive effects of AcES. Identification of the specific parasite-derived molecules responsible for reducing pathology during chemically induced colitis could lead to the development of novel therapeutics for the treatment of human inflammatory bowel disease.

摘要

来自人体研究和小鼠模型的证据表明,寄生虫蠕虫感染对一些炎症性疾病的发病机制具有抑制作用。最近,我们和其他人已经表明,一些钩虫的排泄/分泌(ES)产物具有抑制作用。在这里,我们证明了钩虫Ancylostoma caninum(AcES)的 ES 产物可抑制化学诱导结肠炎模型中的肠道病理学。这种抑制作用与 2 型细胞因子反应的强烈诱导有关,其特征是 CD4+T 细胞共表达白细胞介素-4(IL-4)和 IL-10,引流淋巴结和结肠中促炎细胞因子的表达下调,以及替代激活(M2)巨噬细胞和嗜酸性粒细胞募集到 ES 给药部位。AcES 的蛋白酶消化和热变性导致 CD4+IL-4+IL-10+细胞反应的诱导受损,抑制结肠炎的能力降低,表明蛋白质成分(s)是 AcES 部分免疫抑制作用的原因。鉴定在化学诱导结肠炎期间减轻病理学的特定寄生虫衍生分子可能导致开发用于治疗人类炎症性肠病的新型治疗方法。

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