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先天性和特异性肠道相关免疫与微生物干扰。

Innate and specific gut-associated immunity and microbial interference.

作者信息

Singh Vinod, Singh Kiran, Amdekar Sarika, Singh Desh Deepak, Tripathi Parul, Sharma Ganda L, Yadav Hariom

机构信息

Department of Microbiology, Barkatullah University, Bhopal, MP, India.

出版信息

FEMS Immunol Med Microbiol. 2009 Jan;55(1):6-12. doi: 10.1111/j.1574-695X.2008.00497.x. Epub 2008 Dec 10.

Abstract

Certain bacterial species isolated from the gastrointestinal microbial communities release low-molecular-weight peptides into milk products using bacteria-derived proteases that degrade milk casein, and thereby generate peptides, triggering immune responses. The intestinal microbial communities contributes to the processing of food antigens in the gut. The present study was designed to investigate the immunomodulatory effects of microbial interference to determine whether casein degraded by probiotic bacteria-derived enzymes could modulate the cytokine production and peripheral blood mononuclear cells in atopic infants with cow or other synthetic milk allergy. Without hydrolyzation, casein reduced the production of interleukin-4, which indicates that probiotics modify the structure of potentially harmful antigens and thereby alter the mode of their immunogenicity. Intraluminal bacterial antigens have been reported to elicit specific responses in the gut-associated lymphoid tissue (GALT) through the binding capacity of intraluminal bacterial antigens to epithelial cells, which allows antigen entry via enterocytes and aids in evading the tolerance function in Peyer's patches. Such tonic immune responses in the GALT may allow control of the metabolic activity and balance of the gut microbial communities.

摘要

从胃肠道微生物群落中分离出的某些细菌物种,利用细菌衍生的蛋白酶将牛奶酪蛋白降解,从而在乳制品中释放低分子量肽,进而产生引发免疫反应的肽。肠道微生物群落有助于肠道中食物抗原的加工。本研究旨在调查微生物干扰的免疫调节作用,以确定益生菌衍生酶降解的酪蛋白是否能调节患有牛奶或其他合成牛奶过敏的特应性婴儿的细胞因子产生和外周血单核细胞。未经水解时,酪蛋白会降低白细胞介素-4的产生,这表明益生菌会改变潜在有害抗原的结构,从而改变其免疫原性模式。据报道,肠腔内细菌抗原通过与上皮细胞的结合能力,在肠道相关淋巴组织(GALT)中引发特异性反应,这使得抗原能够通过肠细胞进入,并有助于逃避派尔集合淋巴结中的耐受功能。GALT中的这种强直性免疫反应可能有助于控制肠道微生物群落的代谢活动和平衡。

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