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抗菌肽在肠道微孢子虫病中的作用。

A role for antimicrobial peptides in intestinal microsporidiosis.

作者信息

Leitch G J, Ceballos C

机构信息

The Whitney Laboratory for Marine Bioscience, University of Florida, St Augustine, Florida 32080, USA.

出版信息

Parasitology. 2009 Feb;136(2):175-81. doi: 10.1017/S0031182008005313. Epub 2008 Dec 12.

Abstract

Clinical isolates from 3 microsporidia species, Encephalitozoon intestinalis and Encephalitozoon hellem, and the insect parasite Anncaliia (Brachiola, Nosema) algerae, were used in spore germination and enterocyte-like (C2Bbe1) cell infection assays to determine the effect of a panel of antimicrobial peptides. Spores were incubated with lactoferrin (Lf), lysozyme (Lz), and human beta defensin 2 (HBD2), human alpha defensin 5 (HD5), and human alpha defensin 1 (HNP1), alone and in combination with Lz, prior to germination. Of the Encephalitozoon species only E. hellem spore germination was inhibited by HNP1, while A. algerae spore germination was inhibited by Lf, HBD2, HD5 and HNP1, although HBD2 and HD5 inhibition required the presence of Lz. The effects of HBD2 and HD5 on microsporidia enterocyte infection paralleled their effects on spore germination. Lysozyme alone only inhibited infection with A. algerae, while Lf inhibited infection by E. intestinalis and A. algerae. HNP1 significantly reduced enterocyte infection by all 3 parasite species and a combination of Lf, Lz and HNP1 caused a further reduced infection with A. algerae. These data suggest that intestinal antimicrobial peptides contribute to the defence of the intestine against infection by luminal microsporidia spores and may partially determine which parasite species infects the intestine.

摘要

从3种微孢子虫(肠脑炎微孢子虫和海伦脑炎微孢子虫)以及昆虫寄生虫阿尔及利亚安卡利亚(短膜虫属、微孢子虫属)分离得到的临床菌株,用于孢子萌发和肠上皮样(C2Bbe1)细胞感染试验,以确定一组抗菌肽的作用。在孢子萌发前,将孢子分别与乳铁蛋白(Lf)、溶菌酶(Lz)、人β-防御素2(HBD2)、人α-防御素5(HD5)和人α-防御素1(HNP1)单独孵育,并与Lz联合孵育。在脑炎微孢子虫中,只有海伦脑炎微孢子虫的孢子萌发受到HNP1的抑制,而阿尔及利亚安卡利亚的孢子萌发受到Lf、HBD2、HD5和HNP1的抑制,不过HBD2和HD5的抑制作用需要Lz的存在。HBD2和HD5对微孢子虫肠上皮细胞感染的影响与其对孢子萌发的影响相似。单独的溶菌酶仅抑制阿尔及利亚安卡利亚的感染,而Lf抑制肠脑炎微孢子虫和阿尔及利亚安卡利亚的感染。HNP1显著降低了所有3种寄生虫对肠上皮细胞的感染,Lf、Lz和HNP1的组合进一步降低了阿尔及利亚安卡利亚的感染。这些数据表明,肠道抗菌肽有助于肠道抵御腔内微孢子虫孢子的感染,并可能部分决定哪些寄生虫物种感染肠道。

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