Artis D, Humphreys N E, Potten C S, Wagner N, Müller W, McDermott J R, Grencis R K, Else K J
Immunology Group, School of Biological Sciences, University of Manchester, GB.
Eur J Immunol. 2000 Jun;30(6):1656-64. doi: 10.1002/1521-4141(200006)30:6<1656::AID-IMMU1656>3.0.CO;2-Z.
The ontogeny and function of gut-associated-lymphoid tissue is known to be critically dependent on the beta7 integrin subfamily. We have investigated the development of intestinal inflammation and pathogen-specific protective immunity to enteric helminth infection in beta7 integrin knockout (KO) mice. During Trichinella spiralis infection of the small intestine there was a significant delay and reduction in the magnitude of intestinal eosinophilia and mastocytosis in the absence of P7 integrin, resulting in impaired host protection. Aberrant distribution of mast cells was also observed in the small intestine of infected KO mice. Adoptive transfer of primed wild-type mesenteric lymph node cells into T. spiralis-infected beta7 KO mice did not restore the intestinal mast cell response, suggesting that the defect in intestinal mastocytosis is due to the absence of beta7 expression on this population rather than an indirect consequence of reduced T cell numbers. In contrast, no impairment in leukocyte recruitment or protection against Trichuris muris infection of the large intestine was observed in KO mice. Taken together the data provide the first description of reduced leukocyte homing and attenuated protective immunity against helminth infection in beta7 KO mice. Furthermore, these results suggest that beta7 integrin-independent adhesion molecule interactions are deployed in the large but not small intestine during intestinal inflammation.
已知肠道相关淋巴组织的个体发生和功能严重依赖β7整合素亚家族。我们研究了β7整合素基因敲除(KO)小鼠肠道炎症的发展以及对肠道蠕虫感染的病原体特异性保护性免疫。在旋毛虫感染小肠期间,在缺乏P7整合素的情况下,肠道嗜酸性粒细胞增多和肥大细胞增多的程度出现显著延迟和降低,导致宿主保护受损。在感染的KO小鼠小肠中还观察到肥大细胞分布异常。将经致敏的野生型肠系膜淋巴结细胞过继转移到感染旋毛虫的β7 KO小鼠中,并未恢复肠道肥大细胞反应,这表明肠道肥大细胞增多的缺陷是由于该群体中缺乏β7表达,而非T细胞数量减少的间接后果。相比之下,在KO小鼠中未观察到白细胞募集受损或对大肠鞭虫感染的保护作用受损。综合这些数据,首次描述了β7 KO小鼠中白细胞归巢减少以及对蠕虫感染的保护性免疫减弱。此外,这些结果表明,在肠道炎症期间,β7整合素非依赖性黏附分子相互作用在大肠而非小肠中发挥作用。