纤维化
肌成纤维细胞
白细胞介素17
克罗恩病
生物
病理
热休克蛋白
免疫组织化学
小发夹RNA
分子生物学
基因敲除
癌症研究
免疫学
医学
炎症
细胞培养
基因
疾病
生物化学
遗传学
作者
Yusuke Honzawa,Hiroshi Nakase,Masahiro Shiokawa,Takuya Yoshino,Hirotsugu Imaeda,Minoru Matsuura,Yuzo Kodama,Hiroki Ikeuchi,Akira Andoh,Yoshiharu Sakai,Kazuhiro Nagata,Tsutomu Chiba
出处
期刊:Gut
[BMJ]
日期:2014-02-17
卷期号:63 (12): 1902-1912
被引量:54
标识
DOI:10.1136/gutjnl-2013-305632
摘要
Objective
Intestinal fibrosis is a clinically important issue in Crohn9s disease (CD). Heat shock protein (HSP) 47 is a collagen-specific molecular chaperone involved in fibrotic diseases. The molecular mechanisms of HSP47 induction in intestinal fibrosis related to CD, however, remain unclear. Here we investigated the role of interleukin (IL)-17A-induced HSP47 expression in intestinal fibrosis in CD. Design
Expressions of HSP47 and IL-17A in the intestinal tissues of patients with IBD were determined. HSP47 and collagen I expressions were assessed in intestinal subepithelial myofibroblasts (ISEMFs) isolated from patients with IBD and CCD-18Co cells treated with IL-17A. We examined the role of HSP47 in IL-17A-induced collagen I expression by administration of short hairpin RNA (shRNA) to HSP47 and investigated signalling pathways of IL-17A-induced HSP47 expression using specific inhibitors in CCD-18Co cells. Results
Gene expressions of HSP47 and IL-17A were significantly elevated in the intestinal tissues of patients with active CD. Immunohistochemistry revealed HSP47 was expressed in α-smooth muscle actin (α-SMA)-positive cells and the number of HSP47-positive cells was significantly increased in the intestinal tissues of patients with active CD. IL-17A enhanced HSP47 and collagen I expressions in ISEMFs and CCD-18Co cells. Knockdown of HSP47 in these cells resulted in the inhibition of IL-17A-induced collagen I expression, and analysis of IL-17A signalling pathways revealed the involvement of c-Jun N-terminal kinase in IL-17A-induced HSP47 expression. Conclusions
IL-17A-induced HSP47 expression is involved in collagen I expression in ISEMFs, which might contribute to intestinal fibrosis in CD.
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