RRC ID 60964
著者 Miyake T, Sakai N, Tamai A, Sato K, Kamikawa Y, Miyagawa T, Ogura H, Yamamura Y, Oshima M, Nakagawa S, Sagara A, Shinozaki Y, Toyama T, Kitajima S, Hara A, Iwata Y, Shimizu M, Furuichi K, Kaneko S, Wada T.
タイトル Trehalose ameliorates peritoneal fibrosis by promoting Snail degradation and inhibiting mesothelial-to-mesenchymal transition in mesothelial cells.
ジャーナル Sci Rep
Abstract Peritoneal fibrosis (PF) is a severe complication of peritoneal dialysis, but there are few effective therapies for it. Recent studies have revealed a new biological function of trehalose as an autophagy inducer. Thus far, there are few reports regarding the therapeutic effects of trehalose on fibrotic diseases. Therefore, we examined whether trehalose has anti-fibrotic effects on PF. PF was induced by intraperitoneal injection of chlorhexidine gluconate (CG). CG challenges induced the increase of peritoneal thickness, ColIα1 mRNA expression and hydroxyproline content, all of which were significantly attenuated by trehalose. In addition, CG challenges induced a marked peritoneal accumulation of α-SMA+ myofibroblasts that was reduced by trehalose. The number of Wt1+ α-SMA+ cells in the peritoneum increased following CG challenges, suggesting that a part of α-SMA+ myofibroblasts were derived from peritoneal mesothelial cells (PMCs). The number of Wt1+ α-SMA+ cells was also suppressed by trehalose. Additionally, trehalose attenuated the increase of α-SMA and ColIα1 mRNA expression induced by TGF-β1 through Snail protein degradation, which was dependent on autophagy in PMCs. These results suggest that trehalose might be a novel therapeutic agent for PF through the induction of autophagy and the suppression of mesothelial-to-mesenchymal transition in PMCs.
巻・号 10(1)
ページ 14292
公開日 2020-8-31
DOI 10.1038/s41598-020-71230-4
PII 10.1038/s41598-020-71230-4
PMID 32868830
PMC PMC7459354
MeSH Animals Chlorhexidine / analogs & derivatives Chlorhexidine / pharmacology Epithelial Cells / drug effects Epithelial-Mesenchymal Transition / drug effects* Male Mice Mice, Inbred C57BL Myofibroblasts / drug effects Myofibroblasts / metabolism Peritoneal Fibrosis / chemically induced Peritoneal Fibrosis / drug therapy* Snail Family Transcription Factors / metabolism* Trehalose / therapeutic use*
IF 3.998
リソース情報
実験動物マウス RBRC00806