AMPK activation alleviated dextran sulfate sodium‐induced colitis by inhibiting ferroptosis

Author:

Sun Shao Peng1ORCID,Lu Yi Fan1,Li Heng1,Weng Chun Yan1,Chen Jia Jia2,Lou Yi Jie1,Lyu Dong1,Lyu Bin3ORCID

Affiliation:

1. The First Clinical Medical College of Zhejiang Chinese Medical University Hangzhou Zhejiang Province China

2. Department of Anesthesiology The First Affiliated Hospital of Zhejiang Chinese Medical University (Zhejiang Provincial Hospital of Traditional Chinese Medicine) Hangzhou Zhejiang Province China

3. Department of Gastroenterology The First Affiliated Hospital of Zhejiang Chinese Medical University (Zhejiang Provincial Hospital of Traditional Chinese Medicine) Hangzhou Zhejiang Province China

Abstract

ObjectivesFerroptosis is a newly discovered cell death mode that has been confirmed to occur in the intestinal epithelial cells in ulcerative colitis (UC). In this study we aimed to elucidate the mechanism of ferroptosis and its association with adenosine monophosphate‐activated protein kinase (AMPK) in UC.MethodsGene expression profiles of colonic mucosa (GSE87473) were downloaded. Both human colonic samples and dextran sodium sulfate (DSS)‐induced colitis murine model were used. The molecular markers of ferroptosis were detected using western blot and immunohistochemistry. Symptoms, iron abundance, and lipid peroxidation level of the mouse model were measured to evaluate the role of AMPK activation in ferroptosis.ResultsBoth gene and protein expressions of GPX4 and FTH1 were decreased in UC patients compared with the healthy controls. An increased iron abundance and lipid peroxidation level in colon tissues and damaged mitochondria were found in DSS‐induced colitis. AMPK expression was decreased in UC patients and correlated with FTH1 and GPX4. Activation of AMPK with metformin inhibited ferroptosis in the colon, improved symptoms, and prolonged the lifespan in DSS‐induced colitis mice.ConclusionsFerroptosis can be observed in colonic tissues in UC. AMPK activation inhibits ferroptosis in murine colitis model, which may act as a potential target for the treatment of colitis.

Funder

National Natural Science Foundation of China

Publisher

Wiley

Subject

Gastroenterology

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