Boosting mTOR-dependent autophagy via upstream TLR4-MyD88-MAPK signalling and downstream NF-κB pathway quenches intestinal inflammation and oxidative stress injury
Author:
Funder
National Natural Science Foundation of China
Publisher
Elsevier BV
Subject
General Biochemistry, Genetics and Molecular Biology,General Medicine
Reference53 articles.
1. IL-10 downregulates CXCR3 expression on Th1 cells and interferes with their migration to intestinal inflammatory sites;Wadwa;Mucosal Immunol,2016
2. Hyperoxidized albumin modulates neutrophils to induce oxidative stress and inflammation in severe alcoholic hepatitis;Das;Hepatology,2017
3. New frontiers in genetics, gut microbiota, and immunity: A rosetta stone for the pathogenesis of inflammatory bowel disease;Zhou;Biomed Res Int,2017
4. Sodium Butyrate Inhibits Inflammation and Maintains Epithelium Barrier Integrity in a TNBS-induced Inflammatory Bowel Disease Mice Model;Chen;EBioMedicine,2018
5. Modulation of inflammation by autophagy: Consequences for human disease;Netea-Maier;Autophagy,2016
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