Baitouweng decoction alleviates dextran sulfate sodium-induced ulcerative colitis by suppressing leucine-related mTORC1 signaling and reducing oxidative stress

促炎细胞因子 髓过氧化物酶 溃疡性结肠炎 氧化应激 结肠炎 mTORC1型 丙二醛 药理学 汤剂 生物 炎症 生物化学 免疫学 医学 信号转导 内科学 PI3K/AKT/mTOR通路 疾病 植物
作者
Peng Wei,Qiongzi He,Tongtong Liu,Junzhi Zhang,Kunqun Shi,Jingwei Zhang,Shijia Liu
出处
期刊:Journal of Ethnopharmacology [Elsevier]
卷期号:304: 116095-116095 被引量:14
标识
DOI:10.1016/j.jep.2022.116095
摘要

Baitouweng decoction (BTW) has been used for hundreds of years to treat ulcerative colitis (UC) in China and has produced remarkable clinical results. However, the knowledge in protective mechanism of BTW against UC is still unclear.The present study was designed to investigate the anti-UC effects of BTW and the underlying mechanisms involved.3.5% dextran sulfate sodium (DSS)-induced experimental colitis was used to simulate human UC and the mice were treated with BTW (6.83 g/kg), leucine (200 mg/kg, Leu) or rapamycin (2 mg/kg, RAPA) as a positive control for 7 days. The clinical symptoms, serum myeloperoxidase (MPO) and malondialdehyde (MDA) levels were evaluated. Biological samples were collected to detect the effects of BTW on mechanistic target of rapamycin complex 1 (mTORC1) pathway and Leu metabolism.In our study, BTW notably improved the clinical symptoms and histopathological tissue damage and reduced the release of proinflammatory cytokines, including IL-6, IL-1β and TNF-α in UC mice. BTW also alleviated oxidative stress by decreasing serum MPO and MDA levels. Additionally, BTW significantly suppressed mTORC1 activity in the colon tissues of UC mice. Serum metabolomics analysis revealed that the mice receiving BTW had lower Leu levels, which was in line with the decreased expression of branched-chain α-keto acid dehydrogenase kinase (BCKDK) in the colon tissues. Furthermore, oral administration of Leu aggravated DSS-induced acute colitis and enhanced mTORC1 activity in the colon.These data strongly demonstrated that BTW could ameliorate DSS-induced UC by regulating the Leu-related mTORC1 pathway and reducing oxidative stress.
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