Gao Xiaoyu, Yang Weiqian, Li Sijin, Liu Shuangfeng, Yang Weixing, Song Shuang, Sheng Jun, Zhao Yan, Tian Yang
Yunnan Key Laboratory of Precision Nutrition and Personalized Food Manufacturing, Yunnan Agricultural University, Kunming, China.
College of Food Science and Technology, Yunnan Agricultural University, Kunming, China.
Front Microbiol. 2023 Dec 20;14:1315402. doi: 10.3389/fmicb.2023.1315402. eCollection 2023.
Lam. leaf is not only a new food resource in China, but also a traditional medicinal plant. It is commonly used in the folk to alleviate constipation, but its laxative mechanism is not fully understood. Hence we investigated it in loperamide-induced functional constipation (FC) mice. The results showed that MOAE significantly regulated not only gastrointestinal hormones and neurotransmitters in serum but also important gastrointestinal motility factors in the enteric nervous system (ENS)-interstitial cells of Cajal (ICCs)-smooth muscle cell (SMC) network. Meanwhile, MOAE attenuated intestinal inflammation, increased cecal short-chain fatty acid levels and colonic antimicrobial peptide expression, and improved the impaired intestinal barrier function in loperamide-induced FC mice. In addition, MOAE also increased fecal water content by inhibiting the mRNA expression of colonic aquaporins ( and ) in FC mice. Interestingly and importantly, MOAE affected the intestinal microbiota by inhibiting some key "constipation-causing" microbiota, such as Bacteroidaceae, Clostridiaceae, , and , and promoting the growth of other important "constipation-curing" microbiota, such as , , and . These important taxa are significantly associated with a variety of indicators of constipation. These findings suggest that MOAE can promote defecation through its rich chemical composition to modulate the ENS-ICCs-SMCs network and the gut microecosystem.
番泻叶不仅是中国一种新的食物资源,也是一种传统药用植物。它在民间常用于缓解便秘,但其通便机制尚未完全明确。因此,我们在洛哌丁胺诱导的功能性便秘(FC)小鼠中对其进行了研究。结果表明,番泻叶乙醇提取物(MOAE)不仅显著调节血清中的胃肠激素和神经递质,还调节肠神经系统(ENS)- Cajal间质细胞(ICC)-平滑肌细胞(SMC)网络中的重要胃肠动力因子。同时,MOAE减轻肠道炎症,提高盲肠短链脂肪酸水平和结肠抗菌肽表达,并改善洛哌丁胺诱导的FC小鼠受损的肠道屏障功能。此外,MOAE还通过抑制FC小鼠结肠水通道蛋白( 和 )的mRNA表达来增加粪便含水量。有趣且重要的是,MOAE通过抑制一些关键的“致便秘”微生物群,如拟杆菌科、梭菌科、 和 ,并促进其他重要的“治便秘”微生物群,如 、 和 的生长,从而影响肠道微生物群。这些重要的分类群与便秘的多种指标显著相关。这些发现表明,MOAE可通过其丰富的化学成分调节ENS-ICC-SMC网络和肠道微生态系统来促进排便。
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