College of Food Science and Technology, Nanjing Agricultural University, Nanjing 210095, Jiangsu, China.
Laboratory Animal Center of Ningxia Medical University, Yinchuan, 750004, Ningxia, China.
Food Funct. 2023 Jun 6;14(11):5311-5325. doi: 10.1039/d3fo00262d.
High-fat diet (HFD) consumption can induce intestinal barrier dysfunction and disrupt glucose metabolism. Our previous studies have demonstrated that polysaccharides obtained from the fruits of L. (LBPs) could suppress acute experimental diabetes as well as colitis in mice. In the present study, the modulating effects of a purified fraction of LBPs, named LBPs-4, on glucose homeostasis and intestinal barrier function in mice fed with a HFD were investigated. Our results indicated that the oral administration of LBP-4 (200 mg per kg per day) improved hyperglycemia, glucose intolerance, insulin resistance and islet β-cell hyperplasia in HFD-fed mice. Moreover, LBPs-4 intervention enhanced the intestinal barrier integrity by increasing the expression levels of zonula occludens 1 and claudin-1 and the number of goblet cells in the colon. LBPs-4 also modulated the composition of gut microbiota by increasing the relative abundances of butyrate producer and acetate producer . The results of fecal transplantation experiments, transferring of microbiota from LBPs-4-fed donor mice to HFD-fed recipient mice, validated the cause-effect relationship between LBPs-4-evoked changes in the gut microbiota and improvement of glucose homeostasis and intestinal barrier function. Collectively, these findings suggested that LBPs-4 might be developed as promising prebiotics to improve glucose metabolism and gut health.
高脂肪饮食(HFD)的摄入会导致肠道屏障功能障碍和葡萄糖代谢紊乱。我们之前的研究表明,从 L.(LBPs)果实中获得的多糖可以抑制小鼠的急性实验性糖尿病和结肠炎。在本研究中,研究了一种从 LBPs 中分离得到的纯化部分 LBPs-4 对 HFD 喂养小鼠葡萄糖稳态和肠道屏障功能的调节作用。结果表明,LBPs-4(每天 200mg/kg)的口服给药改善了 HFD 喂养小鼠的高血糖、葡萄糖不耐受、胰岛素抵抗和胰岛β细胞增生。此外,LBPs-4 干预通过增加结肠中紧密连接蛋白 1 和闭合蛋白-1 的表达水平以及杯状细胞的数量来增强肠道屏障完整性。LBPs-4 还通过增加丁酸产生菌和乙酸产生菌的相对丰度来调节肠道微生物群的组成。粪便移植实验的结果,将 LBPs-4 喂养供体小鼠的微生物群转移到 HFD 喂养受体小鼠中,验证了 LBPs-4 引起的肠道微生物群变化与改善葡萄糖稳态和肠道屏障功能之间的因果关系。总之,这些发现表明 LBPs-4 可能被开发为有前途的益生元,以改善葡萄糖代谢和肠道健康。