College of Basic Medicine, Qingdao University, 266071, Qingdao, China.
Food Funct. 2020 Nov 18;11(11):9947-9959. doi: 10.1039/d0fo01871f.
In this study, the two enzymatic low molecular weight chitosan oligosaccharides (LMW-COSs), LMW-COS-H and LMW-COS-L, were prepared with average MWs of 879.6 Da and 360.9 Da, respectively. Compared to LMW-COS-L, the LMW-COS-H was more effective in improving high-fat diet (HFD)-induced metabolic abnormalities, such as obesity, hyperlipidemia, low-grade inflammation and insulin resistance. The subsequent analysis of gut microbiota showed that the supplement of LMW-COSs caused overall structural and genus/species-specific changes in the gut microbiota, which were significantly correlated with the metabolic parameters. Specifically, both of the LMW-COSs significantly decreased the relative abundance of inflammatory bacteria such as Erysipelatoclostridium and Alistipes, whereas that of the beneficial intestinal bacteria (such as Akkermansia and Gammaproteobacteria) increased significantly. This study suggested that there were potential prebiotic functions of LMW-COSs in HFD fed mice, which regulated the dysfunctional gut microbiota, alleviated low-grade inflammation and maintained the intestinal epithelial barrier.
在这项研究中,两种酶解低分子量壳聚糖寡糖(LMW-COSs),LMW-COS-H 和 LMW-COS-L,分别具有平均分子量 879.6 Da 和 360.9 Da。与 LMW-COS-L 相比,LMW-COS-H 更能有效改善高脂肪饮食(HFD)引起的代谢异常,如肥胖、高血脂、低度炎症和胰岛素抵抗。随后对肠道微生物组的分析表明,LMW-COSs 的补充导致肠道微生物组的整体结构和属/种特异性发生变化,这与代谢参数显著相关。具体而言,两种 LMW-COSs 均显著降低了炎症细菌(如肠球菌和拟杆菌)的相对丰度,而有益肠道细菌(如阿克曼氏菌和γ变形菌)的相对丰度则显著增加。本研究表明,LMW-COSs 在 HFD 喂养的小鼠中具有潜在的益生元功能,可调节功能失调的肠道微生物组,减轻低度炎症并维持肠道上皮屏障。