Research Institute of Medicine and Pharmacy, Qiqihar Medical University, Qiqihar, 161006, China.
Office of Academic Research, Qiqihar Medical University, Qiqihar 161006, China.
Carbohydr Polym. 2023 Oct 15;318:121122. doi: 10.1016/j.carbpol.2023.121122. Epub 2023 Jun 14.
Obesity associated with diet and intestinal dysbiosis is a worldwide public health crisis, and exopolysaccharides (EPS) produced by lactic acid bacteria (LAB) have prebiotic potential to ameliorate obesity. Therefore, the present study obtained LAB with the ability to produce high EPS, examined the structure of EPS, and explained its mechanism of alleviating obesity by in vivo and in vitro models. The results showed that Weissella cibaria PFY06 with a high EPS yield was isolated from strawberry juice, and pure polysaccharide (PFY06-EPS) was purified by Sephadex G-100. The structural characteristics of PFY06-EPS showed that the molecular weight was 8.08 × 10 Da and composed of α-(1,6)-D glucosyl residues. An in vitro simulated human colon fermentation test demonstrated that PFY06-EPS increased the abundance of Prevotella and Bacteroides. Cell tests confirmed that PFY06-EPS after fecal fermentation inhibited fat accumulation by promoting the secretion of endogenous gastrointestinal hormones and insulin and inhibiting the secretion of inflammatory factors. Notably, PFY06-EPS reduced weight gain, fat accumulation, inflammatory reactions and insulin resistance in a high-fat diet-induced obesity mouse model and improved glucolipid metabolism. PFY06-EPS intervention reversed obesity-induced microflora disorders, such as reducing the Firmicutes/Bacteroides ratio and increasing butyrate-producing bacteria (Roseburia and Oscillibacter), and reduced endotoxemia to maintain intestinal barrier integrity. Therefore, in vivo and in vitro models showed that PFY06-EPS had potential as a prebiotic that may play an anti-obesity role by improving the function of the gut microbiota.
肥胖与饮食和肠道菌群失调有关,是全球公共健康危机,而乳酸菌(LAB)产生的胞外多糖(EPS)具有改善肥胖的益生元潜力。因此,本研究获得了具有产生高 EPS 能力的 LAB,研究了 EPS 的结构,并通过体内和体外模型解释了其缓解肥胖的机制。结果表明,从草莓汁中分离出具有高 EPS 产量的 Weissella cibaria PFY06,并通过 Sephadex G-100 纯化纯多糖(PFY06-EPS)。PFY06-EPS 的结构特征表明,分子量为 8.08×10 Da,由α-(1,6)-D 葡萄糖基残基组成。体外模拟人结肠发酵试验表明,PFY06-EPS 增加了普雷沃氏菌和拟杆菌的丰度。细胞试验证实,PFY06-EPS 经粪便发酵后通过促进内源性胃肠道激素和胰岛素的分泌并抑制炎症因子的分泌来抑制脂肪积累。值得注意的是,PFY06-EPS 可降低高脂肪饮食诱导的肥胖小鼠模型的体重增加、脂肪积累、炎症反应和胰岛素抵抗,并改善糖脂代谢。PFY06-EPS 干预可逆转肥胖引起的微生物群紊乱,例如降低厚壁菌门/拟杆菌门的比例并增加产生丁酸的细菌(Roseburia 和 Oscillibacter),并降低内毒素血症以维持肠屏障完整性。因此,体内和体外模型表明,PFY06-EPS 作为一种可能通过改善肠道微生物群功能发挥抗肥胖作用的益生元具有潜力。