Tianjin Key Laboratory for Modern Drug Delivery & High-Efficiency, School of Pharmaceutical Science and Technology, Tianjin University, Tianjin 300072, PR China.
Tianjin Key Laboratory for Modern Drug Delivery & High-Efficiency, School of Pharmaceutical Science and Technology, Tianjin University, Tianjin 300072, PR China.
Food Res Int. 2018 Jan;103:280-288. doi: 10.1016/j.foodres.2017.10.058. Epub 2017 Oct 31.
This study was aimed to investigate the impacts of gastrointestinal digestion in vitro on the physicochemical properties and the biological activities of polysaccharides from Inonotus obliquus (UIOPS-1). Results showed that the monosaccharides composition, structure and conformation of polysaccharides were remarkably altered, and the molecular weight (Mw) of UIOPS-1 was steadily decreased from 105.02kDa to 88.97kDa and 36.74kDa after simulated digestion. The reducing ends were increased and the free monosaccharides including d-glucose, d-galactose and d-xylose were released suggested that the degradation of UIOPS-1 was caused by disrupting the aggregates and glycosidic bonds. The antioxidant activities of UIOPS-1 were significantly increased after gastric digestion (P<0.05), however, they were decreased after intestinal digestion. The α-amylase and α-glucosidase inhibitory activities of UIOPS-1 were significantly increased after digestion indicating a good control of postprandial hyperglycemia (P<0.001). The results indicated that UIOPS-1 still exhibited antioxidant and antihyperglycemic potential after gastrointestinal digestion, which could be considered as a promising candidate for functional foods.
本研究旨在探讨胃肠道消化对桦褐孔菌多糖(UIOPS-1)理化性质和生物活性的影响。结果表明,多糖的单糖组成、结构和构象发生了显著变化,经过模拟消化后,UIOPS-1 的分子量(Mw)从 105.02kDa 稳定下降至 88.97kDa 和 36.74kDa。还原端增加,释放出游离单糖,包括 d-葡萄糖、d-半乳糖和 d-木糖,表明 UIOPS-1 的降解是由于破坏了其聚集态和糖苷键。胃消化后,UIOPS-1 的抗氧化活性显著增加(P<0.05),而肠消化后则降低。消化后,UIOPS-1 的α-淀粉酶和α-葡萄糖苷酶抑制活性显著增加,表明其对餐后高血糖具有良好的控制作用(P<0.001)。研究结果表明,UIOPS-1 经胃肠道消化后仍具有抗氧化和降血糖潜力,可作为功能性食品的候选物。