College of Food Science and Technology, Nanjing Agricultural University, Nanjing 210095, China.
Jiangsu Key Laboratory of Biochemistry and Biotechnology of Marine Wetland, Yancheng Institute of Technology, Yancheng 224051, China.
Food Chem. 2018 Apr 1;244:331-339. doi: 10.1016/j.foodchem.2017.10.074. Epub 2017 Oct 12.
The aim of present study was to examine whether the digestivesystem (saliva, simulated gastric and small intestinal conditions) could break down and large intestinal microbiota could utilize the polysaccharides from Fuzhuan brick tea (FBTPS). The results showed that there was no change in molecular weight, monosaccharide content and content of reducing sugars before and after saliva, simulated gastric and small intestinal digestion, indicating that FBTPS could pass through the digestive system without being broken down and reach the large intestine safely. The content of carbohydrate was significantly decreased by fermentation in vitro of gut microbiota, suggesting that FBTPS could be broken down and utilized by gut microbiota. FBTPS could significantly modulate the composition and abundance of gut microbiota. Furthermore, the contents of short-chain fatty acids were significantly increased. Therefore, FBTPS is expected to be a functional food to improve human health and prevent disease through promoting the gut health.
本研究旨在探讨消化系统(唾液、模拟胃液和模拟肠液)是否能分解茯砖茶多糖(FBTPS),以及大肠菌群能否利用 FBTPS。结果表明,唾液、模拟胃液和模拟肠液消化前后 FBTPS 的分子量、单糖含量和还原糖含量均无变化,表明 FBTPS 可安全通过消化系统而不被分解,并到达大肠。体外肠道菌群发酵使碳水化合物含量显著降低,提示 FBTPS 可被肠道菌群分解和利用。FBTPS 可显著调节肠道菌群的组成和丰度,并且短链脂肪酸的含量显著增加。因此,FBTPS 有望通过促进肠道健康成为一种功能性食品,以改善人类健康和预防疾病。