Institute of Tea Science, Zhejiang University, Hangzhou 310058, China.
Institute of Tea Science, Zhejiang University, Hangzhou 310058, China; Key Laboratory of Horticultural Plant Growth, Development and Quality Improvement, Ministry of Agriculture, Hangzhou 310058, China.
Int J Biol Macromol. 2022 Aug 1;214:402-413. doi: 10.1016/j.ijbiomac.2022.06.115. Epub 2022 Jun 21.
Different cultivars and processing technologies involved in producing tea result in the high heterogeneity of derived polysaccharide conjugates, which limits the understanding of their composition and structure, and biological activity. Here, raw tea leaves from the same cultivar were used to produce dried fresh tea leaves, green tea, and black tea, and three polysaccharide conjugates derived from dried fresh tea leaves (FTPS), green tea (GTPS), and black tea (BTPS) were prepared accordingly. Their physiochemical characteristics and bioactivities were investigated. The results showed that the oxidation during tea processing increased the phenolics and proteins while decreasing the GalA in the derived TPS conjugates; meanwhile, it reduced the molecular weight and particle size of BTPS but enhanced their antioxidant activity in vitro. Furthermore, all three TPS conjugates improved intestinal homeostasis by reducing TJ protein loss and inflammation and alleviated DSS-induced colitis symptoms in mice. In addition, the three TPS conjugates showed differential regulation of the intestinal microbiome and altered the produced SCFAs, which contributed to the prevention of colitis. Our findings suggest that TPS conjugates could be applied in colitis prevention in association with the regulation of gut microbiota, and their efficacy could be optimized by employing suitable tea processing technologies.
不同的茶树品种和加工技术生产茶叶导致衍生多糖缀合物的高度异质性,这限制了对其组成和结构以及生物活性的理解。在这里,使用来自同一品种的新鲜茶叶制作干茶、绿茶和红茶,并相应地制备三种源自干茶(FTPS)、绿茶(GTPS)和红茶(BTPS)的多糖缀合物。研究了它们的理化特性和生物活性。结果表明,茶叶加工过程中的氧化作用增加了多酚和蛋白质,同时降低了衍生 TPS 缀合物中的 GalA;同时,它降低了 BTPS 的分子量和粒径,但增强了其体外抗氧化活性。此外,三种 TPS 缀合物均可通过减少 TJ 蛋白丢失和炎症来改善肠道内稳态,并减轻 DSS 诱导的结肠炎小鼠的症状。此外,三种 TPS 缀合物对肠道微生物群表现出不同的调节作用,并改变了产生的 SCFAs,有助于预防结肠炎。我们的研究结果表明,TPS 缀合物可应用于与调节肠道微生物群相关的结肠炎预防,并且可以通过采用合适的茶叶加工技术来优化其功效。