Cooperative Innovation Center of Industrial Fermentation (Ministry of Education and Hubei Province), Key Laboratory of Fermentation Engineering (Ministry of Education), National "111" Center for Cellular Regulation and Molecular Pharmaceutics, Hubei University of Technology, Wuhan, China.
School of Life Science and Technology, Wuhan Polytechnic University, Wuhan, China.
J Sci Food Agric. 2024 Aug 15;104(10):5799-5806. doi: 10.1002/jsfa.13431. Epub 2024 Mar 12.
Theabrownins (TBs) are one of most important quality components in dark tea, but have not been produced industrially. In this study, the aqueous extract was obtained from Pu-erh ripe tea, one kind of dark tea. Caffeine, theaflavin, catechin and saponin were removed by trichloromethane, ethyl acetate and n-butanol in turn to obtain a TB isolate. The TB isolate was subjected to column chromatography using a macroporous resin HPD-750 and eluted with a gradient of 0-700 g kg ethanol aqueous solution. Four fractions were obtained, and named as TBs-FC1, TBs-FC2, TBs-FC3 and TBs-FC4.
These four fractions contained polysaccharides and no small molecules such as catechins, caffeine and theaflavins as well as average molecular weights of 123.000 kDa, 23.380 kDa, 89.870 kDa and 106.600 kDa. It was revealed that they were complexes of TBs and tea polysaccharide conjugates (TPCs). Ultraviolet-visible (UV-visible) and infrared (IR) spectra showed the properties of TBs and TPCs. Their zeta potentials ranged from -13.40 mV to -38.80 mV in aqueous solutions at pH 3.0-9.0.
This study reveals that TBs do not exist in free state but in combined state in dark tea, which provide the theoretical basis for the industrialization of TBs. © 2024 Society of Chemical Industry.
茶褐素(TBs)是黑茶中最重要的质量成分之一,但尚未工业化生产。本研究从普洱茶(一种黑茶)中提取水提物,依次用三氯甲烷、乙酸乙酯和正丁醇去除咖啡因、茶黄素、儿茶素和皂苷,得到 TB 分离物。TB 分离物用大孔树脂 HPD-750 进行柱层析,用 0-700 g kg 乙醇水溶液梯度洗脱,得到 4 个馏分,分别命名为 TBs-FC1、TBs-FC2、TBs-FC3 和 TBs-FC4。
这四个馏分均含有多糖,不含儿茶素、咖啡因和茶黄素等小分子物质,平均分子量分别为 123.000 kDa、23.380 kDa、89.870 kDa 和 106.600 kDa。表明它们是 TBs 和茶多糖缀合物(TPCs)的复合物。紫外-可见(UV-可见)和红外(IR)光谱显示了 TBs 和 TPCs 的性质。它们在 pH 3.0-9.0 的水溶液中的 zeta 电位范围为-13.40 mV 至-38.80 mV。
本研究表明 TBs 不存在于游离状态,而是存在于黑茶的结合状态,为 TBs 的工业化生产提供了理论依据。 © 2024 化学工业协会。