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Bioavailability of black tea theaflavins: absorption, metabolism, and colonic catabolism

机译:红茶茶黄素的生物利用度:吸收,代谢和结肠分解代谢

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摘要

Data obtained with in vitro fecal incubations and a feeding study indicate black tea theaflavin and its galloyl derivatives are not absorbed in detectable amounts in either the upper or lower gastrointestinal tract. The theaflavin skeleton is comparatively resistant to degradation by colonic bacteria with a 67% recovery being obtained after a 24 h incubation, which yielded 21 phenolic and aromatic catabolites. The theaflavin galloyl moiety was removed by the microbiota, and the released gallic acid further transformed to 3-O- and 4-O-methyl gallic acids, pyrogallol-1-sulfate and pyrogallol-2-sulfate, which were excreted in urine in amounts equivalent to 94% of intake. The main urinary product potentially derived from breakdown of the theaflavin skeleton was 3-(4′-hydroxyphenyl)propionic acid. A number of the colonic catabolites originating from gallic acid and theaflavins has been reported to be bioactive in ex vivo and in vitro models with a variety of potential modes of action.
机译:通过体外粪便培养和进食研究获得的数据表明,红茶茶黄素及其没食子酰基衍生物在上消化道或下消化道中均未检测到吸收量。茶黄素骨架相对抗结肠细菌降解,孵育24小时后回收率达67%,产生21种酚类和芳香族分解代谢产物。茶黄素没食子酰基部分被微生物群除去,释放的没食子酸进一步转化为3-O-和4-O-甲基没食子酸,连苯三酚-1-硫酸盐和连苯三酚-2-硫酸盐,它们以一定量从尿中排出。相当于摄入量的94%茶黄素骨架分解可能产生的主要尿产物是3-(4'-羟苯基)丙酸。据报道,许多来自没食子酸和茶黄素的结肠分解代谢产物在离体和体外模型中具有多种潜在作用方式,具有生物活性。

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