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首页> 外文期刊>Journal of Agricultural and Food Chemistry >Insights in the Recalcitrance of Theasinensin A to Human Gut Microbial Degradation
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Insights in the Recalcitrance of Theasinensin A to Human Gut Microbial Degradation

机译:患有人体肠道微生物降解的二牛蛋白A的重新分析的见解

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Due to low bioavailability of dietary phenolic compounds in small intestine, their metabolism by gut microbiota is gaining increasing attention. The microbial metabolism of theasinensin A (TSA), a bioactive catechin dimer found in black tea, has not been studied yet. Here, TSA was extracted and purified for in vitro fermentation by human fecal microbiota, and epigallocatechin gallate (EGCG) and procyanidin B2 (PCB2) were used for comparison. Despite the similarity in their flavan-3-ol skeletons, metabolic fate of TSA was distinctively different. After degalloylation, its core biphenyl-2,2′,3,3′,4,4′-hexaol structure remained intact during fermentation. Conversely, EGCG and PCB2 were promptly degraded into a series of hydroxylated phenylcarboxylic acids. Computational analyses comparing TSA and PCB2 revealed that TSA’s stronger interflavanic bond and more compact stereo-configuration might underlie its lower fermentability. These insights in the recalcitrance of theasinensins to degradation by human gut microbiota are of key importance for a comprehensive understanding of its health benefits.
机译:由于膳食酚类化合物在小肠中的生物利用度较低,它们在肠道微生物群中的代谢正受到越来越多的关注。茶氨酸菌素A(TSA)是红茶中发现的一种生物活性儿茶素二聚体,其微生物代谢尚未被研究。在这里,通过人类粪便微生物群提取和纯化TSA进行体外发酵,并使用表没食子儿茶素没食子酸酯(EGCG)和原花青素B2(PCB2)进行比较。尽管它们的黄烷-3-醇骨架相似,但TSA的代谢命运却截然不同。脱甲酰化后,其核心联苯-2,2′、3,3′、4,4′-己醇结构在发酵过程中保持完整。相反,EGCG和PCB2迅速降解为一系列羟基化苯甲酸。比较TSA和PCB2的计算分析表明,TSA更强的熔合键和更紧密的立体结构可能是其较低发酵性的基础。这些关于茶氨酸对人体肠道微生物群降解的抵抗力的见解对于全面了解茶氨酸的健康益处至关重要。

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