鞣花酸
生物转化
生物化学
鞣花单宁
代谢物
化学
生物
多酚
酶
抗氧化剂
作者
Mengwei Zhang,Shumao Cui,Bingyong Mao,Qiuxiang Zhang,Jianxin Zhao,Hao Zhang,Xin Tang,Wei Chen
标识
DOI:10.1080/10408398.2022.2036693
摘要
can metabolize ellagic acid into urolithins. Therefore, application of "single bacterium", "single bacterium + enzyme", and "microflora" can achieve biotransformation of urolithin A. In this review, the source and metabolic pathway of ellagic tannins, and the mechanisms of the biological function of a metabolite, urolithin A, are discussed. The current strategies of biotransformation to obtain urolithin A are expounded to provide ideas for further studies on the relationship between urolithin and human health.
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