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Ellagic acid and intestinal microflora metabolite urolithin A: A review on its sources, metabolic distribution, health benefits, and biotransformation

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CRITICAL REVIEWS IN FOOD SCIENCE AND NUTRITION
卷 63, 期 24, 页码 6900-6922

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TAYLOR & FRANCIS INC
DOI: 10.1080/10408398.2022.2036693

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biotransformation; ellagitannin; intestinal microflora; metabolism; urolithin A

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Foods rich in ellagic tannins are converted into urolithin A in the stomach and small intestine, which has various beneficial biological effects. Differences in urolithin production capacity among individuals highlight the significance of exploring its biological functions, responsible strains, and corresponding functional genes.
Foods rich in ellagic tannins are first hydrolyzed into ellagic acid in the stomach and small intestine, and then converted into urolithins with high bioavailability by the intestinal flora. Urolithin has beneficially biological effects, it can induce adipocyte browning, improve cholesterol metabolism, inhibit graft tumor growth, relieve inflammation, and downregulate neuronal amyloid protein formation via the beta 3-AR/PKA/p38MAPK, ERK/AMPK alpha/SREBP1, PI3K/AKT/mTOR signaling pathways, and TLR4, AHR receptors. But differences have been reported in urolithin production capacity among different individuals. Thus, it is of great significance to explore the biological functions of urolithin, screen the strains responsible for biotransformation of urolithin, and explore the corresponding functional genes. Tannin acyl hydrolase can hydrolyze tannins into ellagic acid, and the genera Gordonibacter and Ellagibacter 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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