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杨梅素及相关化合物在大鼠体内的代谢。体内代谢产物的形成及体外肠道微生物群的作用。

Metabolism of myricetin and related compounds in the rat. Metabolite formation in vivo and by the intestinal microflora in vitro.

作者信息

Griffiths L A, Smith G E

出版信息

Biochem J. 1972 Nov;130(1):141-51. doi: 10.1042/bj1300141.

Abstract
  1. The metabolism of a group of polyphenols related in structure to myricetin (3,5,7,3',4',5'-hexahydroxyflavone), including myricetin, myricitrin, 3,4,5-trihydroxyphenylacetic acid, delphinidin, robinetin, tricetin, tricin, malvin and 5,7-dihydroxy-3',4',5'-trimethoxyflavone, has been studied both in vivo after oral administration to the rat and in vitro in cultures of micro-organisms derived from the intestine of the rat. 2. It was shown that the rat intestinal microflora are able to degrade compounds of this group to the ring-fission products observed in urine after oral administration of the specific flavonoid. 3. All flavones and flavonols possessing free 5- and 7-hydroxyl groups in the A ring and a free 4'-hydroxyl group in the B ring gave rise to ring-fission products that included 3',5'-dihydroxyphenylacyl derivatives. 4. The metabolites 3,5-dihydroxyphenylacetic acid, 3-hydroxyphenylacetic acid, 3,5-dihydroxyphenylpropionic acid and 3-hydroxyphenylpropionic acid were isolated and identified by chromatographic and spectral methods. 5. On anaerobic incubation in a thioglycollate medium it was shown that intestinal micro-organisms can effect cleavage of glycosidic bonds, ring fission of certain flavonoid molecules showing 3',4',5'-trihydroxyphenyl substitution and dehydroxylation of certain flavonoid metabolites. 6. The urinary excretion of the metabolites 3,5-dihydroxyphenylacetic acid and 3-hydroxyphenylacetic acid was completely abolished when neomycin-treated rats were used.
摘要
  1. 对一组在结构上与杨梅素(3,5,7,3',4',5'-六羟基黄酮)相关的多酚类物质进行了代谢研究,这些物质包括杨梅素、杨梅苷、3,4,5-三羟基苯乙酸、飞燕草素、刺槐素、三奈酚、小麦黄素、锦葵色素和5,7-二羟基-3',4',5'-三甲氧基黄酮。研究分别在大鼠口服给药后的体内以及大鼠肠道来源的微生物培养物的体外进行。2. 结果表明,大鼠肠道微生物能够将该组化合物降解为口服特定类黄酮后在尿液中观察到的环裂解产物。3. A环中具有游离5-和7-羟基且B环中具有游离4'-羟基的所有黄酮和黄酮醇都会产生环裂解产物,其中包括3',5'-二羟基苯甲酰衍生物。4. 通过色谱和光谱方法分离并鉴定了代谢产物3,5-二羟基苯乙酸、3-羟基苯乙酸、3,5-二羟基苯丙酸和3-羟基苯丙酸。5. 在巯基乙酸盐培养基中进行厌氧培养时发现,肠道微生物能够实现糖苷键的裂解、某些显示3',4',5'-三羟基苯基取代的类黄酮分子的环裂解以及某些类黄酮代谢产物的脱羟基作用。6. 使用新霉素处理的大鼠时,代谢产物3,5-二羟基苯乙酸和3-羟基苯乙酸的尿排泄完全被消除。

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