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异戊二烯化通过改变膳食类黄酮的生物利用度来增强其生物活性。

Prenylation enhances the biological activity of dietary flavonoids by altering their bioavailability.

作者信息

Mukai Rie

机构信息

a Field of Food Science and Technology, Department of Food Science, Graduate School of Technology, Industrial and Social Sciences , Tokushima University , Tokushima , Japan.

出版信息

Biosci Biotechnol Biochem. 2018 Feb;82(2):207-215. doi: 10.1080/09168451.2017.1415750. Epub 2018 Jan 8.

Abstract

Flavonoids are distributed across the plant kingdom and have attracted substantial attention owing to their potential benefits for human health. Several studies have demonstrated that flavonoids prenylation enhances various biological activities, suggesting an attractive tool for developing functional foods. This review provides an overview of the current knowledge on how prenylation influences the biological activity and bioavailability of flavonoids. The enhancement effect of prenylation on the biological activities of dietary flavonoids in mammals was demonstrated by comparing the effect of 8-prenyl naringenin (8PN) with that of parent naringenin in the prevention of disuse muscle atrophy in mice. This enhancement results from higher muscular accumulation of 8PN than naringenin. As to bioavailability, despite the lower absorption of 8-prenyl quercetin (8PQ) compared with quercetin, higher 8PQ accumulation was found in the liver and kidney. These data imply that prenylation interferes with the elimination of flavonoids from tissues.

摘要

黄酮类化合物广泛分布于植物界,因其对人类健康的潜在益处而备受关注。多项研究表明,黄酮类化合物的异戊烯基化可增强多种生物活性,这表明它是开发功能性食品的一个有吸引力的工具。本文综述了目前关于异戊烯基化如何影响黄酮类化合物生物活性和生物利用度的知识。通过比较8-异戊烯基柚皮素(8PN)与其母体柚皮素对预防小鼠废用性肌肉萎缩的效果,证实了异戊烯基化对哺乳动物膳食黄酮类化合物生物活性的增强作用。这种增强是由于8PN在肌肉中的积累高于柚皮素。至于生物利用度,尽管8-异戊烯基槲皮素(8PQ)的吸收低于槲皮素,但在肝脏和肾脏中发现8PQ的积累更高。这些数据表明,异戊烯基化会干扰黄酮类化合物从组织中的消除。

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