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黄酮类化合物的代谢情况会影响它们的功效和安全性。

Disposition of flavonoids impacts their efficacy and safety.

作者信息

Ma Yong, Zeng Min, Sun Rongjin, Hu Ming

机构信息

Department of Pharmaceutics, University of Houston College of Pharmacy, USA.

出版信息

Curr Drug Metab. 2014;15(9):841-64. doi: 10.2174/1389200216666150206123719.

Abstract

Flavonoids are important dietary phytochemicals with broad human exposures and a variety of claimed biological effects. Although traditional sources of flavonoids are fruits and vegetables, dietary supplements have become an important source of flavonoids. The enthusiasm for all things about flavonoids expressed by scientists and public alike has sometimes overlooked an important point: these compounds are usually not bioavailable or have very low bioavailability. The current review focused on factors that affect bioavailability of flavonoids, which in turn impact their efficacy and toxicity. These factors include physicochemical and biological ones, with the emphasis on the latter, including membrane permeation, enzymatic metabolism, and excretion by efflux transporters. Current evidence indicates that naturally occurring flavonoid glycosides typically need to be de-glycosylated before they are absorbed, because intact flavonoid glycosides are poorly absorbed. However, once absorbed, flavonoid aglycones undergo rapid and extensive first-pass metabolism via conjugation and subsequent excretion of the conjugates, which makes them poorly bioavailable. Fortunately, the presence of enteric and enterohepatic recycling allows the flavonoids to be accumulated in vivo over time, because the recycling increases contact time between the flavonoids and target tissues. We believe that continued studies in this area will help scientists devise a better means to improve oral bioavailability of flavonoids so we can one day fully enjoy the health benefits of ingesting flavonoids.

摘要

黄酮类化合物是重要的膳食植物化学物质,人类广泛接触此类物质,且它们具有多种所谓的生物学效应。尽管传统的黄酮类化合物来源是水果和蔬菜,但膳食补充剂已成为黄酮类化合物的重要来源。科学家和公众对黄酮类化合物相关所有事物的热情有时忽略了一个要点:这些化合物通常无法被生物利用或生物利用度极低。当前的综述聚焦于影响黄酮类化合物生物利用度的因素,而这些因素反过来又会影响其功效和毒性。这些因素包括物理化学因素和生物学因素,重点是后者,包括膜渗透、酶代谢以及外排转运体介导的排泄。目前的证据表明,天然存在的黄酮糖苷在吸收前通常需要去糖基化,因为完整的黄酮糖苷吸收较差。然而,一旦被吸收,黄酮苷元会通过结合作用迅速进行广泛的首过代谢,并随后排泄结合物,这使得它们的生物利用度较低。幸运的是,肠肝循环的存在使黄酮类化合物能够随着时间在体内蓄积,因为这种循环增加了黄酮类化合物与靶组织的接触时间。我们相信,该领域的持续研究将帮助科学家设计出更好的方法来提高黄酮类化合物的口服生物利用度,以便有朝一日我们能够充分享受到摄入黄酮类化合物带来的健康益处。

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