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啤酒花(Humulus lupulus)中一种强效植物雌激素8-异戊烯基柚皮素在人肝微粒体中的代谢。

Metabolism of 8-prenylnaringenin, a potent phytoestrogen from hops (Humulus lupulus), by human liver microsomes.

作者信息

Nikolic Dejan, Li Yongmei, Chadwick Lucas R, Grubjesic Simonida, Schwab Pia, Metz Peter, van Breemen Richard B

机构信息

Department of Medicinal Chemistry and Pharmacognosy, College of Pharmacy, University of Illinois at Chicago, IL 60612-7231, USA.

出版信息

Drug Metab Dispos. 2004 Feb;32(2):272-9. doi: 10.1124/dmd.32.2.272.

Abstract

The female flowers of hops are used throughout the world as a flavoring agent for beer. Recently, there has been increasing interest in the potential estrogenic properties of hop extracts. Among the possible estrogenic compounds in hops, 8-prenylnaringenin is perhaps most significant due to its high in vitro potency exceeding that of other known phytoestrogens. Since data regarding the pharmacokinetic properties of this compound are lacking, we investigated the in vitro metabolism of 8-prenylnaringenin by human liver microsomes. A total of 12 metabolites were identified, and biotransformation occurred on the prenyl group and the flavanone skeleton. The major site of oxidation was on the terminal methyl groups, and of the two possible isomers, the transisomer was more abundant. The double bond on the prenyl group was also oxidized to an epoxide that was opened by intramolecular reaction with the neighboring hydroxyl group. On the flavanone skeleton, the major site of oxidation was at 3'position on the B ring. Other metabolites included oxidation at carbon-3 as well as desaturation of the C ring to produce 8-prenylapigenin. An unusual hydroxy quinone product formed by ipso hydroxylation of the B ring of 8-prenylnaringenin was also detected. This product was probably an intermediate for the B ring cleavage product, 8-prenylchromone.

摘要

啤酒花的雌花在世界各地被用作啤酒的调味剂。最近,人们对啤酒花提取物潜在的雌激素特性越来越感兴趣。在啤酒花中可能存在的雌激素化合物中,8-异戊烯基柚皮素可能最为重要,因为其体外活性较高,超过了其他已知的植物雌激素。由于缺乏关于该化合物药代动力学特性的数据,我们研究了人肝微粒体对8-异戊烯基柚皮素的体外代谢。共鉴定出12种代谢产物,生物转化发生在异戊烯基和黄烷酮骨架上。氧化的主要位点在末端甲基上,在两种可能的异构体中,反式异构体更为丰富。异戊烯基上的双键也被氧化成环氧化物,该环氧化物通过与相邻羟基的分子内反应而开环。在黄烷酮骨架上,氧化的主要位点在B环的3'位。其他代谢产物包括3位的氧化以及C环的去饱和以产生8-异戊烯基芹菜素。还检测到一种由8-异戊烯基柚皮素B环的原位羟基化形成的不寻常的羟基醌产物。该产物可能是B环裂解产物8-异戊烯基色酮的中间体。

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