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(-)-表儿茶素的吸收、代谢、分布和排泄:近期研究结果综述。

Absorption, metabolism, distribution and excretion of (-)-epicatechin: A review of recent findings.

机构信息

Department of Nutrition, University of California, Davis, CA 95616, United States.

Mars Inc., McLean, VA 22101, United States.

出版信息

Mol Aspects Med. 2018 Jun;61:18-30. doi: 10.1016/j.mam.2017.11.002. Epub 2017 Nov 9.

Abstract

This paper reviews pioneering human studies, their limitations and recent investigations on the absorption, metabolism, distribution and excretion (aka bioavailability) of (-)-epicatechin. Progress has been made possible by improvements in mass spectrometric detection when coupled to high performance liquid chromatography and through the increasing availability of authentic reference compounds of in vivo metabolites of (-)-epicatechin. Studies have shown that 2-C-epicatechin is absorbed in the small intestine with the 12 structural-related (-)-epicatechin metabolites (SREMs), mainly in the form of (-)-epicatechin-3'-O-glucuronide, 3'-O-methyl-(-)-epicatechin-5-sulfate and (-)-epicatechin-3'-sulfate, attaining sub-μmol/L peak plasma concentrations (C) ∼1 h after ingestion. SREMs were excreted in urine over a 24 h period in amounts corresponding to 20% of (-)-epicatechin intake. On reaching the colon the flavan-3-ol undergoes microbiota-mediated conversions yielding the 5C-ring fission metabolites (5C-RFMs) 5-(hydroxyphenyl)-γ-valerolactones and 5-(hydroxyphenyl)-γ-hydroxyvaleric acids which appear in plasma as phase II metabolites with a C of 5.8 h after intake and are excreted in quantities equivalent to 42% of the ingested (-)-epicatechin. Other catabolites excreted in 0-24 h urine in amounts equivalent to 28% of intake included 3-(3'-hydroxyphenyl)hydracrylic acid, hippuric acid and 3'-hydroxyhippuric acid. Overall (-)-epicatechin is highly bioavailable with urinary excretion indicating that 95% is absorbed and passes through the circulatory systems as a diversity of phase II metabolites. Rats produce a very different profile of SREMs than that of humans. These findings demonstrate that ex vivo studies investigating the mechanisms underlying the protective effects of (-)-epicatechin on human health should make use of physiological concentrations human of SREMs and 5C-RFMs, and not the parent (-)-epicatechin, with model systems derived from human cells. In epidemiological studies 5-(4'-hydroxyphenyl)-γ-valerolactone-3'-sulfate and 5-(4'-hydroxyphenyl)-γ-valerolactone-3'-O-glucuronide, the principal 5C-RFMs in both plasma and urine, could serve as key biomarkers of (-)-epicatechin intake.

摘要

本文综述了开创性的人体研究,以及关于 (-)-表儿茶素吸收、代谢、分布和排泄(又称生物利用度)的最新研究。质谱检测与高效液相色谱的结合得到了改进,同时内源性 (-)-表儿茶素代谢物的真实参考化合物的可用性也有所增加,这些进步使得这方面的研究成为可能。研究表明,[2-C](-)-表儿茶素在小肠中被吸收,有 12 种结构相关的 (-)-表儿茶素代谢物(SREMs),主要以 (-)-表儿茶素-3'-O-葡萄糖苷、3'-O-甲基-(-)-表儿茶素-5-硫酸酯和 (-)-表儿茶素-3'-硫酸酯的形式存在,摄入后 1 小时达到亚微摩尔/升的血浆峰浓度(C)。SREMs 在 24 小时内通过尿液排泄,排泄量相当于 (-)-表儿茶素摄入量的 20%。到达结肠后,黄烷-3-醇经微生物群介导转化生成 5C 环裂解代谢物(5C-RFMs)5-(羟基苯基)-γ-缬草酸内酯和 5-(羟基苯基)-γ-羟基缬草酸,这些代谢物作为 II 期代谢物出现在血浆中,摄入后 5.8 小时达到 C,并以相当于摄入的 (-)-表儿茶素 42%的量排泄。在 0-24 小时尿液中排泄的其他代谢物,相当于摄入量的 28%,包括 3-(3'-羟基苯基)丙烯酸、马尿酸和 3'-羟基马尿酸。总的来说,(-)-表儿茶素的生物利用度很高,尿液排泄表明 95%被吸收,并以多种 II 期代谢物的形式通过循环系统。大鼠产生的 SREMs 谱与人类非常不同。这些发现表明,研究 (-)-表儿茶素对人类健康的保护作用的机制的离体研究应该利用人体 SREMs 和 5C-RFMs 的生理浓度,而不是母体 (-)-表儿茶素,并且模型系统应该来源于人类细胞。在流行病学研究中,5-(4'-羟基苯基)-γ-缬草酸内酯-3'-硫酸酯和 5-(4'-羟基苯基)-γ-缬草酸内酯-3'-O-葡萄糖苷,即血浆和尿液中的主要 5C-RFMs,可以作为 (-)-表儿茶素摄入量的关键生物标志物。

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