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使用肠道Caco-2/TC7细胞模型研究黄酮类化合物山奈酚和高良姜素的吸收、结合及外排

Absorption, Conjugation and Efflux of the Flavonoids, Kaempferol and Galangin, Using the Intestinal CACO-2/TC7 Cell Model.

作者信息

Barrington Robert, Williamson Gary, Bennett Richard N, Davis Barry D, Brodbelt Jennifer S, Kroon Paul A

机构信息

Institute of Food Research, Norwich Research Park, Norwich NR4 7UA, UK.

出版信息

J Funct Foods. 2009 Jan 1;1(1):74-87. doi: 10.1016/j.jff.2008.09.011.

Abstract

Flavonoids are biologically active compounds in food with potential health effects. We have used the Caco-2 cell monolayer model to study the absorption and metabolism of two flavonols, a class of flavonoids, specifically kaempferol and galangin. Metabolism experiments allowed identification of 5 kaempferol conjugates: 3-, 7- and 4'-glucuronide, a sulphate and a glucurono-sulphate; and 4 galangin conjugates: 3-, 5- and 7-glucuronides, and a sulphate, using specific enzyme hydrolysis, HPLC-MS, and HPLC with post column metal complexation/tandem MS. Transport studies showed that the flavonols were conjugated inside the cells then transported across the monolayer or effluxed back to the apical side. Sulphated conjugates were preferentially effluxed back to the apical side, whereas glucuronides were mostly transported to the basolateral side. For kaempferol, a small amount of the unconjugated aglycone permeated in both directions, indicating some passive diffusion. When kaempferol-3-glucuronide and quercetin7-sulphate were applied to either side of the cells, no permeation in either direction was observed, indicating that conjugates cannot re-cross the cell monolayer. Formation of apical kaempferol-7- and 4'-glucuronides was readily saturated, whereas formation of other conjugates at the apical side and all at the basolateral side increased with increasing concentration of kaempferol, implying different transporters are responsible at the apical and basolateral sides. The results highlight the important but complex metabolic changes occurring in flavonoids during absorption.

摘要

黄酮类化合物是食物中的生物活性化合物,具有潜在的健康影响。我们利用Caco-2细胞单层模型研究了两种黄酮醇(一类黄酮类化合物,具体为山奈酚和高良姜素)的吸收和代谢。通过特定的酶水解、HPLC-MS以及柱后金属络合/串联MS的HPLC方法,代谢实验鉴定出5种山奈酚缀合物:3-、7-和4'-葡糖醛酸苷、一种硫酸盐和一种葡糖醛酸-硫酸盐;以及4种高良姜素缀合物:3-、5-和7-葡糖醛酸苷,和一种硫酸盐。转运研究表明,黄酮醇在细胞内进行缀合,然后穿过单层转运或回流到顶端侧。硫酸化缀合物优先回流到顶端侧,而葡糖醛酸苷大多转运到基底外侧。对于山奈酚,少量未缀合的苷元在两个方向上都有渗透,表明存在一些被动扩散。当将山奈酚-3-葡糖醛酸苷和槲皮素7-硫酸盐应用于细胞的任一侧时,未观察到在任一方向上的渗透,这表明缀合物不能重新穿过细胞单层。顶端山奈酚-7-和4'-葡糖醛酸苷的形成很容易饱和,而顶端侧其他缀合物以及基底外侧所有缀合物的形成都随着山奈酚浓度的增加而增加,这意味着在顶端和基底外侧存在不同的转运体。这些结果突出了黄酮类化合物在吸收过程中发生的重要但复杂的代谢变化。

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