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首页> 外文期刊>Biochemical Pharmacology >Use of physiologically based kinetic (PBK) modeling to study interindividual human variation and species differences in plasma concentrations of quercetin and its metabolites
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Use of physiologically based kinetic (PBK) modeling to study interindividual human variation and species differences in plasma concentrations of quercetin and its metabolites

机译:使用基于生理的动力学(PBK)模型研究槲皮素及其代谢产物血浆中个体间的变异和物种差异

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摘要

Biological activities of flavonoids in vivo ultimately depend on the systemic bioavailability of the aglycones and their metabolites. We aimed to develop physiologically based kinetic (PBK) models to predict plasma concentrations of the flavonoid quercetin and its metabolites in individual human subjects and to define species differences compared with male rat. The human models were developed based on in vitro metabolic parameters derived from incubations with pooled and 20 individual human tissue fractions and by fitting kinetic parameters to available in vivo data. The outcomes obtained were compared to a previously developed model for quercetin and its metabolites formation in male rat. Quercetin-3'-O-glucuronide was predicted to be the major circulating metabolite in 19 out of 20 individuals, while in male rat di- and tri-conjugates of quercetin containing a glucuronic acid, sulfate and/or methyl moieties are the major metabolites. Significant species differences occur in major circulating metabolites of quercetin suggesting that rat is not an adequate model to study effects of quercetin in man. The defined PBK models can be used to guide the experimental design of in vitro experiments with flavonoids, especially to better take into account the relevance of metabolism and the contribution of metabolites to the biological activity in humans. (C) 2015 Elsevier Inc. All rights reserved.
机译:黄酮类化合物的体内生物活性最终取决于糖苷配基及其代谢产物的全身生物利用度。我们的目标是建立基于生理的动力学(PBK)模型,以预测个体受试者中类黄酮槲皮素及其代谢产物的血浆浓度,并定义与雄性大鼠相比的物种差异。基于从合并了20种​​个体人体组织部分的孵育中获得的体外代谢参数,以及通过将动力学参数拟合到可用的体内数据,开发了人类模型。将获得的结果与先前开发的槲皮素及其在雄性大鼠中代谢产物形成模型进行比较。槲皮素3'-O-葡萄糖醛酸被认为是20个人中19个的主要循环代谢产物,而在雄性大鼠中,包含葡萄糖醛酸的槲皮素二-和三-缀合物中,硫酸盐和/或甲基部分是主要的代谢物。槲皮素的主要循环代谢产物之间存在明显的物种差异,这表明大鼠不是研究槲皮素对人的影响的适当模型。定义的PBK模型可用于指导类黄酮体外实验的实验设计,尤其是更好地考虑了代谢的相关性以及代谢产物对人类生物活性的影响。 (C)2015 Elsevier Inc.保留所有权利。

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