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基于人肝微粒体中葡萄糖醛酸化活性测定的肝 UDP-葡萄糖醛酸转移酶酶的个体发生特征。

Characterization of the Ontogeny of Hepatic UDP-Glucuronosyltransferase Enzymes Based on Glucuronidation Activity Measured in Human Liver Microsomes.

机构信息

Department of Pharmaceutics, Center for Pharmacometrics and Systems Pharmacology, University of Florida at Lake Nona, Orlando, Florida, USA.

Pharmaceutical Sciences, Roche Pharma Research and Early Development, Roche Innovation Centre Basel, Basel, Switzerland.

出版信息

J Clin Pharmacol. 2019 Sep;59 Suppl 1:S42-S55. doi: 10.1002/jcph.1493.

Abstract

An understanding of the postnatal development of hepatic UDP-glucuronosyltransferase (UGT) enzymes is required for accurate prediction of the age-dependent changes in pharmacokinetics of many drugs used in children. However, the maturation rate of hepatic UGT isoforms remains a major knowledge gap. This study aimed to establish the age-associated changes in glucuronidation activity of 10 major hepatic UGT isoforms in humans, namely, UGT1A1, UGT1A3, UGT1A4, UGT1A6, UGT1A9, UGT2B4, UGT2B7, UGT2B10, UGT2B15, and UGT2B17. Human liver microsomes from pediatric and adult donors were incubated under optimized incubation conditions to assess the activity rates of hepatic UGT isoforms using a panel of 19 in vitro UGT probe substrates and clinically used drugs. Statistically strong correlations of glucuronidation activities allowed the ontogeny of UGT1A1, UGT1A4, UGT2B7, UGT2B10, and UGT2B15 to be established using multiple selective UGT substrates and matched human liver microsome samples. The postnatal development of hepatic UGTs is isoform-dependent using either individual or cross-correlated selective isoform substrates. Maximal adult activity was reached at different times ranging from within a month (UGT1A1, UGT2B4, UGT2B7, UGT2B10, and UGT2B15), during infancy (UGT1A3, UGT1A4, and UGT1A9), to adolescence (UGT1A6 and UGT2B17). This study provides an extensive characterization of the postnatal ontogeny profiles of hepatic UGT enzymes that are instrumental for predicting drug disposition via in vitro-in vivo extrapolation algorithms and verifying pharmacokinetic predictions against in vivo observations via pediatric physiologically based pharmacokinetic modeling in pediatric patients.

摘要

了解 UDP-葡糖醛酸基转移酶 (UGT) 酶在产后的发育对于准确预测许多儿童用药的药代动力学随年龄变化是必需的。然而,肝 UGT 同工型的成熟率仍然是一个主要的知识空白。本研究旨在建立人类 10 种主要肝 UGT 同工型的葡萄糖醛酸化活性与年龄相关的变化,即 UGT1A1、UGT1A3、UGT1A4、UGT1A6、UGT1A9、UGT2B4、UGT2B7、UGT2B10、UGT2B15 和 UGT2B17。使用一组 19 种体外 UGT 探针底物和临床用药,在优化的孵育条件下孵育来自儿科和成人供体的人肝微粒体,以评估肝 UGT 同工型的活性率。葡萄糖醛酸化活性的统计学强相关性允许使用多种选择性 UGT 底物和匹配的人肝微粒体样本建立 UGT1A1、UGT1A4、UGT2B7、UGT2B10 和 UGT2B15 的个体发生。使用单个或相互关联的选择性同工型底物,肝 UGT 的新生儿发育是同工型依赖性的。最大成人活性在不同时间达到,范围从一个月内(UGT1A1、UGT2B4、UGT2B7、UGT2B10 和 UGT2B15),婴儿期(UGT1A3、UGT1A4 和 UGT1A9),到青春期(UGT1A6 和 UGT2B17)。本研究提供了肝 UGT 酶的新生儿发生谱的广泛特征,对于通过体外-体内外推算法预测药物处置以及通过儿科生理基于药代动力学模型对儿科患者的体内观察进行验证是至关重要的。

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