Development and Evaluation of Ontogeny Functions of the Major UDP-Glucuronosyltransferase Enzymes to Underwrite Physiologically Based Pharmacokinetic Modeling in Pediatric Populations

Nashid Farhan PhD, Upendra P. Dahal PhD, Jan Wahlstrom PhD
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Abstract

Uridine 5′-diphospho-glucuronosyltransferases (UGTs) demonstrate variable expression in the pediatric population. Thus, understanding of age-dependent maturation of UGTs is critical for accurate pediatric pharmacokinetics (PK) prediction of drugs that are susceptible for glucuronidation. Ontogeny functions of major UGTs have been previously developed and reported. However, those ontogeny functions are based on in vitro data (i.e., enzyme abundance, in vitro substrate activity, and so on) and therefore, may not translate to in vivo maturation of UGTs in the clinical setting. This report describes meta-analysis of the literature to develop and compare ontogeny functions for 8 primary UGTs (UGT1A1, UGT1A4, UGT1A6, UGT1A9, UGT2B7, UGT2B10, UGT2B15, and UGT2B17) based on published in vitro and in vivo studies. Once integrated with physiologically based pharmacokinetics modeling models, in vivo activity-based ontogeny functions demonstrated somewhat greater prediction accuracy (mean squared error, MSE: 0.05) compared to in vitro activity (MSE: 0.104) and in vitro abundance-based ontogeny functions (MSE: 0.129).

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开发和评估主要 UDP-Glucuronosyl 转移酶的本体功能,为基于生理学的儿科药代动力学建模提供依据。
尿苷-5'-二磷酸-葡萄糖醛酸转移酶(UGTs)在儿科人群中的表达各不相同。因此,了解 UGTs 随年龄变化的成熟度对于准确预测儿科药物代谢动力学(PK)中易发生葡萄糖醛酸化的药物至关重要。主要 UGTs 的本体功能已在之前得到开发和报道。然而,这些本体功能基于体外数据(即酶丰度、体外底物活性等),因此可能无法转化为临床环境中 UGTs 的体内成熟。本报告介绍了根据已发表的体外和体内研究对文献进行的荟萃分析,以开发和比较 8 种主要 UGT(UGT1A1、UGT1A4、UGT1A6、UGT1A9、UGT2B7、UGT2B10、UGT2B15 和 UGT2B17)的本体功能。与基于生理学的药代动力学建模模型整合后,与体外活性(MSE:0.104)和体外丰度(MSE:0.129)本体函数相比,基于体内活性的本体函数显示出更高的预测准确性(均方误差,MSE:0.05)。
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