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多态性 UGT2B17 对双氯芬酸的肠道代谢与其在人群中的高度可变药代动力学和安全性相关。

Intestinal Metabolism of Diclofenac by Polymorphic UGT2B17 Correlates with its Highly Variable Pharmacokinetics and Safety across Populations.

机构信息

Department of Pharmaceutical Sciences, Washington State University, Spokane, Washington, USA.

BioIVT, Halethorpe, Maryland, USA.

出版信息

Clin Pharmacol Ther. 2023 Jul;114(1):161-172. doi: 10.1002/cpt.2907. Epub 2023 Apr 29.

Abstract

Although the United States and Europe have shifted to the prescription use of oral diclofenac due to several serious incidences of cardiotoxicity, it is one of the most commonly used over-the-counter (OTC) pain medicines in major parts of the world. We elucidated the quantitative and tissue-specific contribution of uridine diphosphate-glucuronosyltransferases 17 (UGT2B17) in diclofenac metabolism and pharmacokinetics (PK). UGT2B17 is one of most deleted genes in humans with the gene deletion frequency ranging from ~ 20% in White population to 90% in Japanese population. The human intestinal and liver microsomes isolated from the high-UGT2B17 expressing individuals showed 21- and 4-fold greater rate of diclofenac glucuronide (DG) formation than in the null-UGT2B17 carriers, respectively. The greater contribution of intestinal UGT2B17 was confirmed by a strong correlation (R = 0.78, P < 0.001) between UGT2B17 abundance and DG formation in individual intestinal microsomes (n = 14). However, because UGT2B17 is a minor UGT isoform in the liver, DG formation rate correlated better with the expression of UGT2B7. The proteomics-informed physiologically-based pharmacokinetic (PBPK) model explains the reported higher exposure of diclofenac in women consistent with ~ 3-fold lower expression of UGT2B17. Similarly, our in silico predictions also corroborate with the reported higher exposure and lower standard clinical dose of diclofenac in Japanese population. Therefore, variable UGT2B17 mediated metabolism of oral diclofenac is a cause of concern, especially in the developing countries where it is still used as an OTC drug. The ontogeny data of UGTs in human hepatocytes can be utilized in developing PBPK models for predicting PK in the pediatric population.

摘要

尽管美国和欧洲因几起严重的心脏毒性事件已将口服双氯芬酸转为处方使用,但它仍是世界上大部分地区最常用的非处方(OTC)止痛药之一。我们阐明了尿苷二磷酸葡萄糖醛酸基转移酶 17(UGT2B17)在双氯芬酸代谢和药代动力学(PK)中的定量和组织特异性贡献。UGT2B17 是人类中最常缺失的基因之一,其基因缺失频率在白种人群中约为 20%,在日本人群中高达 90%。从高 UGT2B17 表达个体中分离出的人肠和肝微粒体,其双氯芬酸葡萄糖醛酸(DG)形成速率分别比无 UGT2B17 载体高 21 倍和 4 倍。个体肠微粒体中 UGT2B17 丰度与 DG 形成之间存在很强的相关性(R = 0.78,P < 0.001,n = 14),这证实了肠 UGT2B17 的贡献更大。然而,由于 UGT2B17 是肝脏中次要的 UGT 同工酶,DG 形成速率与 UGT2B7 的表达相关性更好。基于蛋白组学的生理药代动力学(PBPK)模型解释了报告的双氯芬酸在女性中的更高暴露,这与 UGT2B17 的表达降低约 3 倍一致。同样,我们的计算机预测也与报告的日本人群中双氯芬酸的更高暴露和更低标准临床剂量相吻合。因此,口服双氯芬酸的 UGT2B17 介导的代谢差异令人担忧,特别是在仍将其用作 OTC 药物的发展中国家。人类肝细胞中 UGT 的发育数据可用于开发 PBPK 模型,以预测儿科人群的 PK。

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