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姜黄素二乙基二琥珀酸酯(一种姜黄素前药)水解活化过程中涉及的稳定性动力学和血浆酯酶的种间差异。

Interspecies differences in stability kinetics and plasma esterases involved in hydrolytic activation of curcumin diethyl disuccinate, a prodrug of curcumin.

作者信息

Ratnatilaka Na Bhuket Pahweenvaj, Jithavech Ponsiree, Ongpipattanakul Boonsri, Rojsitthisak Pornchai

机构信息

Biomedicinal Chemistry Program, Department of Biochemistry and Microbiology, Faculty of Pharmaceutical Sciences, Chulalongkorn University Bangkok Thailand.

Natural Products for Ageing and Chronic Diseases Research Unit, Chulalongkorn University Bangkok Thailand.

出版信息

RSC Adv. 2019 Feb 6;9(8):4626-4634. doi: 10.1039/c8ra08594c. eCollection 2019 Jan 30.

Abstract

The investigation of plasma metabolism of ester prodrugs is an important part of ADME assays during preclinical drug development. Here, we show that the metabolism including plasma stability and metabolizing enzymes of curcumin diethyl disuccinate (CDD), an ester prodrug of curcumin, in dog and human plasma are similar but markedly different from those in rat plasma. HPLC and nonlinear regression analyses indicated that the hydrolysis of CDD in plasma followed a consecutive pseudo-first order reaction. The rapid hydrolytic cleavage of CDD in rat, dog, and human plasma was accelerated by plasma esterases in the following order: rat ≫ human > dog. LC-Q-TOF/MS analysis showed that the cleavage of ester bonds of CDD is preferential at the phenolic ester. Monoethylsuccinyl curcumin is the only intermediate metabolite found in plasma metabolism of CDD in all tested species. Further investigation using different esterase inhibitors revealed that carboxylesterase is the major enzyme involved in the hydrolysis of CDD in rats while multiple plasma esterases play a role in dogs and humans. Thus, the difference in the hydrolysis rates and the metabolizing enzymes of CDD metabolism in rat, dog and human plasma observed here is of benefit to further studies and provides a rationale for designing ester prodrugs of CUR with esterase-specific bioactivation.

摘要

酯前药的血浆代谢研究是临床前药物开发过程中ADME分析的重要组成部分。在此,我们表明姜黄素二乙基二琥珀酸酯(CDD)是姜黄素的一种酯前药,其在犬和人血浆中的代谢(包括血浆稳定性和代谢酶)相似,但与大鼠血浆中的代谢明显不同。高效液相色谱法(HPLC)和非线性回归分析表明,CDD在血浆中的水解遵循连续的准一级反应。血浆酯酶按以下顺序加速CDD在大鼠、犬和人血浆中的快速水解裂解:大鼠≫人>犬。液相色谱-四极杆-飞行时间质谱(LC-Q-TOF/MS)分析表明,CDD酯键的裂解在酚酯处具有优先性。单乙基琥珀酰姜黄素是在所有受试物种的CDD血浆代谢中发现的唯一中间代谢产物。使用不同酯酶抑制剂的进一步研究表明,羧酸酯酶是大鼠中参与CDD水解的主要酶,而多种血浆酯酶在犬和人中发挥作用。因此,此处观察到的大鼠、犬和人血浆中CDD代谢的水解速率和代谢酶的差异有利于进一步研究,并为设计具有酯酶特异性生物活化作用的姜黄素酯前药提供了理论依据。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b0c8/9060607/7477977fa7c8/c8ra08594c-f1.jpg

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