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手性 1,4-二氢嘧啶衍生物在大鼠体内的对映体选择性分离和药代动力学:一种结合色谱和对接方法。

Enantioselective Separation and Pharmacokinetics of a Chiral 1,4-Dihydropyrimidine Derivative in Rats: A Combined Chromatography and Docking Approach.

机构信息

Department of Pharmaceutical Chemistry, JSS Academy of Higher Education & Research, Mysore, India.

出版信息

Chirality. 2024 Oct;36(10):e23723. doi: 10.1002/chir.23723.

Abstract

Chirality in 1,4-Dihydropyrimidines influences their pharmacological properties and synthetic strategies. Enantiomers of chiral drugs often exhibit different pharmacokinetic profiles. Therefore, separating and studying individual enantiomers is crucial to optimize drug efficacy and safety. Enantiomeric separation of ±4-(4-chlorophenyl)-6-methyl-2-oxo-N-(O-toyl)-1,2,3,4-tetrahydropyrimidine-5-carboxamide (DP-1), which is a 1,4-Dihydropyrimidine derivative is achieved on CHIRALCEL® OD-H column (particle size: 5 μm, inner diameter: 4.6 mm, length:150 mm), following by investigating the kinetic properties of (R) and (S) enantiomers. The separation was achieved with a mobile phase composed of 70% (v/v) isopropyl alcohol and 30% (v/v) n-hexane. For the bioanalytical study, acetonitrile was used to precipitate the rat plasma samples and validated the method according to USFDA guidelines. The validated bioanalytical method was then successfully applied to determine the pharmacokinetic parameters of the drug in biological samples. Molecular modeling techniques, specifically docking simulations, were employed to predict the elution order of DP-1 enantiomers. The docking results revealed moderate binding interactions between the enantiomers and the chiral stationary phase (CSP), which aligns with the theoretical expectation that stronger interactions lead to longer retention times on the column.

摘要

手性 1,4-二氢嘧啶影响其药理性质和合成策略。手性药物的对映异构体通常表现出不同的药代动力学特征。因此,分离和研究单个对映异构体对于优化药物的疗效和安全性至关重要。±4-(4-氯苯基)-6-甲基-2-氧代-N-(邻甲苯基)-1,2,3,4-四氢嘧啶-5-甲酰胺(DP-1)是一种 1,4-二氢嘧啶衍生物,其对映异构体在 CHIRALCEL® OD-H 柱(粒径:5 μm,内径:4.6 mm,长度:150 mm)上实现分离,随后研究(R)和(S)对映异构体的动力学性质。分离是在 70%(v/v)异丙醇和 30%(v/v)正己烷组成的流动相下进行的。对于生物分析研究,乙腈用于沉淀大鼠血浆样品,并根据美国 FDA 指南对方法进行验证。验证后的生物分析方法随后成功应用于确定生物样品中药物的药代动力学参数。分子建模技术,特别是对接模拟,用于预测 DP-1 对映异构体的洗脱顺序。对接结果表明,对映异构体与手性固定相(CSP)之间存在中等结合相互作用,这与较强相互作用导致柱上保留时间延长的理论预期一致。

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