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用于常规光谱测定活性药物成分芬氟拉明、舍曲林和帕罗西汀对映体纯度的定量1H核磁共振方法。

Quantitative 1H NMR method for the routine spectroscopic determination of enantiomeric purity of active pharmaceutical ingredients fenfluramine, sertraline, and paroxetine.

作者信息

Salsbury Jonathon S, Isbester Paul K

机构信息

Albany Molecular Research, Incorporation, Albany, NY 12212-5098, USA.

出版信息

Magn Reson Chem. 2005 Nov;43(11):910-7. doi: 10.1002/mrc.1642.

Abstract

Determining the enantiomeric purity of chiral therapeutic agents is important in the development of active pharmaceutical ingredients (API). A strategy for determining the enantiomeric purity of three APIs was developed using nuclear magnetic resonance (NMR) and the chiral solvating agent (CSA) 1,1-bi-2-naphthyl (1). While chiral chromatography is widely used to evaluate enantiomeric purity, it can sometimes suffer from tedious sample preparation obviating rapid measurements that are sometimes needed during the manufacture of such agents. The techniques described herein provide comparable enantiomeric purity results with those obtained with traditional chiral HPLC and other published methods for these compounds. Chiral analysis of standard samples of methylbenzylamine enantiomeric mixtures using 1 were found to be quantitative to approximately 1% minor enantiomer. Enantiomeric purity determination by NMR utilizing chiral solvating agents do not require special instrumental techniques, chemical derivatization or standards and is therefore ideally suited for rapid routine analysis. As a result, the technique demonstrated is commonly used in our laboratory as a complementary or alternative method to chiral HPLC or optical rotation measurements for routine determination of enantiomeric purity.

摘要

测定手性治疗药物的对映体纯度在活性药物成分(API)的开发中很重要。利用核磁共振(NMR)和手性溶剂化剂(CSA)1,1-联-2-萘基(1)开发了一种测定三种API对映体纯度的策略。虽然手性色谱法被广泛用于评估对映体纯度,但它有时会因样品制备繁琐而无法进行快速测量,而在这类药物的生产过程中有时需要进行快速测量。本文所述技术与传统手性高效液相色谱法(HPLC)及其他已发表的针对这些化合物的方法相比,能提供相当的对映体纯度结果。使用1对甲基苄胺对映体混合物的标准样品进行手性分析,发现对约1%的次要对映体具有定量效果。利用手性溶剂化剂通过核磁共振测定对映体纯度不需要特殊的仪器技术、化学衍生化或标准品,因此非常适合快速常规分析。因此,所展示的该技术在我们实验室中通常作为手性HPLC或旋光测量的补充或替代方法,用于常规测定对映体纯度。

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