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新型混合模式固定相上药物化合物的三苯基阿替洛尔对映异构体的拆分:涉及动态色谱、动态 NMR 和分子模拟的案例研究。

Separation of triphenyl atropisomers of a pharmaceutical compound on a novel mixed mode stationary phase: a case study involving dynamic chromatography, dynamic NMR and molecular modeling.

机构信息

Early Development Analytical Research, Merck, Sharp and Dohme, Rahway, NJ 07065, USA.

出版信息

J Chromatogr A. 2010 Nov 12;1217(46):7255-64. doi: 10.1016/j.chroma.2010.09.042. Epub 2010 Sep 19.

Abstract

Analysis of atropisomers is of considerable interest in the pharmaceutical industry. For complex chiral molecules with several chiral centers hindered axial rotation can lead to formation of interconverting diastereomers that should be separable on achiral stationary phases. However, achieving the actual separation may be difficult as the on-column separation speed must match or be faster then the rate of isomer interconversion. Often, this requirement can be satisfied by using low-temperature conditions and by improving selectivity via use of chiral stationary phases. In the current study, we present an alternative approach utilizing an Obelisc R column, a novel mixed mode stationary phase that provided acceptable separation of triphenyl atropisomers inside a conventional HPLC temperature range. The separation was investigated under various chromatographic conditions. The interconversion chromatograms exhibited classic peak-plateau-peak behavior indicating the simultaneous atropisomer separation and interconversion. The elution profiles were integrated in order to deconvolute the peak areas of the "pure" (non-exchanged) and interconverted species; these data were used to obtain kinetic information. Analysis of retention data rendered thermodynamic information on the mechanism of retention and selectivity. Chromatographic kinetic data were complemented with variable-temperature NMR and molecular modeling studies, which provided additional support and insights into the energetics of the interconversion process.

摘要

对映异构体的分析在制药行业中具有相当大的意义。对于具有多个手性中心的复杂手性分子,轴向旋转的阻碍会导致互变的非对映异构体的形成,这些异构体应该可以在非手性固定相上分离。然而,实现实际的分离可能很困难,因为柱上的分离速度必须与互变异构体的转化速度相匹配或更快。通常,通过使用低温条件并通过使用手性固定相来提高选择性,可以满足这一要求。在本研究中,我们提出了一种替代方法,利用 Obelisc R 柱,这是一种新型的混合模式固定相,可在常规 HPLC 温度范围内提供可接受的三苯并对映异构体分离。在各种色谱条件下研究了分离情况。互变异构体的色谱图表现出典型的峰-平台-峰行为,表明同时进行了对映异构体的分离和互变异构体的转化。为了分解“纯”(未交换)和互变异构体的峰面积,对洗脱曲线进行了积分;这些数据用于获得动力学信息。保留数据分析提供了关于保留和选择性机制的热力学信息。色谱动力学数据补充了变温 NMR 和分子建模研究,这些研究为互变异构过程的能量学提供了额外的支持和见解。

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