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手性二苯丙茶碱对映异构体结晶过程中分子柔性对双多态性、固溶体和手性识别的影响。

Impact of molecular flexibility on double polymorphism, solid solutions and chiral discrimination during crystallization of diprophylline enantiomers.

机构信息

Unité de Cristallogenèse, SMS, EA 3233, Université de Rouen , PRES Normandie Université , F-76821 Mont-Saint-Aignan Cedex, France.

出版信息

Mol Pharm. 2013 Oct 7;10(10):3850-61. doi: 10.1021/mp400308u. Epub 2013 Sep 13.

Abstract

The polymorphic behavior of racemic and enantiopure diprophylline (DPL), a chiral derivative of theophylline marketed as a racemic solid, has been investigated by combining differential scanning calorimetry, powder X-ray diffraction, hot-stage microscopy and single-crystal X-ray experiments. The pure enantiomers were obtained by a chemical synthesis route, and additionally an enantioselective crystallization procedure was developed. The binary phase diagram between the DPL enantiomers was constructed and revealed a double polymorphism (i.e., polymorphism both of the racemic mixture and of the pure enantiomer). The study of the various equilibria in this highly unusual phase diagram revealed a complex situation since mixtures of DPL enantiomers can crystallize either as a stable racemic compound, a metastable conglomerate, or two distinct metastable solid solutions. Crystal structure analysis revealed that the DPL molecules adopt different conformations in the crystal forms suggesting that the conformational degrees of freedom of the substituent that carries the only two H-bond donor groups might be related to the versatile crystallization behavior of DPL. The control of these equilibria and the use of a suitable solvent allowed the design of an efficient protocol for the preparative resolution of racemic DPL via preferential crystallization. Therefore, the resolution of DPL enantiomers despite the existence of a racemic compound stable at any temperature demonstrates that the detection of a stable conglomerate is not mandatory for the implementation of preferential crystallization.

摘要

对消旋和对映纯二羟丙茶碱(DPL)的多晶型行为进行了研究,DPL 是茶碱的手性衍生物,以消旋固体形式上市。通过差示扫描量热法、粉末 X 射线衍射、热台显微镜和单晶 X 射线实验相结合的方法进行了研究。纯对映异构体通过化学合成路线获得,此外还开发了对映选择性结晶程序。构建了 DPL 对映异构体之间的二元相图,并揭示了双重多晶型性(即消旋混合物和纯对映异构体的多晶型性)。对这个非常不寻常的相图中各种平衡的研究揭示了一个复杂的情况,因为 DPL 对映异构体的混合物可以结晶为稳定的外消旋化合物、亚稳的共晶或两种不同的亚稳固溶体。晶体结构分析表明,DPL 分子在晶体形式中采用不同的构象,这表明带有唯一两个氢键供体的取代基的构象自由度可能与 DPL 的多功能结晶行为有关。控制这些平衡并使用合适的溶剂可以设计一种有效的方法,通过优先结晶来制备拆分消旋 DPL。因此,尽管存在在任何温度下稳定的外消旋化合物,但拆分 DPL 对映异构体表明,对于实施优先结晶,检测稳定的共晶并非强制性的。

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