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磺胺甲基嘧啶:通过X射线晶体学研究和从头算晶格动力学理解滑移面在多晶型相变中的影响

Sulfamerazine: Understanding the Influence of Slip Planes in the Polymorphic Phase Transformation through X-Ray Crystallographic Studies and ab Initio Lattice Dynamics.

作者信息

Pallipurath Anuradha R, Skelton Jonathan M, Warren Mark R, Kamali Naghmeh, McArdle Patrick, Erxleben Andrea

机构信息

School of Chemistry, National University of Ireland , Galway, Ireland.

Department of Chemistry, University of Bath , Claverton Down, Bath BA2 7AY, United Kingdom.

出版信息

Mol Pharm. 2015 Oct 5;12(10):3735-48. doi: 10.1021/acs.molpharmaceut.5b00504. Epub 2015 Sep 8.

Abstract

Understanding the polymorphism exhibited by organic active-pharmaceutical ingredients (APIs), in particular the relationships between crystal structure and the thermodynamics of polymorph stability, is vital for the production of more stable drugs and better therapeutics, and for the economics of the pharmaceutical industry in general. In this article, we report a detailed study of the structure-property relationships among the polymorphs of the model API, Sulfamerazine. Detailed experimental characterization using synchrotron radiation is complemented by computational modeling of the lattice dynamics and mechanical properties, in order to study the origin of differences in millability and to investigate the thermodynamics of the phase equilibria. Good agreement is observed between the simulated phonon spectra and mid-infrared and Raman spectra. The presence of slip planes, which are found to give rise to low-frequency lattice vibrations, explains the higher millability of Form I compared to Form II. Energy/volume curves for the three polymorphs, together with the temperature dependence of the thermodynamic free energy computed from the phonon frequencies, explains why Form II converts to Form I at high temperature, whereas Form III is a rare polymorph that is difficult to isolate. The combined experimental and theoretical approach employed here should be generally applicable to the study of other systems that exhibit polymorphism.

摘要

了解有机活性药物成分(API)所呈现的多晶型现象,尤其是晶体结构与多晶型稳定性热力学之间的关系,对于生产更稳定的药物和更好的治疗方法以及整个制药行业的经济效益至关重要。在本文中,我们报告了对模型API磺胺甲基嘧啶多晶型物之间结构 - 性质关系的详细研究。使用同步辐射进行的详细实验表征辅以晶格动力学和力学性能的计算建模,以研究可磨性差异的起源并研究相平衡的热力学。在模拟声子光谱与中红外和拉曼光谱之间观察到良好的一致性。发现存在导致低频晶格振动的滑移面,这解释了晶型I比晶型II具有更高的可磨性。三种多晶型物的能量/体积曲线,以及根据声子频率计算的热力学自由能的温度依赖性,解释了为什么晶型II在高温下会转变为晶型I,而晶型III是一种难以分离的罕见多晶型物。这里采用的实验和理论相结合的方法通常应适用于研究其他呈现多晶型现象的系统。

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