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地昔帕明形式 V:一种药物的迟现热力学多晶型物。

Dapsone Form V: A Late Appearing Thermodynamic Polymorph of a Pharmaceutical.

机构信息

Institute of Pharmacy , University of Innsbruck , Innrain 52c , 6020 Innsbruck , Austria.

Department of Chemistry , University College London , 20 Gordon Street , London WC1H 0AJ , U.K.

出版信息

Mol Pharm. 2019 Jul 1;16(7):3221-3236. doi: 10.1021/acs.molpharmaceut.9b00419. Epub 2019 May 31.

DOI:10.1021/acs.molpharmaceut.9b00419
PMID:31075201
Abstract

Five anhydrate polymorphs (forms I-V) and the isomorphic dehydrate (Hy) of dapsone (4,4'-diaminodiphenyl sulfone or DDS) were prepared and characterized in an interdisciplinary experimental and computational study, elucidating the kinetic and thermodynamic stabilities, solid form interrelationships, and structural features of the known forms I-IV, the novel polymorph form V, and Hy. Calorimetric measurements, solubility experiments, and lattice energy calculations revealed that form V is the thermodynamically stable polymorph from absolute zero to at least 90 °C. At higher temperatures, form II, and then form I, becomes the most stable DDS solid form. The computed 0 K stability order (lattice energy calculations) was confirmed with calorimetric measurements as follows, V (most stable) > III > Hy > II > I > IV (least stable). The discovery of form V was complicated by the fact that the metastable but kinetically stabilized form III shows a higher nucleation and growth rate. By combining laboratory powder X-ray diffraction data and ab initio calculations, the crystal structure of form V ( P2/ c, Z' = 4) was solved, with a high energy DDS conformation allowing a denser packing and more stable intermolecular interactions, rationalizing the formation of a high Z' structure. The structures of the forms I and IV, only observed from the melt and showing distinct packing features compared to the forms II, III, and V, were derived from the computed crystal energy landscapes. Dehydration modeling of the DDS hydrate led to the Hy structure. This study expands our understanding about the complex crystallization behavior of pharmaceuticals and highlights the big challenge in solid form screening, especially that there is no clear end point.

摘要

在一项跨学科的实验和计算研究中,制备并表征了五种无水多晶型物(形式 I-V)和 DDS 的同晶脱水物(Hy),阐明了已知形式 I-IV、新型多晶型物 V 和 Hy 的动力学和热力学稳定性、固形物相互关系和结构特征。量热测量、溶解度实验和晶格能计算表明,V 形式在绝对零度到至少 90°C 的温度范围内是热力学稳定的多晶型物。在更高的温度下,形式 II 然后是形式 I 成为最稳定的 DDS 固体形式。计算的 0 K 稳定性顺序(晶格能计算)通过量热测量得到了证实,结果如下,V(最稳定)>III>Hy>II>I>IV(最不稳定)。V 形式的发现很复杂,因为亚稳但动力学稳定的形式 III 显示出更高的成核和生长速率。通过结合实验室粉末 X 射线衍射数据和从头算计算,解决了 V 形式(P2/c,Z'=4)的晶体结构,高能量 DDS 构象允许更密集的堆积和更稳定的分子间相互作用,合理地形成了高 Z'结构。仅从熔体中观察到的形式 I 和 IV 的结构,与形式 II、III 和 V 相比显示出明显的堆积特征,是从计算的晶体能量景观中推导出来的。DDS 水合物的脱水建模导致了 Hy 结构。这项研究扩展了我们对药物复杂结晶行为的理解,并强调了在固体形式筛选方面的巨大挑战,特别是没有明确的终点。

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