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抗雄激素药物尼鲁米特的多晶型形式:结构和热力学方面。

Polymorphic forms of antiandrogenic drug nilutamide: structural and thermodynamic aspects.

机构信息

G. A. Krestov Institute of Solution Chemistry of the Russian Academy of Sciences, 1 Akademicheskaya St., 153045 Ivanovo, Russia.

出版信息

Phys Chem Chem Phys. 2021 Apr 28;23(16):9695-9708. doi: 10.1039/d1cp00793a.

DOI:10.1039/d1cp00793a
PMID:33908506
Abstract

Attempts to obtain new cocrystals of nonsteroidal antiandrogenic drug nilutamide produced alternative polymorphic forms of the compound (Form II and Form III) and their crystal structures were elucidated by single-crystal X-ray diffraction. Apart from the cocrystallization technique, lyophilization was found to be an effective strategy for achieving polymorph control of nilutamide, which was difficult to obtain by other methods. The physicochemical properties and relative stability of the commercial Form I and newly obtained Form II were comprehensively investigated by a variety of analytical methods (thermal analysis, solution calorimetry, solubility, and sublimation), whereas for Form III, only a handful of experimental parameters were obtained due to the elusive nature of the polymorph. Form I and Form II were found to be monotropically related, with Form I being confirmed as the thermodynamically most stable solid phase. In addition, the performance of different DFT-D and semi-empirical schemes for lattice energy calculation and polymorph energy ranking was compared and analysed. Lattice energy calculations using periodic DFT at B3LYP-D3/6-31(F+)G(d,p) and PBEh-3c/def2-mSVP levels of theory were found to provide the most accurate lattice energy values for Form I against experimental data, while PIXEL and PBEh-3c/def2-mSVP were the only methods that predicted the correct order of stability of Forms I and II.

摘要

尝试获得非甾体类抗雄激素药物 nilutamide 的新共晶,产生了该化合物的两种不同多晶型形式(形式 II 和形式 III),并通过单晶 X 射线衍射解析了它们的晶体结构。除了共晶化技术外,冻干被发现是一种有效的策略,可以实现 nilutamide 的多晶型控制,这是其他方法难以实现的。通过各种分析方法(热分析、溶液量热法、溶解度和升华)对商业形式 I 和新获得的形式 II 的物理化学性质和相对稳定性进行了全面研究,而对于形式 III,由于多晶型的难以捉摸性质,仅获得了少数实验参数。形式 I 和形式 II 被发现是单斜相关的,形式 I 被确认为热力学上最稳定的固相。此外,还比较和分析了不同 DFT-D 和半经验方案用于晶格能计算和多晶型能量排序的性能。使用周期性 DFT 在 B3LYP-D3/6-31(F+)G(d,p)和 PBEh-3c/def2-mSVP 理论水平上进行的晶格能计算被发现为形式 I 提供了与实验数据最接近的晶格能值,而 PIXEL 和 PBEh-3c/def2-mSVP 是唯一预测形式 I 和 II 稳定性正确顺序的方法。

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