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Acemetacin cocrystal structures by powder X-ray diffraction

机译:粉末X射线衍射显示醋乙酰胺共晶体结构

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摘要

Cocrystals of acemetacin drug (ACM) with nicotinamide (NAM), p-aminobenzoic acid (PABA), valerolactam (VLM) and 2-pyridone (2HP) were prepared by melt crystallization and their X-ray crystal structures determined by high-resolution powder X-ray diffraction. The powerful technique of structure determination from powder data (SDPD) provided details of molecular packing and hydrogen bonding in pharmaceutical cocrystals of acemetacin. ACM–NAM occurs in anhydrate and hydrate forms, whereas the other structures crystallized in a single crystalline form. The carboxylic acid group of ACM forms theacid–amide dimer three-point synthon R 3 2(9)R 2 2(8)R 3 2(9) with three different syn amides (VLM, 2HP and caprolactam). The conformations of the ACM molecule observed in the crystal structures differ mainly in the mutual orientation of chlorobenzene fragment and the neighboring methyl group, being anti (type I) or syn (type II). ACM hydrate, ACM—NAM, ACM–NAM-hydrate and the piperazine salt of ACM exhibit the type I conformation, whereas ACM polymorphs and other cocrystals adopt the ACM type II conformation. Hydrogen-bond interactions in all the crystal structures were quantified by calculating their molecular electrostatic potential (MEP) surfaces. Hirshfeld surface analysis of the cocrystal surfaces shows that about 50% of the contribution is due to a combination of strong and weak O⋯H, N⋯H, Cl⋯H and C⋯H interactions. The physicochemical properties of these cocrystals are under study.
机译:通过熔融结晶制备醋乙酰胺药物(ACM)与烟酰胺(NAM),对氨基苯甲酸(PABA),戊内酰胺(VLM)和2-吡啶酮(2HP)的共晶体,并用高分辨率粉末测定其X射线晶体结构X射线衍射。根据粉末数据(SDPD)确定结构的强大技术,提供了醋美沙星药物共晶体中分子堆积和氢键的详细信息。 ACM–NAM以无水物和水合物形式出现,而其他结构以单晶形式结晶。 ACM的羧酸基形成酸-酰胺二聚体三点合成子R 3 2 (9)R 2 2 (8)R 3 2 (9)用三种不同的合成酰胺(VLM,2HP和己内酰胺)。在晶体结构中观察到的ACM分子的构型主要不同之处在于氯苯片段和相邻甲基的相互取向,为反(I型)或Syn(II型)。 ACM水合物,ACM-NAM,ACM-NAM水合物和ACM哌嗪盐均显示I型构象,而ACM多晶型物和其他共晶体则采用ACM II型构象。通过计算其分子静电势(MEP)表面,可以量化所有晶体结构中的氢键相互作用。对共晶表面的Hirshfeld表面分析表明,约50%的贡献是由于强和弱O⋯H,N⋯H,Cl⋯H和C⋯H相互作用的结合。这些共晶体的物理化学性质正在研究中。

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