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Understanding the Role of Water in Different Solid Forms of Avibactam Sodium and Its Affecting Mechanism

机译:了解水以不同于不同形式的Avibactam钠及其影响机制的作用

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摘要

Hydrates are common in pharmaceutical development, and the formation of hydrates affects the performance of the final product. However, the role that water plays in crystal packing remains unclear. In this study, Avibactam sodium, which has one dihydrate (Form E), one monohydrate (Form A), and two anhydrous forms (Form B and D), was chosen as the model compound to understand this subject. Single crystal structures of four solid forms were obtained and characterized by single X-ray diffraction. The dynamic vapor sorption experiments revealed the moisture-dependent stability increased in the order: Form B < Form D < Form A < Form E. It can be envisaged that the integration of water molecules could noticeably compensate the potential intermolecular interactions, thereby significantly improving the crystal stabilities of hydrates. Furthermore, the hydration of Form B was investigated to understand the integration of water molecules by measuring the critical hydration water activities (a(w)). The results indicated that both water activities and temperature are vital factors to determine the amount of water molecules existing in crystal lattice, Moreover, to probe the disintegration of water molecules, the dehydration of dihydrate was investigated in detail by solid-state transformation and solvent-mediated transformation experiments. Finally, two-step dehydration and one-step dehydration + recrystallization mechanisms of these different pathways were proposed by analyzing the transformation experiment results and the crystal structure of various solid forms.
机译:水合物在药物发育中是常见的,水合物的形成影响了最终产品的性能。然而,水在水晶包装中的作用仍然不清楚。在该研究中,选择具有一种二水合物(形式E),一种单水合物(形式A)和两种无水形式(形式B和D)的Avibactam钠作为模型化合物以了解该主题。获得了四种固体形式的单晶结构,并通过单一X射线衍射表征。动态蒸汽吸附实验揭示了依赖性依赖性稳定性,顺序增加:B形式B <形式D <形式A.可以设想水分子的整合可以明显补偿电位的分子间相互作用,从而显着改善了潜在的分子间相互作用,从而显着改善了水合物的晶体稳定性。此外,研究了形式B的水合,以通过测量临界水合水活(A(W))来了解水分子的整合。结果表明,水中活性和温度是确定晶格中存在的水分子量的重要因素,此外,为了探测水分子的崩解,通过固态转化和溶剂详细研究了二水合物的脱水 - 介导的转化实验。最后,通过分析转化实验结果和各种固体形式的晶体结构,提出了这些不同途径的两步脱水和一步脱水+再结晶机制。

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