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Polymorphism in Sulfadimidine/4-Aminosalicylic Acid Cocrystals: Solid-State Characterization and Physicochemical Properties

机译:磺胺嘧啶/ 4-氨基水杨酸共晶体的多态性:固态表征和理化性质。

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摘要

Polymorphism of crystalline drugs is a common phenomenon. However, the number of reported polymorphic cocrystals is very limited. In this work, the synthesis and solid-state characterization of a polymorphic cocrystal composed of sulfadimidine (SD) and 4-aminosalicylic acid (4-ASA) is reported for the first time. By liquid-assisted milling, the SD:4-ASA 1:1 form I cocrystal, the structure of which has been previously reported, was formed. By spray drying, a new polymorphic form (form II) of the SD:4-ASA 1:1 cocrystal was discovered which could also be obtained by solvent evaporation from ethanol and acetone. Structure determination of the form II cocrystal was calculated using high-resolution X-ray powder diffraction. The solubility of the SD:4-ASA 1:1 cocrystal was dependent on the pH and predicted by a model established for a two amphoteric component cocrystal. The form I cocrystal was found to be thermodynamically more stable in aqueous solution than form II, which showed transformation to form I. Dissolution studies revealed that the dissolution rate of SD from both cocrystals was enhanced when compared with a physical equimolar mixture and pure SD.
机译:结晶药物的多态性是普遍现象。然而,报道的多晶型共晶体的数量非常有限。在这项工作中,首次报道了由磺胺嘧啶(SD)和4-氨基水杨酸(4-ASA)组成的多晶型共晶体的合成和固态表征。通过液体辅助研磨,形成了SD:4-ASA 1:1 I型共晶,其结构先前已经报道过。通过喷雾干燥,发现了SD:4-ASA 1:1共晶的新的多晶型物(晶型II),也可以通过从乙醇和丙酮中蒸发溶剂获得。 II型共晶的结构确定是使用高分辨率X射线粉末衍射计算的。 SD:4-ASA 1:1共晶的溶解度取决于pH值,并由针对两性两性组分共晶建立的模型预测。发现I型共晶在水溶液中比II型在水溶液中在热力学上更稳定,后者表现出转化为I型。溶出度研究表明,与物理等摩尔混合物和纯SD相比,SD从两种共结晶中的溶解速率均得到提高。

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