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Intermolecular interaction as a direct measure of water solubility advantage of meloxicam cocrystalized with carboxylic acids

机译:分子间相互作用直接衡量美洛昔康与羧酸共结晶的水溶性优势

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摘要

The solubility advantage (SA) of meloxicam cocrystalized with mono- and dicarboxylic acids was expressed in terms of equilibrium constants involving active pharmaceutical ingredient and coformer in aqueous solutions. It is argued that SA can be quantified by concentration of pairs formed in water. The pH and concentration of dissolved components is included explicitly in the model. The alternative behavior of mono- and dicarboxylic acids was emphasized and addressed to different structural motifs. The structural and energetic properties of meloxicam and its complexes with carboxylic acids were characterized, including tautmerism and dissociation in aqueous media. In particular, performed in silico modeling confirmed experimental observation that meloxicam dissolved in water or modest acidic solutions is expected to be a mixture of anionic form in equilibrium with at least five neutral isomers. Tautomer-related diversity of pairs formation and the possibility of salt formation is also discussed. >Graphical abstractTwo types of motifs found in meloxicam cocrystals reveal two sources of solubility advantage
机译:用单羧酸和二羧酸共结晶的美洛昔康的溶解度优势(SA)用涉及活性药物成分和共形成剂的水溶液中的平衡常数表示。有人认为SA可以通过在水中形成的成对物质的浓度来定量。 pH和溶解组分的浓度明确包含在模型中。一元和二元羧酸的替代行为被强调并针对不同的结构图案。表征了美洛昔康及其与羧酸的配合物的结构和能量性质,包括在水性介质中的tautmerism和离解。尤其是,在计算机模拟中进行的实验证实了实验观察结果,即溶解于水或适度酸性溶液中的美洛昔康有望与至少五种中性异构体保持平衡,为阴离子形式的混合物。还讨论了互变异构体相关的成对形成多样性和成盐的可能性。 <!-fig ft0-> <!-fig @ position =“ anchor” mode =文章f4-> <!-fig mode =“ anchred” f5-> >图形摘要<!-无花果/图形|无花果/替代品/图形模式=“锚定” m1-> <!-标题a7->美洛昔康共晶体中发现的两种类型的基序揭示了两种溶解度优势的来源

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