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基于混溶性和氢键分析的三元固体分散体中有机小分子辅料的筛选:实验和分子模拟。

Screening of Organic Small Molecule Excipients on Ternary Solid Dispersions Based on Miscibility and Hydrogen Bonding Analysis: Experiments and Molecular Simulation.

机构信息

State Key Laboratory of Organic-Inorganic Composites, Beijing University of Chemical Technology, Beijing, 100029, People's Republic of China.

Institute of Basic Medical Sciences, Chinese Academy of Medical Sciences & Peking Union Medical College, Beijing, 100005, People's Republic of China.

出版信息

AAPS PharmSciTech. 2024 Jan 24;25(1):21. doi: 10.1208/s12249-024-02737-6.

Abstract

The preparation of solid dispersions by mixing insoluble drugs with polymers is the main way to improve the aqueous solubility of drugs. The introduction of organic small molecule excipients into binary solid dispersions is expected to further enhance drug solubility by regulating intermolecular hydrogen bonding within the system at the microscopic level. In this study, we used carbamazepine (CBZ) as the target drug and polyvinylpyrrolidone as the solid dispersion matrix and screened the third component from 13 organic small molecules with good miscibility in the solid dispersion based on the principle of similarity of solubility parameters. The hydrogen bonding parameters and dissociation Gibbs free energy of the 13 organic small molecule-CBZ dimer were calculated by quantum mechanical simulation, and the tryptophan (Try) was identified as the optimal third component of organic small molecule. The migration of CBZ in binary and ternary systems was also analyzed by molecular dynamics simulation. On this theoretical basis, the corresponding solid dispersions were prepared, characterized, and tested for solubility analysis, which verified that the drug solubility was stronger for the system with the addition of polar fractions and the Try was indeed the best third component of organic small molecule compound, which was consistent with the simulation predictions. This screening method may provide theoretical guidance for drug modification design and clinical studies.

摘要

将难溶性药物与聚合物混合制备固体分散体是提高药物水溶性的主要方法。在二元固体分散体中引入有机小分子赋形剂,有望通过在微观水平上调节体系内的分子间氢键,进一步提高药物的溶解度。在本研究中,我们以卡马西平(CBZ)为目标药物,以聚乙烯吡咯烷酮为固体分散体基质,根据溶解度参数相似性的原则,从 13 种在固体分散体中具有良好混溶性的有机小分子中筛选出第三成分。通过量子力学模拟计算了 13 种有机小分子-CBZ 二聚体的氢键参数和离解吉布斯自由能,并鉴定色氨酸(Try)为有机小分子的最佳第三成分。通过分子动力学模拟分析了 CBZ 在二元和三元体系中的迁移情况。在此理论基础上,制备、表征并测试了相应的固体分散体进行溶解度分析,验证了加入极性分数的体系对药物溶解度更强,且 Try 确实是有机小分子化合物的最佳第三成分,与模拟预测一致。这种筛选方法可能为药物修饰设计和临床研究提供理论指导。

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