共晶
纳米技术
材料科学
晶体工程
溶解
溶解度
活性成分
药物输送
超分子化学
生化工程
组合化学
氢键
化学
有机化学
分子
药理学
工程类
医学
作者
Suvarna J. Shelke,Dhanashri Haushiram Bhangare,M. D. Patil,Department of Pharmaceutics, SMBT College Of Pharmacy, Nashik, Maharashtra, India,Mayuri Deepak Patil,Department of Pharmaceutics, SMBT College Of Pharmacy, Nashik, Maharashtra, India
出处
期刊:Chinese journal of applied physiology
[Chinese Medical Association]
日期:2025-01-01
卷期号:41: e20250022-e20250022
标识
DOI:10.62958/j.cjap.2025.022
摘要
Pharmaceutical cocrystals have emerged as a transformative approach in drug development, enhancing the physicochemical properties of active pharmaceutical ingredients (APIs) such as solubility, bioavailability, stability, and dissolution rate without altering their pharmacological characteristics. Defined as multicomponent crystalline solids composed of two or more neutral molecules in a stoichiometric ratio, cocrystals are formed through non-ionic interactions like hydrogen bonding and π-π stacking. This review explores the evolution, design, preparation, and applications of pharmaceutical cocrystals, highlighting their ability to improve drug performance, enable controlled release, and offer intellectual property opportunities. Various preparation methods, including solvent-based (e.g., solvent evaporation, cooling crystallization) and solid-based (e.g., grinding, liquid-assisted grinding) techniques, are discussed alongside design approaches like hydrogen bonding propensity and the supramolecular synthonic approach. The review also addresses challenges such as molecular compatibility, thermodynamic barriers, and regulatory considerations. With regulatory acceptance from agencies like the FDA and ongoing advancements in crystal engineering, pharmaceutical cocrystals hold significant promise for optimizing drug delivery and formulation, necessitating further research to fully realize their potential in commercial applications.
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