A review Review on Co-Crystals New Approach to Modify the Physicochemical Characteristics of API

Varda Joshi, Poonam Raut, Nikita Bhosale
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Abstract

The expansion of a novel product is constrained by an active medicinal ingredient's poor solubility in aqueous solutions and limited oral bioavailability. A novel strategy to improve the physicochemical characteristics of the active medicinal ingredient is co-crystal formation. The pharmacological action of the API is unaffected by co-crystallization with pharmaceutically acceptable molecules, although it can enhance the physical characteristics like solubility, stability, and dissolution rate. Cocrystals are multi-component systems comprising active medicinal ingredients that also contain a stoichiometric amount of a coformer that is acceptable to the pharmaceutical industry. The pharmaceutical business has a significant chance to create new medicinal products since producing pharmaceutical co-crystals can enhance a drug's physicochemical qualities.The most major benefit of co-crystals is their ability to produce novel medications with improved solubility, which increases the effectiveness and safety of the treatment. The thermodynamic stability of the co-crystal preparation is the key influencing factor. Co-crystal screening provides information on the chemical composition and connection between the active medicinal ingredient and the coformer. This review discusses the many co-crystal synthesis techniques, including hot-melt extrusion, slurrying, antisolvent, grinding, and spray drying. Here is a quick explanation of the characteriszation methods frequently employed for co-crystals, as well as their uses in medicine. Here are some quick summaries of reported research on co-crystals that were evaluated in order to better grasp the notion of co-crystals.
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关于共晶体的综述:改变原料药理化特性的新方法
由于活性药物成分在水溶液中的溶解度较低,且口服生物利用度有限,新型产品的推广受到限制。改善活性药物成分理化特性的新策略是共晶体形成。与药学上可接受的分子共结晶不会影响原料药的药理作用,但可以提高溶解度、稳定性和溶解速率等物理特性。共晶体是由活性药物成分组成的多组分体系,其中还含有制药业可接受的一定量的共质物。由于生产药用共晶体可以提高药物的理化质量,因此制药业有很大的机会创造出新的医药产品。共晶体的最大好处是能够生产出溶解度更好的新型药物,从而提高治疗的有效性和安全性。共晶体制备的热力学稳定性是关键的影响因素。共晶体筛选可提供有关活性药物成分与共晶体之间的化学成分和联系的信息。本综述讨论了多种共晶体合成技术,包括热熔挤出、浆化、反溶剂、研磨和喷雾干燥。以下是共晶体常用特性分析方法的简要说明,以及它们在医药中的用途。为了更好地理解共晶体的概念,以下是一些共晶体研究报告的快速评估摘要。
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