Liu Jingwen, Grohganz Holger, Löbmann Korbinian, Rades Thomas, Hempel Nele-Johanna
Department of Pharmacy, University of Copenhagen, 2100 Copenhagen, Denmark.
Pharmaceutics. 2021 Mar 15;13(3):389. doi: 10.3390/pharmaceutics13030389.
Co-amorphous drug delivery systems (CAMS) are characterized by the combination of two or more (initially crystalline) low molecular weight components that form a homogeneous single-phase amorphous system. Over the past decades, CAMS have been widely investigated as a promising approach to address the challenge of low water solubility of many active pharmaceutical ingredients. Most of the studies on CAMS were performed on a case-by-case basis, and only a few systematic studies are available. A quantitative analysis of the literature on CAMS under certain aspects highlights not only which aspects have been of great interest, but also which future developments are necessary to expand this research field. This review provides a comprehensive updated overview on the current published work on CAMS using a quantitative approach, focusing on three critical quality attributes of CAMS, i.e., co-formability, physical stability, and dissolution performance. Specifically, co-formability, molar ratio of drug and co-former, preparation methods, physical stability, and in vitro and in vivo performance were covered. For each aspect, a quantitative assessment on the current status was performed, allowing both recent advances and remaining research gaps to be identified. Furthermore, novel research aspects such as the design of ternary CAMS are discussed.
共无定形药物递送系统(CAMS)的特点是两种或更多种(最初为结晶态的)低分子量成分结合形成均一的单相无定形系统。在过去几十年中,CAMS作为一种有前景的方法,被广泛研究以应对许多活性药物成分水溶性低的挑战。大多数关于CAMS的研究都是逐案进行的,仅有少数系统性研究。从某些方面对CAMS相关文献进行定量分析,不仅能突出哪些方面备受关注,还能指出扩展该研究领域所需的未来发展方向。本综述采用定量方法,对当前已发表的关于CAMS的工作提供全面更新的概述,重点关注CAMS的三个关键质量属性,即共形成性、物理稳定性和溶解性能。具体涵盖了共形成性、药物与共形成剂的摩尔比、制备方法、物理稳定性以及体外和体内性能。对于每个方面,都对当前状况进行了定量评估,从而能够识别出近期进展和剩余的研究空白。此外,还讨论了诸如三元CAMS设计等新的研究方面。