Al Azzi Pamela, El Kurdi Riham, Patra Digambara
Department of Chemistry, American University of Beirut, Beirut 1107 2020, Lebanon.
ACS Omega. 2024 Dec 10;9(51):50561-50569. doi: 10.1021/acsomega.4c08387. eCollection 2024 Dec 24.
Curcumin (Cur) is a great candidate for antioxidant applications; however, due to its low solubility and poor bioavailability, it remains only hardly employed as a therapeutic agent. Moreover, curcumin is very unstable and tends to degrade quickly. Metal-organic frameworks (MOFs) have gained great attention in the field of drug loading due to their diversity and tunability, so they are seen as great candidates for hosting curcumin. Aluminum fumarate MOF (AlMOF) was able to hold curcumin successfully by the wet impregnation technique. The resulting system significantly increased the stability of curcumin, so it went from degrading to 58.9% after 3 days to degrading to 16% after 10 days when entrapped in AlMOF. In addition, the antioxidant activity of curcumin was also greatly boosted in the MOF-Cur system compared to curcumin in its free state. These results open the door to an in-depth study of MOF-Cur systems as great therapeutic agents due to the enhancement of the therapeutic properties of curcumin, all while protecting it, favoring its solubility, and maintaining its stability.
姜黄素(Cur)是抗氧化剂应用的理想选择;然而,由于其低溶解度和差的生物利用度,它仅难以用作治疗剂。此外,姜黄素非常不稳定,容易迅速降解。金属有机框架(MOF)因其多样性和可调节性在药物负载领域受到了极大关注,因此它们被视为承载姜黄素的理想选择。富马酸铝MOF(AlMOF)能够通过湿浸渍技术成功负载姜黄素。所得体系显著提高了姜黄素的稳定性,因此当姜黄素包封于AlMOF中时,其降解率从3天后的58.9%降至10天后的16%。此外,与游离态的姜黄素相比,MOF-Cur体系中姜黄素的抗氧化活性也大大提高。这些结果为深入研究MOF-Cur体系作为优秀治疗剂打开了大门,因为姜黄素的治疗特性得到了增强,同时保护了它,提高了其溶解度,并保持了其稳定性。