Department of Chemistry, University of Delhi, Delhi 110007, India.
Special Centre for Nanoscience, Jawaharlal Nehru University, New Delhi 110067, India.
ACS Appl Bio Mater. 2021 Dec 20;4(12):8407-8423. doi: 10.1021/acsabm.1c00957. Epub 2021 Nov 11.
The β-diketo-modified isoxazole derivative of curcumin (IOC) is well renowned for its anticancer, antioxidant, antimalarial, antiproliferative, and many other biological activities. With the aim of obtaining fundamental knowledge on the photophysics of IOC, the present work was directed toward delineating those at different pH environments and studying the degradation profiles of IOC at five different pH values. Because one of the primary drawbacks of curcumin is its rapid degradation at physiological conditions, the studies showed that the problem could be resolved, as the IOC molecule was extremely stable even in a highly alkaline medium. Further, in order to encounter the problems associated with the low solubility of IOC in aqueous media, β-CD (β-cyclodextrin) was used and calculations of the thermodynamic parameters revealed that the process of development of the host-guest inclusion complex was highly spontaneous in nature. The synthesis of the IOC:β-CD inclusion complex has also been accomplished in the solid state, and the solid formed has been characterized using various physicochemical techniques. Finally, while variations in the pH as well as addition of foreign metal ions in +1 and +2 oxidation states showed minimal effect on the photophysics of the IOC:β-CD inclusion complex, antiproliferative studies performed with 3-(4,5-dimethylthiazol-2-yl)-2,5-diphenyltetrazolium bromide assays revealed their nontoxic nature on fibroblast L929 normal cell lines and extremely toxic activity on human lung cancer A549 cell lines.
姜黄素的β-二酮基异恶唑衍生物(IOC)以其抗癌、抗氧化、抗疟、抗增殖等多种生物活性而闻名。本工作旨在获得 IOC 光物理的基础知识,因此在不同 pH 环境下对其进行了描绘,并研究了 IOC 在五种不同 pH 值下的降解情况。由于姜黄素的主要缺点之一是在生理条件下迅速降解,因此研究表明,该问题可以得到解决,因为即使在强碱性介质中,IOC 分子也非常稳定。此外,为了解决 IOC 在水介质中溶解度低的问题,使用了β-CD(β-环糊精),热力学参数的计算表明,形成主客体包合络合物的过程在本质上是高度自发的。IOC:β-CD 包合物的合成也在固态下完成,并使用各种物理化学技术对所形成的固体进行了表征。最后,虽然 pH 值的变化以及+1 和+2 氧化态的外来金属离子的加入对 IOC:β-CD 包合物的光物理性质影响很小,但用 3-(4,5-二甲基噻唑-2-基)-2,5-二苯基四氮唑溴盐测定法进行的抗增殖研究表明,它们对成纤维细胞 L929 正常细胞系无毒性,而对人肺癌 A549 细胞系具有极强的毒性活性。