Zheng Xiaoping, Du Yapeng, Chai Yu, Zheng Yanzhen
College of Ocean Food and Biological Engineering, Jimei University, Xiamen 361021, China.
Antioxidants (Basel). 2023 Nov 20;12(11):2018. doi: 10.3390/antiox12112018.
Natural flavonoids are renowned for their exceptional antioxidant properties, but their limited water solubility hampers their bioavailability. One approach to enhancing their water solubility and antioxidant activity involves the use of cyclodextrin (CD) inclusion. This study investigated the impact of CD inclusion on the three primary radical scavenging mechanisms associated with flavonoid antioxidant activity, utilizing apigenin as a representative flavonoid and employing density functional theory (DFT) calculations. Initially, the optimized geometries of CD-apigenin inclusion complexes were analyzed, revealing the formation of hydrogen bonds between CD and apigenin. In less polar environments, the inclusion complex strengthened the bond dissociation enthalpies of hydroxyl groups, thereby reducing antioxidant activity. Conversely, in polar environments, the inclusion complex had the opposite effect by lowering proton affinity. These findings align with experimental results demonstrating that CD inclusion complexation enhances flavonoid antioxidant activity in aqueous ethanol solutions.
天然黄酮类化合物以其卓越的抗氧化性能而闻名,但它们有限的水溶性阻碍了其生物利用度。提高其水溶性和抗氧化活性的一种方法是使用环糊精(CD)包合。本研究以芹菜素作为代表性黄酮类化合物,利用密度泛函理论(DFT)计算,研究了CD包合对与黄酮类抗氧化活性相关的三种主要自由基清除机制的影响。首先,分析了CD-芹菜素包合物的优化几何结构,揭示了CD与芹菜素之间形成了氢键。在极性较小的环境中,包合物增强了羟基的键解离焓,从而降低了抗氧化活性。相反,在极性环境中,包合物通过降低质子亲和力产生相反的效果。这些发现与实验结果一致,表明CD包合络合增强了黄酮类化合物在乙醇水溶液中的抗氧化活性。