Li Xican, Jiang Qian, Chen Ban, Luo Xiaoling, Chen Dongfeng
School of Chinese Herbal Medicine Guangzhou University of Chinese Medicine Waihuan East Road No. 232, Guangzhou Higher Education Mega Center Guangzhou 510006 China.
Innovative Research & Development Laboratory of TCM Guangzhou University of Chinese Medicine Guangzhou 510006 China.
ChemistryOpen. 2018 Sep 21;7(9):730-736. doi: 10.1002/open.201800108. eCollection 2018 Sep.
The structure-activity relationships of 31 xanthones were analyzed by using the ferric reducing antioxidant power (FRAP) assay to determine their electron-transfer (ET) potential. It was proven that the ET potential of xanthones was dominated by four moieties (i.e. hydroquinone moiety, 5,6-catechol moiety, 6,7-catechol moiety, and 7,8-catechol moiety) and was only slightly affected by other structural features, including a single phenolic OH group, the resorcinol moiety, the transannular dihydroxy moiety, a methoxy group, a sugar residue, an isoprenyl group, a cyclized isoprenyl group, and an isopentanol group. The results could be used to predict the ET potentials of other antioxidant xanthones.
通过使用铁离子还原抗氧化能力(FRAP)测定法分析了31种呫吨酮的构效关系,以确定它们的电子转移(ET)潜力。结果表明,呫吨酮的ET潜力由四个部分(即对苯二酚部分、5,6-邻苯二酚部分、6,7-邻苯二酚部分和7,8-邻苯二酚部分)主导,并且仅受到其他结构特征的轻微影响,这些结构特征包括单个酚羟基、间苯二酚部分、跨环二羟基部分、甲氧基、糖残基、异戊烯基、环化异戊烯基和异戊醇基。这些结果可用于预测其他抗氧化呫吨酮的ET潜力。