Ali Hussein M, Almagribi Wafaa, Al-Rashidi Mona N
Agricultural Biochemistry Department, Faculty of Agriculture, Ain Shams University, Shoubra El-Kheima, Cairo, Egypt.
Chemistry Department, Faculty of Science for Girls, Dammam University, Dammam, Saudi Arabia.
Food Chem. 2016 Mar 1;194:1275-82. doi: 10.1016/j.foodchem.2015.09.003. Epub 2015 Sep 3.
Eight anthocyanidins, seven anthocyanins and two synthesized 4'-hydroxy flavyliums were examined as hydrogen donors to DPPH, ABTS and hydroxyl radicals, and as electron donors in the FRAP assay. Most compounds gave better activities than trolox and catechol. A structure-activity relationship (SAR) study showed that, in the absence of the 3-OH group, radicals of the 4, 5 or 7-OH groups can only be stabilized by resonance through pyrylium oxygen, while 3-OH group improved hydrogen atom donation because of the stabilization by anthocyanidin semiquinone-like resonance. Electron donation was also enhanced by the 3-OH group. Both anthocyanidins and their respective anthocyanins showed similar trends and close activities. Different types of sugar unit bonded to the 3-OH group or counter ion had minor effect on activities. The catechol structure improved both hydrogen and electron donation. Compounds lacking the catechol structure had a decreasing order of H-atom and electron donation (Mv>Pn>Pg>Ap>4'-OH-flavylium) consistent with the decreasing number of their hydroxyl and/or methoxy groups.
研究了8种花青素、7种花色苷和2种合成的4'-羟基黄鎓盐作为DPPH、ABTS和羟基自由基的氢供体,以及在FRAP测定中作为电子供体的情况。大多数化合物的活性优于 Trolox 和儿茶酚。结构-活性关系(SAR)研究表明,在没有3-OH基团的情况下,4、5或7-OH基团的自由基只能通过吡喃鎓氧通过共振来稳定,而3-OH基团由于花青素半醌样共振的稳定作用而改善了氢原子的供体能力。3-OH基团也增强了电子供体能力。花青素及其各自的花色苷都表现出相似的趋势和相近的活性。连接在3-OH基团上的不同类型的糖单元或抗衡离子对活性影响较小。儿茶酚结构改善了氢供体和电子供体能力。缺乏儿茶酚结构的化合物的氢原子供体和电子供体能力的顺序为(矢车菊素>矮牵牛素>芍药素>天竺葵素>4'-OH-黄鎓盐),与其羟基和/或甲氧基数量的减少一致。