Itoh Shingo, Nagaoka Shin-Ichi, Mukai Kazuo
Department of Chemistry, Faculty of Science, Ehime University, Matsuyama 790-8577, Japan.
J Phys Chem A. 2008 Jan 24;112(3):448-56. doi: 10.1021/jp075894p. Epub 2008 Jan 3.
The rate constants (kr) of the regeneration reaction of 7-t-butyl-5-isopropyltocopheroxyl with ubiquinol-10 (UQ10H2), ubiquinol-0 (UQ0H2), alpha-, beta-, and gamma-tocopherolhydroquinones (alpha-, beta-, gamma-TQH2), 2,3,5-trimethyl-1,4-hydroquinone (TMQH2), vitamin K3 hydroquinone (VK3H2), and vitamin C (Vit C) have been measured in 2-propanol/water and micellar solutions by a stopped-flow spectrophotometer. The kr values of these hydroquinones (HQs) in micellar solution remained constant at pHs of 6-9 and increased rapidly by increasing the pH value. The kr values decreased in the order of VK3H2 > gamma-TQH2 > or = alpha-TQH2 > beta-TQH2 > or = UQ10H2 > or = TMQH2 > UQ0H2 >> Vit C at pHs of 6-9. These HQs are dibasic acids and can exist in three different molecular forms, depending on pH. By comparing the kr values with the mole fraction of each molecular form of the HQs, the reaction rate kr1 for the undissociated form, kr2 for the monoanion, and kr3 for the dianion and the pKa1 and pKa2 values were determined. It has been found that the kr values of UQ10H2, alpha-TQH2, beta-TQH2, and gamma-TQH2 (plastoquinol model) are 460, 1430, 494, and 1530 times larger than that of Vit C at pH 7.0, respectively, although the values are similar to that of Vit C in 2-propanol/water. The biological HQs and Vit C coexist in many tissues of animals and plants, and thus, the relative antioxidant activities of HQs and Vit C have been tentatively discussed based on the products of kr values by concentrations in several tissues. The results suggest that these HQs show high activity for the tocopherol regeneration in biological systems.
通过停流分光光度计测定了7-叔丁基-5-异丙基生育酚氧基与泛醇-10(UQ10H2)、泛醇-0(UQ0H2)、α-、β-和γ-生育酚氢醌(α-、β-、γ-TQH2)、2,3,5-三甲基-1,4-氢醌(TMQH2)、维生素K3氢醌(VK3H2)和维生素C(Vit C)的再生反应速率常数(kr),测定条件为2-丙醇/水和胶束溶液。这些氢醌(HQs)在胶束溶液中的kr值在pH 6-9时保持恒定,并且随着pH值的增加而迅速增大。在pH 6-9时,kr值按VK3H2 > γ-TQH2 ≥ α-TQH2 > β-TQH2 ≥ UQ10H2 ≥ TMQH2 > UQ0H2 >> Vit C的顺序降低。这些HQs是二元酸,根据pH值可存在三种不同的分子形式。通过将kr值与HQs每种分子形式的摩尔分数进行比较,确定了未解离形式的反应速率kr1、单阴离子的kr2、双阴离子的kr3以及pKa1和pKa2值。已发现,在pH 7.0时,UQ10H2、α-TQH2、β-TQH2和γ-TQH2(质体醌模型)的kr值分别比Vit C的kr值大460、1430、494和1530倍,尽管这些值与2-丙醇/水中Vit C的值相似。生物HQs和Vit C共存于动植物的许多组织中,因此,基于kr值与几种组织中浓度的乘积,初步讨论了HQs和Vit C的相对抗氧化活性。结果表明,这些HQs在生物系统中对生育酚再生表现出高活性。