Crisostomo Ana G, Moreno Raphael B, Navaratnam Suppiah, Wilkinson James A, Bisby Roger H
Biomedical Sciences Research Institute, University of Salford, Salford, UK.
Free Radic Res. 2007 Jun;41(6):730-7. doi: 10.1080/10715760701324075.
Three potential routes to generation of reactive oxygen species (ROS) from alpha-tocopherolquinone (alpha-TQ) have been identified. The quinone of the water-soluble vitamin E analogue Trolox C (Trol-Q) is reduced by hydrated electron and isopropanol alpha-hydroxyalkyl radical, and the resulting semiquinone reacts with molecular oxygen to form superoxide with a second order rate constant of 1.3 x 10(8) dm(3)/mol/s, illustrating the potential for redox cycling. Illumination (UV-A, 355 nm) of the quinone of 2,2,5,7,8-pentamethyl-6-hydroxychromanol (PMHC-Q) leads to a reactive short-lived (ca. 10(- 6) s) triplet state, able to oxidise tryptophan with a second order rate constant greater than 10(9) dm(3)/mol/s. The triplet states of these quinones sensitize singlet oxygen formation with quantum yields of about 0.8. Such potentially damaging reactions of alpha-TQ may in part account for the recent findings that high levels of dietary vitamin E supplementation lack any beneficial effect and may lead to slightly enhanced levels of overall mortality.
已确定从α-生育酚醌(α-TQ)生成活性氧(ROS)的三种潜在途径。水溶性维生素E类似物Trolox C(Trol-Q)的醌被水合电子和异丙醇α-羟烷基自由基还原,生成的半醌与分子氧反应形成超氧化物,二级反应速率常数为1.3×10⁸ dm³/mol/s,说明了氧化还原循环的可能性。2,2,5,7,8-五甲基-6-羟基色满醇(PMHC-Q)的醌在光照(UV-A,355 nm)下会产生一种反应性短寿命(约10⁻⁶ s)的三重态,能够以大于10⁹ dm³/mol/s的二级反应速率常数氧化色氨酸。这些醌的三重态使单线态氧形成的量子产率约为0.8。α-TQ的这种潜在破坏性反应可能部分解释了最近的研究结果,即高剂量膳食补充维生素E没有任何有益效果,反而可能导致总体死亡率略有上升。