Alul Rushdi H, Wood Michael, Longo Joseph, Marcotte Anthony L, Campione Allan L, Moore Michael K, Lynch Sean M
Chicago College of Osteopathic Medicine, Midwestern University, Downers Grove, IL 60515, USA.
Free Radic Biol Med. 2003 Apr 1;34(7):881-91. doi: 10.1016/s0891-5849(03)00028-5.
Homocysteine, an atherogenic amino acid, promotes iron-dependent oxidation of low-density lipoprotein (LDL). We investigated whether vitamin C, a physiological antioxidant, could protect LDL from homocysteine-mediated oxidation. LDL (0.2 mg of protein/ml) was incubated at 37 degrees C with homocysteine (1000 microM) and ferric iron (10-100 microM) in either the absence (control) or presence of vitamin C (5-250 microM). Under these conditions, vitamin C protected LDL from oxidation as evidenced by an increased lag time preceding lipid diene formation (> or = 5 vs. 2.5 h for control), decreased thiobarbituric acid-reactive substances accumulation (< or = 19 +/- 1 nmol/mg when vitamin C > or = 10 microM vs. 32 +/- 3 nmol/mg for control, p <.01), and decreased lipoprotein anodic electrophoretic mobility. Near-maximal protection was observed at vitamin C concentrations similar to those in human blood (50-100 microM); also, some protection was observed even at low concentrations (5-10 microM). This effect resulted neither from altered iron redox chemistry nor enhanced recycling of vitamin E in LDL. Instead, similar to previous reports for copper-dependent LDL oxidation, we found that vitamin C protected LDL from homocysteine-mediated oxidation through covalent lipoprotein modification involving dehydroascorbic acid. Protection of LDL from homocysteine-mediated oxidation by vitamin C may have implications for the prevention of cardiovascular disease.
同型半胱氨酸是一种致动脉粥样硬化氨基酸,可促进低密度脂蛋白(LDL)的铁依赖性氧化。我们研究了生理抗氧化剂维生素C是否能保护LDL免受同型半胱氨酸介导的氧化。将LDL(0.2mg蛋白质/ml)于37℃与同型半胱氨酸(1000μM)和三价铁(10 - 100μM)一起孵育,分别在无(对照)或有维生素C(5 - 250μM)存在的情况下。在这些条件下,维生素C保护LDL不被氧化,脂质二烯形成之前的延迟时间增加(对照为2.5小时,维生素C存在时≥5小时)、硫代巴比妥酸反应性物质积累减少(当维生素C≥10μM时≤19±1nmol/mg,对照为32±3nmol/mg,p<0.01)以及脂蛋白阳极电泳迁移率降低均可证明。在与人体血液中相似的维生素C浓度(50 - 100μM)下观察到接近最大程度的保护作用;而且,即使在低浓度(5 - 10μM)时也观察到了一些保护作用。这种作用既不是由于铁氧化还原化学的改变,也不是由于LDL中维生素E的再循环增强所致。相反,与先前关于铜依赖性LDL氧化的报道相似,我们发现维生素C通过涉及脱氢抗坏血酸的共价脂蛋白修饰来保护LDL免受同型半胱氨酸介导的氧化。维生素C对LDL免受同型半胱氨酸介导氧化的保护作用可能对心血管疾病的预防具有重要意义。