Ziouzenkova O, Gieseg S P, Ramos P, Esterbauer H
Institute of Biochemistry, University of Graz, Austria.
Lipids. 1996 Mar;31 Suppl:S71-6. doi: 10.1007/BF02637054.
Oxidation resistance (OR) of low density lipoproteins (LDL) is frequently determined by the conjugated diene (CD) assay, in which isolated LDL is exposed to CU2+ as prooxidant in the range of 1-10 microM. A brief review on major findings obtained with this assay will be given. A consistent observation is that vitamin E supplements or oleic acid-rich diets increase OR. Oxidation indices measured by the CD assay and effects of antioxidants very significantly depended on the Cu2+ concentration used for LDL oxidation. For medium and high Cu2+ concentrations, the relationship between lag time and propagation rate can be described by a simple hyperbolic saturation function, which has the same mathematical form as the Michaelis-Menten equation. At medium and high Cu2+ concentrations (0.5 to 5 microM), vitamin E increases lag time in a dose-dependent manner. The increase is higher for 0.5 microM Cu2+ as compared to 5 microM. At low Cu2+ concentrations (0.5 microM or less), the mechanism of LDL oxidation changes. Significant oxidation occurs in a preoxidation phase, which commences shortly after addition of Cu2+. Preoxidation is not inhibited by vitamin E. It is concluded that much additional work is needed to validate the importance of oxidation indices derived from CD and similar assays.
低密度脂蛋白(LDL)的抗氧化性(OR)通常通过共轭二烯(CD)测定法来确定,在该测定法中,分离出的LDL会暴露于1-10微摩尔范围内作为促氧化剂的Cu2+中。本文将简要回顾通过该测定法获得的主要研究结果。一个一致的观察结果是,补充维生素E或富含油酸的饮食会增加OR。通过CD测定法测得的氧化指数以及抗氧化剂的效果非常显著地取决于用于LDL氧化的Cu2+浓度。对于中等和高Cu2+浓度,滞后时间与传播速率之间的关系可以用一个简单的双曲线饱和函数来描述,该函数具有与米氏方程相同的数学形式。在中等和高Cu2+浓度(0.5至5微摩尔)下,维生素E以剂量依赖的方式增加滞后时间。与5微摩尔相比,0.5微摩尔Cu2+时的增加幅度更高。在低Cu2+浓度(0.5微摩尔或更低)下,LDL氧化的机制会发生变化。在预氧化阶段会发生显著氧化,该阶段在加入Cu2+后不久就开始。预氧化不受维生素E的抑制。得出的结论是,需要做更多的工作来验证源自CD及类似测定法的氧化指数的重要性。