Chan P C, Peller O G, Kesner L
Lipids. 1982 May;17(5):331-7. doi: 10.1007/BF02535190.
Cu++ was uniquely capable of catalyzing the peroxidation of rat erythrocyte membrane lipid in the presence of 10 mM H2O2, whereas several other transition metal ions were without significant effect. In contrast, peroxidation of soybean phospholipid liposomes could be catalyzed with decreasing efficiency by Co++, Cu++, Pb++, or Cr+++ also in the presence of H2O2. The effect of imidazole on Cu++- catalyzed lipid peroxidation was stimulatory in liposomes and inhibitory in membrane preparations, whereas EDTA, histidine, citrate and alanine inhibited peroxidation in both systems. EDTA could stop the peroxidation after initiation, but catalase could not, indicating that Cu++ alone was necessary for the propagation of the chain reaction. Competitive inhibition studies with various scavengers of hydroxyl radicals or singlet oxygen and the absence of significant reaction enhancement by D2O indicated that neither of these reactive oxygen species was a major mediator in the Cu++-H2O2 oxidative system. A copper-oxygen complex may be directly involved in the initiation of peroxidation. Normal erythrocyte membranes and phospholipid liposomes also differ in their sensitivities toward external oxidative stress. In the absence of H2O2, CU++ (0.2 mM) was capable of catalyzing lipid peroxidation in liposomes, aged erythrocyte membranes and membranes from vitamin-E-deficient rats; however, freshly prepared membranes from control rats and liposomes containing alpha-tocopherol required H2O2 greater than 2 mM for the catalytic effect of Cu++ to be observed.
在存在10 mM过氧化氢的情况下,Cu++ 具有独特的能力催化大鼠红细胞膜脂质的过氧化反应,而其他几种过渡金属离子则无显著影响。相比之下,在过氧化氢存在的情况下,Co++、Cu++、Pb++ 或Cr+++ 也能以逐渐降低的效率催化大豆磷脂脂质体的过氧化反应。咪唑对Cu++ 催化的脂质过氧化反应在脂质体中具有刺激作用,而在膜制剂中具有抑制作用,而乙二胺四乙酸(EDTA)、组氨酸、柠檬酸盐和丙氨酸在两种体系中均抑制过氧化反应。EDTA可以在引发后停止过氧化反应,但过氧化氢酶不能,这表明链反应的传播仅需要Cu++。用各种羟基自由基或单线态氧清除剂进行的竞争性抑制研究以及重水(D2O)未显著增强反应,表明这些活性氧物种均不是Cu++ - H2O2氧化体系中的主要介质。铜 - 氧络合物可能直接参与过氧化反应的引发。正常红细胞膜和磷脂脂质体对外部氧化应激的敏感性也不同。在没有过氧化氢的情况下,Cu++(0.2 mM)能够催化脂质体、老化红细胞膜和维生素E缺乏大鼠的膜中的脂质过氧化反应;然而,来自对照大鼠的新鲜制备的膜和含有α-生育酚的脂质体需要大于2 mM的过氧化氢才能观察到Cu++ 的催化作用。