Parthasarathy S, Young S G, Witztum J L, Pittman R C, Steinberg D
J Clin Invest. 1986 Feb;77(2):641-4. doi: 10.1172/JCI112349.
Previous studies have established that low density lipoprotein (LDL) incubated with endothelial cells (EC) undergoes extensive oxidative modification in structure and that the modified LDL is specifically recognized by the acetyl LDL receptor of the macrophage. Thus, in principle, EC-modified LDL could contribute to foam cell formation during atherogenesis. Oxidatively modified LDL is also potentially toxic to EC. The present studies show that addition of probucol during the incubation of LDL with EC prevents the increase in the electrophoretic mobility, the increase in peroxides, and the increase in subsequent susceptibility to macrophage degradation. It has also been shown that oxidation of LDL catalyzed by cupric ion induces many of the same changes occurring during EC modification. Addition of probucol (5 microM) also prevented this copper-catalyzed modification of LDL. Most importantly, samples of LDL isolated from plasma of hypercholesterolemic patients under treatment with conventional dosages of probucol were shown to be highly resistant to oxidative modification either by incubation with endothelial cells or by cupric ion in the absence of cells. The findings suggest the hypothetical but intriguing possibility that probucol, in addition to its recognized effects on plasma LDL levels, may inhibit atherogenesis by limiting oxidative LDL modification and thus foam cell formation and/or EC injury. Other compounds with antioxidant properties might behave similarly.
先前的研究已经证实,与内皮细胞(EC)一起孵育的低密度脂蛋白(LDL)在结构上会发生广泛的氧化修饰,并且修饰后的LDL会被巨噬细胞的乙酰LDL受体特异性识别。因此,从理论上讲,EC修饰的LDL可能在动脉粥样硬化形成过程中促进泡沫细胞的形成。氧化修饰的LDL对EC也可能具有潜在毒性。目前的研究表明,在LDL与EC孵育期间添加普罗布考可防止电泳迁移率增加、过氧化物增加以及随后对巨噬细胞降解敏感性的增加。还表明,铜离子催化的LDL氧化会诱导许多与EC修饰期间发生的相同变化。添加普罗布考(5 microM)也可防止这种铜催化的LDL修饰。最重要的是,从接受常规剂量普罗布考治疗的高胆固醇血症患者血浆中分离出的LDL样本,无论是与内皮细胞孵育还是在无细胞情况下与铜离子孵育,都显示出对氧化修饰具有高度抗性。这些发现提示了一种假设但有趣的可能性,即普罗布考除了对血浆LDL水平具有公认的作用外,可能通过限制氧化LDL修饰从而抑制泡沫细胞形成和/或EC损伤来抑制动脉粥样硬化。其他具有抗氧化特性的化合物可能也有类似作用。