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Glycation as an atherogenic modification of LDL.

机译:糖基化作为LDL的动脉粥样硬化修饰。

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摘要

PURPOSE OF REVIEW: To highlight the potential importance of glycation as an atherogenic modification of LDL in both diabetic and nondiabetic people. RECENT FINDINGS: Small dense LDL which is known to be most closely associated with atherogenesis is more susceptible to glycation than more buoyant LDL. Glycation and oxidation of LDL appear to be intimately associated. SUMMARY: Glycation of LDL occurs chiefly due to the nonenzymatic reaction of glucose and its metabolites with the free amino groups of lysine in which LDL is rich. Higher concentrations of glycated LDL are present in diabetic than in nondiabetic individuals, but even in the latter, there is generally more circulating glycated LDL than oxidatively modified LDL. Probably, oxidation and glycation of LDL are at least partially interdependent, but both prevent LDL receptor-mediated uptake and promote macrophage scavenger receptor uptake. The recognition that LDL glycation is at least as important as oxidation in atherogenesis may lead to improvements in our understanding of its mechanism and how to prevent it.
机译:审查目的:强调糖基化作为低密度脂蛋白的致动脉粥样硬化修饰在糖尿病和非糖尿病患者中的潜在重要性。最近的发现:与致密LDL相比,与致动脉粥样硬化发生最紧密相关的小密度LDL更容易被糖基化。 LDL的糖基化和氧化似乎密切相关。摘要:LDL的糖化主要是由于葡萄糖及其代谢产物与LDL丰富的赖氨酸的游离氨基发生非酶促反应。与非糖尿病个体相比,糖尿病患者中糖化LDL的浓度更高,但是即使在后者中,循环糖基LDL的含量通常也高于氧化修饰的LDL。 LDL的氧化和糖基化可能至少部分相互依赖,但都可以阻止LDL受体介导的摄取并促进巨噬细胞清除剂受体的摄取。在动脉粥样硬化形成过程中,LDL糖基化作用至少与氧化作用同样重要,这一认识可能会导致我们对LDL糖化作用机理和预防方法的理解有所改善。

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