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Palmitic and linoleic acids impair endothelial progenitor cells by inhibition of Akt/eNOS pathway.

机译:棕榈酸和亚油酸通过抑制Akt / eNOS途径损害内皮祖细胞。

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BACKGROUND: Endothelial progenitor cells (EPCs) are involved in adult neovasculogenesis and maintenance of vascular integrity. Scarce data have been provided for the individual effect of elevated free fatty acids (FFAs) on EPCs. This study was designed to investigate the association between Akt/eNOS signal pathway changes and the proliferation/function of EPCs in the presence of palmitic and linoleic acids. METHODS: After 14-day culture, EPCs were stimulated with different concentrations of palmitic and linoleic acids, with or without SNP, L-NAME, or LY294002. The proliferation and ability of adhesion, migration and tube structure formation of EPCs were observed and the level of phosphorylated Akt protein expression and eNOS protein expression were assayed. RESULTS: Incubation with palmitic and linoleic acids at concentrations of 0.2 muM or higher inhibited EPCs proliferation, significantly reduced migratory rate, reduced adhesion to fibronectin and impaired ability of EPCs to form tube structure in a dose-dependent manner. A simultaneous dose-dependent NO generation and Akt phosphorylation decrease as well as eNOS expression reduction at protein levels were also observed. However, all of the detrimental effects were attenuated by pretreating EPCs with SNP, NO donor. AKT and eNOS inhibitor, LY294002 and L-NAME, respectively, augmented palmitic and linoleic acids inhibitory effects on EPCs. CONCLUSIONS: These findings suggest that palmitic and linoleic acids downregulated AKT/eNOS signal pathway, which contributed to overall poor function and decrease proliferation of EPCs. These changes induced by palmitic and linoleic acids in signaling offer a novel explanation for the overall poor function of EPCs in diabetes mellitus.
机译:背景:内皮祖细胞(EPC)参与成人新血管生成和维持血管完整性。对于EPC的游离脂肪酸(FFA)升高的个别影响,已经提供了很少的数据。这项研究旨在研究在棕榈酸和亚油酸存在下Akt / eNOS信号途径变化与EPC增殖/功能之间的关联。方法:培养14天后,用不同浓度的棕榈酸和亚油酸刺激EPC,无论有无SNP,L-NAME或LY294002。观察EPCs的增殖,粘附,迁移和管结构形成能力,并检测磷酸化的Akt蛋白表达和eNOS蛋白表达水平。结果:浓度为0.2μM或更高的棕榈酸和亚油酸孵育可抑制EPC的增殖,显着降低迁移速率,降低对纤连蛋白的粘附力,并削弱EPC形成剂量依赖性的管结构的能力。还观察到在蛋白质水平上同时剂量依赖性NO产生和Akt磷酸化降低以及eNOS表达降低。但是,通过用SNP,NO供体预处理EPC可以减轻所有不利影响。 AKT和eNOS抑制剂LY294002和L-NAME分别增强了棕榈酸和亚油酸对EPC的抑制作用。结论:这些发现表明棕榈酸和亚油酸下调了AKT / eNOS信号通路,这导致了整体功能下降并降低了EPC的增殖。棕榈酸和亚油酸在信号传导中诱导的这些变化为糖尿病中EPC总体功能不佳提供了新的解释。

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