首页> 美国卫生研究院文献>The International Journal of Angiology : Official Publication of the International College of Angiology Inc >Shear Stress Induces Change in Extracellular Signal-Regulated Kinase 5 Levels with Sustained Activation under Disturbed and Continuous Laminar Flow
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Shear Stress Induces Change in Extracellular Signal-Regulated Kinase 5 Levels with Sustained Activation under Disturbed and Continuous Laminar Flow

机译:剪切应力诱导扰动和连续层流下持续激活的细胞外信号调节激酶5水平的变化。

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摘要

Extracellular signal-regulated kinase 5 (ERK5) has been reported to regulate endothelial integrity and protect from vascular dysfunction under laminar flow. Previously reported research indicates that under laminar flow ERK5 is activated with production of atheroprotective molecules. However, the characterization of ERK5 activation and levels under different flow patterns has not been investigated.Confluent HUVECs were serum-starved then seeded on glass slides. HUVECs incubated in 1% FBS were exposed to continuous laminar flow (CLF), to-and-fro flow (TFF), or pulsatile forward flow (PFF) in a parallel plate flow chamber. At the end of experimentation, cell lysates were immunoblotted with antibodies to phospho-ERK5 and total ERK5. ERK5 activation was assessed by the levels of phosphorylated ERK5. The densitometric mean ± SEM is calculated and analyzed by ANOVA. p < 0.05 is considered significant.Levels of ERK5 decreased with all flow conditions with the largest decrease in TFF flow condition. TFF and CLF exhibited sustained ERK5 phosphorylation in HUVECs stimulated for up to 4 hours. PFF had transient phosphorylation of ERK5 at 2 hours, which then became undetectable at 4 hours of exposure to flow. Also, TFF and CLF both showed decreased levels at 4 hours, suggesting a decrease in activation for these flow conditions.Exposure of HUVEC to different types of shear stress results in varying patterns of activation of ERK5. Activation of ERK5 with TFF suggests a role in the pathogenesis of atherosclerosis and vascular remodeling under disturbed flow conditions.
机译:据报道,细胞外信号调节激酶5(ERK5)调节内皮完整性,并防止层流下的血管功能障碍。先前报道的研究表明,在层流下,ERK5通过产生抗动脉粥样硬化分子而被激活。然而,尚未研究在不同流动模式下ERK5活化和水平的表征。将融合的HUVEC置于血清饥饿状态,然后接种在载玻片上。在1%FBS中孵育的HUVEC在平行板流动室中暴露于连续层流(CLF),来回流动(TFF)或搏动正向流动(PFF)。实验结束时,将细胞裂解液用针对磷酸化ERK5和总ERK5的抗体进行免疫印迹。通过磷酸化的ERK5的水平评估ERK5的活化。通过ANOVA计算和分析光密度平均值±SEM。 p <0.05被认为是显着的。在所有流量条件下,ERK5的水平均下降,而TFF流量条件的下降幅度最大。 TFF和CLF在刺激长达4小时的HUVEC中表现出持续的ERK5磷酸化。 PFF在2小时具有短暂的ERK5磷酸化,然后在暴露于流动4小时后就无法检测到。同样,TFF和CLF均在4小时时均显示出降低的水平,表明这些流动条件下的活化降低.HUVEC暴露于不同类型的剪切应力下会导致ERK5的活化模式不同。 TFF对ERK5的激活表明在流动状况不佳的情况下,它在动脉粥样硬化的发病机理和血管重塑中起作用。

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