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高波峰特征存在于低平均切变刺激中会诱导静脉内皮细胞静止。

The Presence of a High Peak Feature Within Low-Average Shear Stimuli Induces Quiescence in Venous Endothelial Cells.

机构信息

School of Engineering, Bernal Institute, University of Limerick, Limerick, V94 T9PX, Ireland.

Health Research Institute, University of Limerick, Limerick, Ireland.

出版信息

Ann Biomed Eng. 2020 Feb;48(2):582-594. doi: 10.1007/s10439-019-02371-5. Epub 2019 Sep 25.

Abstract

Wall shear stress (WSS) is an important stimulus in vascular remodelling and vascular lesion development. The current methods to assess and predict the risk associated with specific unsteady WSS consider the WSS mean values or the presence of reverse phases described by the oscillatory shear index. Recent evidence has shown that the accuracy of these methods is limited, especially with respect to the venous environment. Unsteady WSS are characterised by several features that may individually affect endothelial cells. Consequently, we assessed the effects of averaged WSS (TAWSS), temporal WSS gradient (TWSSG), maximum WSS (WSS peak) and reverse phase (OSI) by applying different WSS profiles to venous EC in-vitro, using a real-time controlled cone-and-plate cell-shearing device for 24 h. We found that TWSSG and WSS peak affect cell elongation and alignment respectively. We also found that the WSS waveforms with a peak of 1.5 Pa or higher significantly correlate with the induction of a protective phenotype. Cell phenotype induced by these high peak waveforms does not correlate to what is predicted by the hemodynamic indices currently used. The definition of reliable hemodynamic indices can be used to inform the computational models aimed at estimating the hemodynamic effects on vascular remodelling.

摘要

壁面切应力 (WSS) 是血管重塑和血管病变发展的重要刺激因素。目前评估和预测特定非稳定 WSS 相关风险的方法考虑了 WSS 的平均值或由振荡剪切指数描述的反向相位的存在。最近的证据表明,这些方法的准确性有限,特别是在静脉环境方面。非稳定 WSS 的特征在于几个可能单独影响内皮细胞的特征。因此,我们使用实时控制的锥板细胞剪切设备在体外对静脉 EC 施加不同的 WSS 分布 24 小时,评估平均 WSS (TAWSS)、时间 WSS 梯度 (TWSSG)、最大 WSS (WSS 峰值) 和反向相位 (OSI) 的影响。我们发现 TWSSG 和 WSS 峰值分别影响细胞的伸长和排列。我们还发现,峰值为 1.5 Pa 或更高的 WSS 波形与诱导保护表型显著相关。这些高峰值波形诱导的细胞表型与目前使用的血流动力学指数预测的结果不相关。可靠血流动力学指数的定义可用于为旨在估计血流动力学对血管重塑影响的计算模型提供信息。

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