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Influence of shear stress magnitude and direction on atherosclerotic plaque composition

机译:剪应力大小和方向对动脉粥样硬化斑块组成的影响

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摘要

The precise flow characteristics that promote different atherosclerotic plaque types remain unclear. We previously developed a blood flow-modifying cuff for ApoE−/− mice that induces the development of advanced plaques with vulnerable and stable features upstream and downstream of the cuff, respectively. Herein, we sought to test the hypothesis that changes in flow magnitude promote formation of the upstream (vulnerable) plaque, whereas altered flow direction is important for development of the downstream (stable) plaque. We instrumented ApoE−/− mice (n = 7) with a cuff around the left carotid artery and imaged them with micro-CT (39.6 µm resolution) eight to nine weeks after cuff placement. Computational fluid dynamics was then performed to compute six metrics that describe different aspects of atherogenic flow in terms of wall shear stress magnitude and/or direction. In a subset of four imaged animals, we performed histology to confirm the presence of advanced plaques and measure plaque length in each segment. Relative to the control artery, the region upstream of the cuff exhibited changes in shear stress magnitude only (p < 0.05), whereas the region downstream of the cuff exhibited changes in shear stress magnitude and direction (p < 0.05). These data suggest that shear stress magnitude contributes to the formation of advanced plaques with a vulnerable phenotype, whereas variations in both magnitude and direction promote the formation of plaques with stable features.
机译:促进不同的动脉粥样硬化斑块类型的精确流动特性仍不清楚。我们以前为ApoE -/-小鼠开发了一种可改善血流的袖带,该袖带分别诱导袖带上游和下游具有脆弱和稳定特征的晚期斑块的发展。在本文中,我们试图检验以下假设:流量大小的变化会促进上游(易损)噬菌斑的形成,而改变的流动方向对于下游(稳定)噬菌斑的形成很重要。我们对ApoE -/-小鼠(n = 7)进行了检测,在小鼠左颈动脉周围有一个袖带,并在放置袖带八到九周后用micro-CT(分辨率为39.6μm分辨率)对其进行了成像。然后执行计算流体动力学以计算六个度量,这些度量根据壁切应力的大小和/或方向描述了动脉粥样硬化流的不同方面。在四只成像动物的子集中,我们进行了组织学检查,以确认是否存在晚期斑块并测量每个节段中的斑块长度。相对于对照动脉,袖带上游区域仅表现出剪切应力大小的变化(p <0.05),而袖带下游区域则表现出剪切应力大小和方向的变化(p <0.05)。这些数据表明,剪​​切应力的大小有助于形成具有易损表型的高级斑块,而大小和方向的变化均会促进具有稳定特征的斑块的形成。

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