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高流体切应力和空间切应力梯度会影响内皮细胞的增殖、存活和排列。

High fluid shear stress and spatial shear stress gradients affect endothelial proliferation, survival, and alignment.

机构信息

Toshiba Stroke Research Center, State University of New York at Buffalo, Buffalo, NY 14214, USA.

出版信息

Ann Biomed Eng. 2011 Jun;39(6):1620-31. doi: 10.1007/s10439-011-0267-8. Epub 2011 Feb 11.

Abstract

Cerebral aneurysms develop near bifurcation apices, where complex hemodynamics occur: Flow impinges on the apex, accelerates into branches, then slows again distally, creating high wall shear stress (WSS) and positive and negative spatial gradients in WSS (WSSG). Endothelial responses to these kinds of high WSS hemodynamic environments are not well characterized. We examined endothelial cells (ECs) under elevated WSS and positive and negative WSSG using a flow chamber with constant-height channels to create regions of uniform WSS and converging and diverging channels to create positive and negative WSSG, respectively. Cultured bovine aortic ECs were subjected to 3.5 and 28.4 Pa with and without WSSG for 24 and 36 h. High WSS inhibited EC alignment to flow, increased EC proliferation assessed by bromodeoxyuridine incorporation, and increased apoptosis determined by terminal deoxynucleotidyl transferase dUTP-mediated nick-end labeling. These responses to high WSS were either accentuated or ameliorated by WSSG: Positive WSSG (+980 Pa/m) inhibited alignment and stimulated proliferation and apoptosis, whereas negative WSSG (-1120 Pa/m) promoted alignment and suppressed proliferation and apoptosis. These results demonstrate that ECs discriminate between positive and negative WSSG under high WSS conditions. EC responses to positive WSSG may contribute to pathogenic remodeling that occurs at bifurcations preceding aneurysm formation.

摘要

脑动脉瘤在分岔顶点附近形成,此处存在复杂的血液动力学:血流冲击顶点,加速进入分支,然后再次减速,从而产生高壁面剪切应力 (WSS) 和 WSS 的正、负空间梯度 (WSSG)。内皮细胞对这些高 WSS 血液动力学环境的反应尚未得到很好的描述。我们使用具有恒定高度通道的流动室来创建均匀 WSS 的区域,使用汇聚和发散通道来创建正和负 WSSG,分别研究了内皮细胞 (ECs) 在高 WSS 和正、负 WSSG 下的反应。培养的牛主动脉 ECs 在有和没有 WSSG 的情况下分别在 3.5 和 28.4 Pa 下孵育 24 和 36 小时。高 WSS 抑制 EC 沿血流排列,通过溴脱氧尿苷掺入评估 EC 增殖增加,通过末端脱氧核苷酸转移酶 dUTP 介导的缺口末端标记法确定细胞凋亡增加。WSSG 加剧或减轻了对高 WSS 的这些反应:正 WSSG(+980 Pa/m)抑制排列并刺激增殖和凋亡,而负 WSSG(-1120 Pa/m)促进排列并抑制增殖和凋亡。这些结果表明,ECs 在高 WSS 条件下可以区分正和负 WSSG。EC 对正 WSSG 的反应可能有助于在动脉瘤形成之前分叉处发生的致病重塑。

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