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Regulation of SMC traction forces in human aortic thoracic aneurysms

机译:对人主动脉动脉瘤中SMC牵引力的调节

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Smooth muscle cells (SMCs) usually express a contractile phenotype in the healthy aorta. However, aortic SMCs have the ability to undergo profound changes in phenotype in response to changes in their extracellular environment, as occurs in ascending thoracic aortic aneurysms (ATAA). Accordingly, there is a pressing need to quantify the mechanobiological effects of these changes at single cell level. To address this need, we applied Traction Force Microscopy (TFM) on 759 cells coming from three primary healthy (AoPrim) human SMC lineages and three primary aneurysmal (AnevPrim) human SMC lineages, from age and gender matched donors. We measured the basal traction forces applied by each of these cells onto compliant hydrogels of different stiffness (4, 8, 12, 25 kPa). Although the range of force generation by SMCs suggested some heterogeneity, we observed that: 1. the traction forces were significantly larger on substrates of larger stiffness; 2. traction forces in AnevPrim were significantly higher than in AoPrim cells. We modelled computationally the dynamic force generation process in SMCs using the motor-clutch model and found that it accounts well for the stiffness-dependent traction forces. The existence of larger traction forces in the AnevPrim SMCs were related to the larger size of cells in these lineages. We conclude that phenotype changes occurring in ATAA, which were previously known to reduce the expression of elongated and contractile SMCs (rendering SMCs less responsive to vasoactive agents), tend also to induce stronger SMCs. Future work aims at understanding the causes of this alteration process in aortic aneurysms.
机译:平滑肌细胞(SMC)通常在健康主动脉中表达收缩表型。然而,主动脉SMC具有响应于其细胞外环境变化的表型变化的能力,如升胸主动脉动脉瘤(ATAA)所发生的那样。因此,需要一种压迫需要量化这些变化在单个细胞水平的机动学效应。为了解决这种需求,我们在来自三个主要健康(AOKIM)人体SMC谱系和三个原发性动脉瘤(Anevprim)人体SMC谱系的759个细胞上应用牵引力显微镜(TFM),从年龄和性别匹配的捐赠者。我们测量了这些细胞中的每一个施加到不同刚度(4,8,12,25kPa)的柔顺水凝胶上的基础牵引力。虽然SMC的力量产生了一些异质性,但我们观察到:1。在较大刚度的基板上显着更大; 2. Anevprim中的牵引力显着高于AOKIM细胞。我们使用电机离合器模型在计算上进行了建模的SMC中的动态力生成过程,发现它符合刚度依赖性牵引力。 ANEVPRIM SMC中的较大牵引力的存在与这些谱系中的较大尺寸的细胞有关。我们得出结论,在ATAA中发生的表型变化,以前已知减少细长和收缩SMC的表达(响应于血管活性剂的减少较少的SMC),也倾向于诱导更强的SMC。未来的工作旨在了解主动脉瘤中这种改变过程的原因。

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