Heart Institute (InCor), University of São Paulo Medical School, São Paulo, Brazil;
Am J Physiol Heart Circ Physiol. 2014 Feb 15;306(4):H505-16. doi: 10.1152/ajpheart.00655.2013. Epub 2013 Dec 13.
Vascular smooth muscle cells (VSMCs) are thought to assume a quiescent and homogeneous mechanical behavior after arterial tree development phase. However, VSMCs are known to be molecularly heterogeneous in other aspects and their mechanics may play a role in pathological situations. Our aim was to evaluate VSMCs from different arterial beds in terms of mechanics and proteomics, as well as investigate factors that may influence this phenotype. VSMCs obtained from seven arteries were studied using optical magnetic twisting cytometry (both in static state and after stretching) and shotgun proteomics. VSMC mechanical data were correlated with anatomical parameters and ultrastructural images of their vessels of origin. Femoral, renal, abdominal aorta, carotid, mammary, and thoracic aorta exhibited descending order of stiffness (G, P < 0.001). VSMC mechanical data correlated with the vessel percentage of elastin and amount of surrounding extracellular matrix (ECM), which decreased with the distance from the heart. After 48 h of stretching simulating regional blood flow of elastic arteries, VSMCs exhibited a reduction in basal rigidity. VSMCs from the thoracic aorta expressed a significantly higher amount of proteins related to cytoskeleton structure and organization vs. VSMCs from the femoral artery. VSMCs are heterogeneous in terms of mechanical properties and expression/organization of cytoskeleton proteins along the arterial tree. The mechanical phenotype correlates with the composition of ECM and can be modulated by cyclic stretching imposed on VSMCs by blood flow circumferential stress.
血管平滑肌细胞(VSMCs)在动脉树发育阶段后被认为具有静止和同质的机械行为。然而,VSMCs 在其他方面具有分子异质性,它们的力学特性可能在病理情况下发挥作用。我们的目的是评估来自不同动脉床的 VSMCs 的力学和蛋白质组学特性,并研究可能影响这种表型的因素。使用光学磁扭细胞术(在静态和拉伸后)和 shotgun 蛋白质组学研究了来自 7 条动脉的 VSMCs。VSMC 力学数据与它们起源血管的解剖学参数和超微结构图像相关联。股动脉、肾动脉、腹主动脉、颈动脉、乳腺动脉和胸主动脉的硬度(G)呈下降趋势(P<0.001)。VSMC 力学数据与血管中弹性蛋白的百分比和周围细胞外基质(ECM)的量相关,这些参数随着远离心脏而减少。在模拟弹性动脉局部血流的 48 小时拉伸后,VSMCs 的基础刚性降低。与股动脉相比,来自胸主动脉的 VSMCs 表达了更多与细胞骨架结构和组织相关的蛋白质。VSMCs 在机械特性和细胞骨架蛋白的表达/组织方面沿动脉树具有异质性。机械表型与 ECM 的组成相关,并且可以通过血流周向应力对 VSMCs 施加的循环拉伸来调节。