Riha Gordon M, Lin Peter H, Lumsden Alan B, Yao Qizhi, Chen Changyi
Molecular Surgeon Research Center, Division of Vascular Surgery and Endovascular Therapy, Michael E. DeBakey Department of Surgery, Baylor College of Medicine, Houston, TX 77030, USA.
Ann Biomed Eng. 2005 Jun;33(6):772-9. doi: 10.1007/s10439-005-3310-9.
The pulsatile nature of blood flow is a key stimulus for the modulation of vascular cell differentiation. Within the vascular media, physiologic stress is manifested as cyclic strain, while in the lumen, cells are subjected to shear stress. These two respective biomechanical forces influence the phenotype and degree of differentiation or proliferation of smooth muscle cells and endothelial cells within the human vasculature. Elucidation of the effect of these mechanical forces on cellular differentiation has led to a surge of research into this area because of the implications for both the treatment of atherosclerotic disease and the future of vascular tissue engineering. The use of mechanical force to directly control vascular cell differentiation may be utilized as an invaluable engineering tool in the future. However, an understanding of the role of hemodynamics in vascular cell differentiation and proliferation is critical before application can be realized. Thus, this review will provide a current perspective on the latest research and controversy behind the role of hemodynamic forces for vascular cell differentiation and phenotype modulation. Furthermore, this review will illustrate the application of hemodynamic force for vascular tissue engineering and explicate future directions for research.
血流的脉动特性是调节血管细胞分化的关键刺激因素。在血管中层,生理应激表现为周期性应变,而在管腔内,细胞受到剪切应力。这两种各自的生物力学力影响着人类脉管系统中平滑肌细胞和内皮细胞的表型、分化程度或增殖。由于对动脉粥样硬化疾病治疗和血管组织工程未来发展的影响,阐明这些机械力对细胞分化的作用已引发了该领域的大量研究。未来,利用机械力直接控制血管细胞分化可能会成为一种非常有价值的工程工具。然而,在实现应用之前,了解血流动力学在血管细胞分化和增殖中的作用至关重要。因此,本综述将对血流动力学力在血管细胞分化和表型调节中的作用背后的最新研究及争议提供当前的观点。此外,本综述将阐述血流动力学力在血管组织工程中的应用,并阐明未来的研究方向。