Tan Wei, Scott Devon, Belchenko Dmitry, Qi H Jerry, Xiao Long
Department of Mechanical Engineering, University of Colorado at Boulder, Boulder, CO, 80309, USA.
Department of Pediatrics, University of Colorado Health Science Center, Denver, CO, 80262, USA.
Biomed Microdevices. 2008 Dec;10(6):869-882. doi: 10.1007/s10544-008-9201-8.
Mechanical effects on cells have received more and more attention in the studies of tissue engineering, cellular pathogenesis, and biomedical device design. Anisotropic biaxial cyclic stress, reminiscent of the in vivo cellular mechanical environment, may promise significant implications for biotechnology and human health. We have designed, fabricated and characterized a microdevice that imparts a variety of anisotropic biaxial cyclic strain gradients upon cells. The device is composed of an elastic membrane with microgroove patterns designed to associate cell orientation axes with biaxial strain vectors on the membrane and a Flexcell stretcher with timely controlled vacuum pressure. The stretcher generates strain profile of anisotropic biaxial microgradients on the membrane. Cell axes determined by the microgrooves are associated with the membrane strain profile to impose proper biaxial strains on cells. Using vascular smooth muscle cells as a cell model, we demonstrated that the strain anisotropy index of a cell was likely one of the determinant mechanical factors in cell structural and functional adaptations. The nuclear shape and cytoskeleton structure of smooth muscle cells were influenced by mechanical loading, but were not significantly affected by the strain anisotropy. However, cell proliferation has profound responses to strain anisotropy.
在组织工程、细胞发病机制和生物医学设备设计研究中,细胞的力学效应已受到越来越多的关注。与体内细胞力学环境相似的各向异性双轴循环应力,可能对生物技术和人类健康具有重要意义。我们设计、制造并表征了一种微器件,该器件能对细胞施加各种各向异性双轴循环应变梯度。该器件由一个带有微槽图案的弹性膜和一个具有适时控制真空压力的Flexcell拉伸器组成,微槽图案的设计旨在使细胞取向轴与膜上的双轴应变向量相关联,拉伸器在膜上产生各向异性双轴微梯度的应变分布。由微槽确定的细胞轴与膜应变分布相关联,从而对细胞施加适当的双轴应变。以血管平滑肌细胞作为细胞模型,我们证明细胞的应变各向异性指数可能是细胞结构和功能适应性的决定性力学因素之一。平滑肌细胞的核形状和细胞骨架结构受机械加载影响,但不受应变各向异性的显著影响。然而,细胞增殖对应变各向异性有深刻反应。