Toworfe G K, Composto R J, Lee M H, Ducheyne P
Center for Bioactive Materials and Tissue Engineering, Department of Bioengineering, SEAS, University of Pennsylvania, 210S 33rd Street, Philadelphia, PA 19104, USA.
Int J Biomater. 2010;2010. doi: 10.1155/2010/947232. Epub 2010 Jun 27.
The main objective of this paper was to investigate the effect of transmission of force on bone cells that were attached to a deformable membrane. We functionalized a silastic membrane that measured 0.005 inches thickness and coated it with an extra cellular matrix (ECM) protein, fibronectin (FN). MC3T3-E1 osteoblast-like cells were cultured on the functionalized FN-coated membrane after which cell attachment and proliferation were evaluated. We observed an immediate attachment and proliferation of the bone cells on the functionalized membrane coated with FN, after 24 hours. Upon application of a mechanical force to cells cultured on the functionalized silicone membrane in the form of a dynamic equibiaxial strain, 2% magnitude; at 1-Hz frequency for 2 h, the osteoblast cells elicited slightly elevated phalloidin fluorescence, suggesting that there was reorganization of the cytoskeleton. We concluded from this preliminary data obtained that the engineered surface transduced applied mechanical forces directly to the adherent osteoblast cells via integrin binding tripeptide receptors, present in the FN molecules, resulting in the enhanced cellular attachment and proliferation.
本文的主要目的是研究力的传递对附着在可变形膜上的骨细胞的影响。我们对厚度为0.005英寸的硅橡胶膜进行功能化处理,并在其上涂覆细胞外基质(ECM)蛋白纤连蛋白(FN)。将MC3T3-E1成骨样细胞培养在功能化的FN包被膜上,然后评估细胞的附着和增殖情况。24小时后,我们观察到在涂有FN的功能化膜上骨细胞立即附着并增殖。当以动态双轴应变(幅度为2%;频率为1Hz,持续2小时)的形式对培养在功能化硅橡胶膜上的细胞施加机械力时,成骨细胞的鬼笔环肽荧光略有升高,表明细胞骨架发生了重组。我们从获得的这些初步数据得出结论,工程化表面通过FN分子中存在的整合素结合三肽受体将施加的机械力直接传递给贴壁的成骨细胞,从而导致细胞附着和增殖增强。