Sharp Lindsay A, Lee Yong W, Goldstein Aaron S
Department of Chemical Engineering, 0211, Virginia Polytechnic Institute and State University, Blacksburg, VA 24061-0211, USA.
Ann Biomed Eng. 2009 Mar;37(3):445-53. doi: 10.1007/s10439-008-9632-7. Epub 2009 Jan 8.
Perfusion culture of osteoprogenitor cells is a promising means to form a bone-like extracellular matrix for tissue engineering applications, but the mechanism by which hydrodynamic shear stimulates expression of bone extracellular matrix (ECM) proteins is not understood. Osteoblasts are mechanosensitive and respond differently to steady and pulsatile flow. Therefore, to probe the effect of flow, bone marrow stromal cells (BMSCs)--cultured under osteogenic conditions--were exposed to steady or pulsatile flow at frequencies of 0.015, 0.044, or 0.074 Hz. Following 24 h of stimulus, cells were cultured statically for an additional 13 days and then analyzed for the expression of bone ECM proteins collagen 1alpha1 (Col1alpha1), osteopontin, osteocalcin (OC), and bone sialoprotein (BSP). All mRNA levels were elevated by flow, but OC and BSP were enhanced modestly with pulsatile flow. To determine if these effects were related to gene induction during flow, BMSCs were again exposed to steady or pulsatile flow for 24 h, but then analyzed immediately for expression of growth and differentiation factors bone morphogenetic proteins (BMP)-2, -4, and -7, transforming growth factor (TGF)-beta1, and vascular endothelial growth factor-A. All growth and differentiation factors were significantly elevated by flow, except BMP-4 which was suppressed. In addition, expression of BMP-2 and -7 were enhanced and TGF-beta1 suppressed by pulsatile flow relative to steady flow. These results demonstrate that pulsatile flow modulates expression of BMP-2, -7, and TGF-beta1 and suggest that enhanced expression of bone ECM proteins by pulsatile flow may be mediated through the induction of BMP-2 and -7.
骨祖细胞的灌注培养是一种很有前景的方法,可为组织工程应用形成类骨细胞外基质,但流体动力剪切刺激骨细胞外基质(ECM)蛋白表达的机制尚不清楚。成骨细胞具有机械敏感性,对稳定流和脉动流的反应不同。因此,为了探究流动的影响,将在成骨条件下培养的骨髓间充质干细胞(BMSC)暴露于频率为0.015、0.044或0.074Hz的稳定流或脉动流中。刺激24小时后,细胞再静态培养13天,然后分析骨ECM蛋白胶原蛋白1α1(Col1α1)、骨桥蛋白、骨钙素(OC)和骨唾液蛋白(BSP)的表达。所有mRNA水平均因流动而升高,但OC和BSP在脉动流作用下适度增强。为了确定这些效应是否与流动过程中的基因诱导有关,BMSC再次暴露于稳定流或脉动流中24小时,但随后立即分析生长和分化因子骨形态发生蛋白(BMP)-2、-4和-7、转化生长因子(TGF)-β1和血管内皮生长因子-A的表达。除BMP-4被抑制外,所有生长和分化因子均因流动而显著升高。此外,相对于稳定流,脉动流增强了BMP-2和-7的表达,抑制了TGF-β1的表达。这些结果表明,脉动流调节BMP-2、-7和TGF-β1的表达,并提示脉动流增强骨ECM蛋白的表达可能是通过诱导BMP-2和-7介导的。