Hillsley M V, Frangos J A
Department of Chemical Engineering, The Pennsylvania State University, University Park, Pennsylvania 16802, USA.
Calcif Tissue Int. 1997 Jan;60(1):48-53. doi: 10.1007/s002239900185.
It is our hypothesis that interstitial fluid flow plays a role in the bone remodeling response to mechanical loading. The fluid flow-induced expression of three proteins (collagen, osteopontin, and alkaline phosphatase) involved in bone remodeling was investigated. Rat calvarial osteoblasts subjected to pulsatile fluid flow at an average shear stress of 5 dyne/cm2 showed decreased alkaline phosphatase (AP) mRNA expression after only 1 hour of flow. After 3 hours of flow, AP mRNA levels had decreased to 30% of stationary control levels and remained at this level for an additional 5 hours of flow. Steady flow (4 dyne/cm2 fluid shear stress), in contrast, resulted in a delayed and less dramatic decrease in AP mRNA expression to 63% of control levels after 8 hours of flow. The reduced AP mRNA expression under pulsatile flow conditions was followed by reduced AP enzyme activity after 24 hours. No changes in collagen or osteopontin mRNA expression were detected over 8 hours of pulsatile flow. This is the first time fluid flow has been shown to affect gene expression in osteoblasts.
我们的假设是,组织液流动在骨重塑对机械负荷的反应中起作用。研究了由流体流动诱导的参与骨重塑的三种蛋白质(胶原蛋白、骨桥蛋白和碱性磷酸酶)的表达。平均剪切应力为5达因/平方厘米的脉动流体作用下的大鼠颅骨成骨细胞,在流动仅1小时后碱性磷酸酶(AP)mRNA表达就降低了。流动3小时后,AP mRNA水平降至静态对照水平的30%,并在额外5小时的流动中保持在该水平。相比之下,稳定流动(流体剪切应力为4达因/平方厘米)在流动8小时后导致AP mRNA表达延迟且下降幅度较小,降至对照水平的63%。在脉动流动条件下,AP mRNA表达降低后,24小时后AP酶活性也降低。在8小时的脉动流动过程中,未检测到胶原蛋白或骨桥蛋白mRNA表达的变化。这是首次证明流体流动会影响成骨细胞中的基因表达。