You J, Yellowley C E, Donahue H J, Zhang Y, Chen Q, Jacobs C R
Department of Orthopaedics and Rehabilitation, Pennsylvania State University College of Medicine, Hershey 17033, USA.
J Biomech Eng. 2000 Aug;122(4):387-93. doi: 10.1115/1.1287161.
Although it is well accepted that bone tissue metabolism is regulated by external mechanical loads, it remains unclear to what load-induced physical signals bone cells respond. In this study, a novel computer-controlled stretch device and parallel plate flow chamber were employed to investigate cytosolic calcium (Ca2+i) mobilization in response to a range of dynamic substrate strain levels (0.1-10 percent, 1 Hz) and oscillating fluid flow (2 N/m2, 1 Hz). In addition, we quantified the effect of dynamic substrate strain and oscillating fluid flow on the expression of mRNA for the bone matrix protein osteopontin (OPN). Our data demonstrate that continuum strain levels observed for routine physical activities (< 0.5 percent) do not induce Ca2+i responses in osteoblastic cells in vitro. However, there was a significant increase in the number of responding cells at larger strain levels. Moreover, we found no change in osteopontin mRNA level in response to 0.5 percent strain at 1 Hz. In contrast, oscillating fluid flow predicted to occur in the lacunar-canalicular system due to routine physical activities (2 N/m2, 1 Hz) caused significant increases in both Ca2+i and OPN mRNA. These data suggest that, relative to fluid flow, substrate deformation may play less of a role in bone cell mechanotransduction associated with bone adaptation to routine loads.
尽管骨组织代谢受外部机械负荷调节已被广泛接受,但骨细胞对何种负荷诱导的物理信号作出反应仍不清楚。在本研究中,采用了一种新型的计算机控制拉伸装置和平行板流动腔,以研究细胞溶质钙(Ca2+i)在一系列动态底物应变水平(0.1 - 10%,1 Hz)和振荡流体流动(2 N/m2,1 Hz)作用下的动员情况。此外,我们量化了动态底物应变和振荡流体流动对骨基质蛋白骨桥蛋白(OPN)mRNA表达的影响。我们的数据表明,在体外,常规体育活动中观察到的连续应变水平(<0.5%)不会诱导成骨细胞产生Ca2+i反应。然而,在更大应变水平下,反应细胞的数量显著增加。此外,我们发现1 Hz频率下0.5%应变不会导致骨桥蛋白mRNA水平发生变化。相比之下,预计因常规体育活动在腔隙-小管系统中发生的振荡流体流动(2 N/m2,1 Hz)会导致Ca2+i和OPN mRNA均显著增加。这些数据表明,相对于流体流动,底物变形在与骨适应常规负荷相关的骨细胞机械转导中可能起的作用较小。