Key Laboratory for Space Biosciences & Biotechnology, School of Life Sciences, Northwestern Polytechnical University, China.
Biol Res. 2012;45(2):163-9. doi: 10.4067/S0716-97602012000200008.
Interstitial fluid flow stress is one of the most important mechanical stimulations of bone cells under physiological conditions. Osteocytes and osteoblasts act as primary mechanosensors within bones, and in vitro are able to respond to fluid shear stress, both morphologically and functionally. However, there is little information about the response of integrin-associated molecules using both osteoblasts and osteocytes. In this study, we investigated the changes in response to 2 hours of oscillatory fluid flow stress in the MLO-Y4 osteocyte-like cell line and the MC3T3-E1 osteoblast-like cell line. MLO-Y4 cells exhibited a significant increase in the expression of integrin-associated molecules, including OPN, CD44, vinculin and integrin αvβ3. However, there was no or limited increase observed in MC3T3-E1 osteoblast-like cells. Cell area and fiber stress formation were also markedly promoted by fluid flow only in MLO-Y4 cells. But the numbers of processes per cell remain unaffected in both cell lines.
细胞间质液流动张力是生理条件下骨细胞最重要的机械刺激之一。成骨细胞和骨细胞作为骨骼内的主要机械感受器,在体外能够对流体切应力产生形态和功能上的响应。然而,关于整合素相关分子对成骨细胞和骨细胞的双重响应的信息却很少。在这项研究中,我们研究了 MLO-Y4 类骨细胞样细胞系和 MC3T3-E1 成骨细胞样细胞系对 2 小时振荡液流应力的响应变化。MLO-Y4 细胞中整合素相关分子(包括 OPN、CD44、粘着斑蛋白和整合素 αvβ3)的表达显著增加。然而,在 MC3T3-E1 成骨细胞样细胞中则没有或观察到有限的增加。只有在 MLO-Y4 细胞中,液流才明显促进了细胞面积和纤维应力的形成。但在两种细胞系中,细胞突起的数量都没有受到影响。