首页> 外文会议>THERMEC 2011;International conference on processing manufacturing of advanced materials >Control of Osteoblastic Cell Behavior by Surface Topography Introduced by Plastic Deformation of Ti Single Crystal with h.c.p. Structure
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Control of Osteoblastic Cell Behavior by Surface Topography Introduced by Plastic Deformation of Ti Single Crystal with h.c.p. Structure

机译:通过h.c.p.的Ti单晶塑性变形引入表面形貌来控制成骨细胞的行为。结构体

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Cells are known to sense the topographic features of the substrate and align along the direction of the surface pattern, and this is believed to be an important aspect in the formation and regeneration of anisotropic biological tissues. In this study, a unique and anisotropic stepped pattern was produced on single crystals of α-Ti with the h.c.p. lattice by plastic deformation in compression to demonstrate the effect of the pattern on cell behavior. Because the Schmid factor for the operative slip system of prismatic (10 10)[l 210] was set to be 0.5, the slip traces with an acute angle of 45° appeared on the surface. A smooth substrate without plastic deformation was used as a control. MC3T3-E1 osteoblastic cells were cultured on the substrate for 24 h, followed by observation of the morphology and alignment of the cells by Giemsa staining. On stepped substrates, cells aligned along the slip traces, and the filopodia of the aligned cells were found to extend parallel to the slip traces. The slip traces induced by plastic deformation of a single crystal was successfully proven to be a potent substrate to control the alignment of cells.
机译:已知细胞可感测基底的地形特征并沿表面图案的方向排列,并且据信这是各向异性生物组织的形成和再生中的重要方面。在这项研究中,在h.c.p.的α-Ti单晶上产生了独特的各向异性阶梯状图案。通过压缩塑性变形来证明晶格对细胞行为的影响。因为将棱柱形(10 10)[l 210]的有效滑动系统的Schmid因子设置为0.5,所以在表面上出现了锐角为45°的滑动轨迹。将没有塑性变形的光滑基材用作对照。将MC3T3-E1成骨细胞在底物上培养24小时,然后通过Giemsa染色观察细胞的形态和排列。在阶梯状的基板上,沿着滑动轨迹对齐的单元格和对齐的单元格的丝状伪足平行于滑动轨迹延伸。由单晶的塑性变形引起的滑移痕迹已被成功证明是控制细胞排列的有效基质。

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