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Enhanced cell growth by nanoengineering zirconia to stimulate electrostatic fibronectin activation

机译:通过纳米工程氧化锆刺激静电纤连蛋白激活,促进细胞生长

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摘要

We address the enhanced bone growth on designed nanocrystalline zirconia implants as reported by in vivo experiments. In vitro experiments demonstrate that the activation of adhesive proteins on nanoengineered zirconia stimulates cell adhesion and growth as shown by confocal microscopy. Fibrillar fibronectin (FN) forms a matrix assembly on the nanostructured surface in the cell adhesion process. We discuss the importance of FN dimer activation due to its immobilization on the designed nanocrystalline ZrO_2 implant fabricated by ion beam assisted deposition. The MonteCarlo analysis indicates that FN activation on the surface can be promoted by selective electrostatic interactions between negatively charged ZrO_2 surface patches and oppositely charged FN domains.
机译:正如体内实验所报道的那样,我们致力于设计纳米晶氧化锆植入物上增强的骨生长。体外实验表明,共聚焦显微镜显示,纳米工程氧化锆上黏附蛋白的激活可刺激细胞黏附和生长。纤维状纤连蛋白(FN)在细胞粘附过程中在纳米结构表面上形成基质组件。我们讨论由于FN二聚体活化的重要性,因为它固定在通过离子束辅助沉积制备的设计纳米晶ZrO_2植入物上。蒙特卡洛分析表明,通过带负电荷的ZrO_2表面补丁和带相反电荷的FN域之间的选择性静电相互作用,可以促进表面上的FN活化。

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