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首页> 外文期刊>Biomaterials Science >Understanding the role of nano-topography on the surface of a bone-implant
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Understanding the role of nano-topography on the surface of a bone-implant

机译:了解纳米形貌在骨植入物表面上的作用

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摘要

Bone-implant material development is proceeding at a high pace, and has shifted from straightforward biomaterial testing to more advanced cell-targeted approaches for surface modification and design. It has been long known that cells can recognize and respond to topographical features by changing their morphology and behavior. The progress in surface analytical devices, as well as in techniques for production of topographical features on the nanometer scale allow for the characterization of natural tissues and the reproduction of biomimetic nanofeatures in material surfaces. In this review some of the most common surface-characterization and surface-manufacturing techniques will be addressed and results from in vitro and in vivo studies will be presented. Knowledge on biomaterial nanotopography can be exploited for active stimulation and control of cellular behavior like attachment, migration, spreading, gene expression, proliferation, differentiation and secretion of matrix components.
机译:骨植入材料的开发正在高速进行,并且已经从简单的生物材料测试转变为更先进的针对细胞的表面修饰和设计方法。众所周知,细胞可以通过改变其形态和行为来识别并响应地形特征。表面分析装置的发展以及纳米级地形特征产生技术的进步,使得天然组织的表征和仿生纳米特征在材料表面的再现成为可能。在这篇综述中,将介绍一些最常见的表面表征和表面制造技术,并介绍体外和体内研究的结果。可以利用生物材料纳米形貌方面的知识来主动刺激和控制细胞行为,例如附着,迁移,扩散,基因表达,增殖,分化和基质成分的分泌。

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