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纳米级表面处理在再生医学中的应用。

Nanoscale surfacing for regenerative medicine.

机构信息

Department of Biomedical Engineering, Duke University, Durham, NC, USA.

出版信息

Wiley Interdiscip Rev Nanomed Nanobiotechnol. 2010 Sep-Oct;2(5):478-95. doi: 10.1002/wnan.74.

Abstract

Cells in most tissues reside in microenvironment surrounded with specific three-dimensional features. The extracellular matrix or substratum with which cells interact often includes topography at the nanoscale. For example, the basement membrane of many tissues displays features of pores, fibers and ridges in the nanometer range. The nanoscale topography has significant effects on cellular behavior. Knowledge of the cell-substratum interactions is crucial to the understanding of many fundamental biological questions and to regenerative medicine. Rapid advances in nanotechnology enable cellular study on engineered nanoscale surfaces. Recent findings underscore the phenomenon that mammalian cells do respond to nanosized features on a synthetic surface. This review covers the commonly used techniques of engineering nanoscale surface and the techniques which have not been adapted but are of great potential in regenerative medicine, surveys the applications of nanoscale surface in regenerative medicine including vascular, bone, neural and stem cell tissue engineering, and discusses the possible mechanisms of cellular responses to nanoscale surface. A better understanding of the interactions between cells and nanoscale surfacing will help advance the field of regenerative medicine.

摘要

大多数组织中的细胞都存在于被特定三维特征包围的微环境中。细胞相互作用的细胞外基质或基质通常包括纳米级的形貌。例如,许多组织的基膜在纳米范围内显示出孔、纤维和脊的特征。纳米级形貌对细胞行为有显著影响。了解细胞-基质相互作用对于理解许多基本生物学问题和再生医学至关重要。纳米技术的快速发展使细胞能够在工程纳米级表面上进行研究。最近的发现强调了哺乳动物细胞确实对合成表面上的纳米级特征做出反应的现象。这篇综述涵盖了工程纳米级表面常用的技术以及尚未适应但在再生医学中有很大潜力的技术,调查了纳米级表面在再生医学中的应用,包括血管、骨骼、神经和干细胞组织工程,并讨论了细胞对纳米级表面反应的可能机制。更好地理解细胞与纳米级表面的相互作用将有助于推动再生医学领域的发展。

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