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用于植入物应用的基于钛的金属生物材料的功能化。

Functionalization of titanium based metallic biomaterials for implant applications.

机构信息

Department of Biologic and Material Sciences, School of Dentistry, University of Michigan, Ann Arbor, MI 48109, USA.

出版信息

J Mater Sci Mater Med. 2011 May;22(5):1147-59. doi: 10.1007/s10856-011-4305-8. Epub 2011 Apr 8.

Abstract

Surface immobilization with active functional molecules (AFMs) on a nano-scale is a main field in the current biomaterial research. The functionalization of a vast number of substances and molecules, ranging from inorganic calcium phosphates, peptides and proteins, has been investigated throughout recent decades. However, in vitro and in vivo results are heterogeneous. This may be attributed partially to the limits of the applied immobilization methods. Therefore, this paper highlights the advantages and limitations of the currently applied methods for the biological nano-functionalization of titanium-based biomaterial surfaces. The second part describes a newer immobilization system, using the nanomechanical fixation of at least partially single-stranded nucleic acids (NAs) into an anodic titanium oxide layer as an immobilization principle and their hybridization ability for the functionalization of the surface with active functional molecules conjugated to the respective complementary NA strands.

摘要

表面固定化与主动功能分子 (AFMs) 在纳米尺度上是目前生物材料研究的一个主要领域。功能化的大量的物质和分子,从无机钙磷、肽和蛋白质,已被调查在最近几十年。然而,体外和体内的结果是不同的。这可能部分归因于所应用的固定化方法的局限性。因此,本文重点介绍了目前应用的钛基生物材料表面生物纳米功能化的方法的优点和局限性。第二部分描述了一种更新的固定化系统,使用纳米机械固定至少部分单链核酸 (NAs) 到阳极氧化钛层作为固定化原理和它们的杂交能力与功能化表面的主动功能分子与各自的互补 NA 链共轭。

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