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组织支架的最新进展与当前发展

Recent advances and current developments in tissue scaffolding.

作者信息

Yarlagadda Prasad K D V, Chandrasekharan Margam, Shyan John Yong Ming

机构信息

School of Mechanical, Manufacturing and Medical Engineering, Queensland University of Technology, Brisbane, Australia.

出版信息

Biomed Mater Eng. 2005;15(3):159-77.

Abstract

A bio-scaffold can be broadly termed as a structure used to substitute an organ either permanently or temporarily to restore functionality. The material that can be used varies with the application intended. Tissue engineering is one such application demanding certain requirements to be met before it is applied. One of the applications in tissue engineering is the tissue scaffold, which provides either a permanent or temporary support to the damaged tissues/organ until the functionalities are restored. A biomaterial can exhibit specific interactions with cells that will lead to stereotyped responses. The use of a particular material and morphology depends on various factors such as osteoinduction, osteoconduction, angiogenesis, growth rates of cells and degradation rate of the material in case of temporary scaffolds, etc. The current work reviews the state of art in tissue scaffolds and focuses on permanent scaffold materials and applications with a brief overview of temporary scaffold materials and their disadvantages.

摘要

生物支架广义上可定义为一种用于永久性或临时性替代器官以恢复其功能的结构。可使用的材料因预期应用而异。组织工程就是这样一种应用,在应用之前需要满足某些要求。组织工程中的一种应用是组织支架,它为受损组织/器官提供永久性或临时性支撑,直至功能恢复。生物材料可与细胞表现出特定相互作用,从而引发定型反应。特定材料和形态的使用取决于多种因素,如骨诱导、骨传导、血管生成、细胞生长速率以及临时支架情况下材料的降解速率等。当前工作综述了组织支架的技术现状,重点关注永久性支架材料及应用,并简要概述了临时支架材料及其缺点。

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