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用于骨组织工程的静电纺丝技术。

Electrospinning for bone tissue engineering.

作者信息

Ramachandran Koushik, Gouma Pelagia-Irene

机构信息

Center for Nanomaterials and Sensor Development, Department of Materials Science and Engineering, State University of New York at Stony Brook, Stony Brook, New York 11794-2275, USA.

出版信息

Recent Pat Nanotechnol. 2008;2(1):1-7. doi: 10.2174/187221008783478608.

Abstract

Bone tissue engineering is a field of significant research interest owing to the large number of bone defects and the limitations in the present techniques to effectively reconstitute the defects. Cell-based bone graft technique has shown promise in overcoming the limitations of the other bone graft techniques currently used. However the success of this technique is dependent on the choice of appropriate material and processing route. Biodegradability, Osteoinductivity, High porosity with interconnected pores and mechanical stability are some of the important requirements for a tissue engineering scaffold. Several techniques have been demonstrated to fabricate bioscaffolds. However, most of these methods lack the capability to produce three dimensional scaffolds with complex pore structures in a single step. Electrospinning, invented to prepare polymeric threads, has recently emerged as a leading technique for fabricating bioscaffolds for bone tissue engineering. The process has the versatility to produce scaffolds with required morphology and porosity to suit the needs of tissue engineering. This paper reviews some of the recent patents issued in the field of electrospinning and bone tissue engineering.

摘要

由于大量的骨缺损以及当前有效修复缺损技术的局限性,骨组织工程成为一个具有重大研究意义的领域。基于细胞的骨移植技术在克服目前使用的其他骨移植技术的局限性方面已显示出前景。然而,该技术的成功取决于合适材料和加工路线的选择。生物可降解性、骨诱导性、具有相互连通孔隙的高孔隙率以及机械稳定性是组织工程支架的一些重要要求。已经证明了几种制造生物支架的技术。然而,这些方法大多缺乏一步制备具有复杂孔结构的三维支架的能力。静电纺丝最初是为制备聚合物纤维而发明的,最近已成为用于骨组织工程的生物支架制造的领先技术。该工艺具有制备具有所需形态和孔隙率以满足组织工程需求的支架的通用性。本文综述了静电纺丝和骨组织工程领域最近发布的一些专利。

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