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基于支架的组织工程:计算机辅助设计和实体自由成型制造系统的基本原理。

Scaffold-based tissue engineering: rationale for computer-aided design and solid free-form fabrication systems.

作者信息

Hutmacher Dietmar W, Sittinger Michael, Risbud Makarand V

机构信息

Division of Bioengineering and Department of Orthopaedic Surgery, National University of Singapore, 119260, Singapore.

出版信息

Trends Biotechnol. 2004 Jul;22(7):354-62. doi: 10.1016/j.tibtech.2004.05.005.

Abstract

One of the milestones in tissue engineering has been the development of 3D scaffolds that guide cells to form functional tissue. Recently, mouldless manufacturing techniques, known as solid free-form fabrication (SFF), or rapid prototyping, have been successfully used to fabricate complex scaffolds. Similarly, to achieve simultaneous addition of cells during the scaffold fabrication, novel robotic assembly and automated 3D cell encapsulation techniques are being developed. As a result of these technologies, tissue-engineered constructs can be prepared that contain a controlled spatial distribution of cells and growth factors, as well as engineered gradients of scaffold materials with a predicted microstructure. Here, we review the application, advancement and future directions of SFF techniques in the design and creation of scaffolds for use in clinically driven tissue engineering.

摘要

组织工程学的一个里程碑是开发出能引导细胞形成功能组织的三维支架。近来,被称为实体自由形式制造(SFF)或快速成型的无模制造技术已成功用于制造复杂的支架。同样,为了在支架制造过程中实现细胞的同步添加,新型机器人组装和自动化三维细胞封装技术也在不断发展。由于这些技术,可以制备出含有细胞和生长因子可控空间分布以及具有预测微观结构的支架材料工程梯度的组织工程构建体。在此,我们综述了SFF技术在临床驱动的组织工程中用于支架设计和制造的应用、进展及未来方向。

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