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用于软骨组织工程的选择性激光烧结聚己内酯支架与胶原水凝胶的杂交。

Selective laser sintered poly-ε-caprolactone scaffold hybridized with collagen hydrogel for cartilage tissue engineering.

机构信息

Department of Chemical and Materials Engineering, Chang Gung University, Tao-Yuan 33302, Taiwan, Republic of China. Craniofacial Research Center, Department of Plastic and Reconstructive Surgery, Chang Gung Memorial Hospital, Chang Gung University, College of Medicine, Tao-Yuan 33302, Taiwan, Republic of China.

出版信息

Biofabrication. 2014 Mar;6(1):015004. doi: 10.1088/1758-5082/6/1/015004. Epub 2014 Jan 15.

Abstract

Selective laser sintering (SLS), an additive manufacturing (AM) technology, can be used to produce tissue engineering scaffolds with pre-designed macro and micro features based on computer-aided design models. An in-house SLS machine was built and 3D poly-ε-caprolactone (PCL) scaffolds were manufactured using a layer-by-layer design of scaffold struts with varying orientations (0°/45°/0°/45°, 0°/90°/0°/90°, 0°/45°/90°/135°), producing scaffolds with pores of different shapes and distribution. To better enhance the scaffold properties, chondrocytes were seeded in collagen gel and loaded in scaffolds for cartilage tissue engineering. Gel uptake and dynamic mechanical analysis demonstrated the better suitability of the 0°/90°/0°/90° scaffolds for reconstructive cartilage tissue engineering purposes. Chondrocytes were then seeded onto the 0°/90°/0°/90° scaffolds in collagen I hydrogel (PCL/COL1) and compared to medium-suspended cells in terms of their cartilage-like tissue engineering parameters. PCL/COL1 allowed better cell proliferation when compared to PCL or two-dimensional tissue culture polystyrene. Scanning electron microscopy and confocal microscopy observations demonstrated a similar trend for extracellular matrix production and cell survival. Glycosaminoglycan and collagen II quantification also demonstrated the superior matrix secretion properties of PCL/COL1 hybrid scaffolds. Collagen-gel-suspended chondrocytes loaded in SLS-manufactured PCL scaffolds may provide a means of producing tissue-engineered cartilage with customized shapes and designs via AM technology.

摘要

选择性激光烧结(SLS)是一种增材制造(AM)技术,可根据计算机辅助设计模型,生产具有预先设计的宏观和微观特征的组织工程支架。本研究搭建了一台内部 SLS 机器,采用支架支柱不同取向的层层设计(0°/45°/0°/45°、0°/90°/0°/90°、0°/45°/90°/135°),制造出具有不同形状和分布的孔的 3D 聚己内酯(PCL)支架。为了更好地增强支架性能,将软骨细胞接种在胶原凝胶中并加载到支架中用于软骨组织工程。凝胶吸收和动态力学分析表明,0°/90°/0°/90°支架更适合用于重建性软骨组织工程。然后,将软骨细胞接种到 0°/90°/0°/90°支架的胶原 I 水凝胶(PCL/COL1)中,并与悬浮在培养基中的细胞进行比较,以评估其软骨样组织工程参数。与 PCL 或二维组织培养聚苯乙烯相比,PCL/COL1 允许更好的细胞增殖。扫描电子显微镜和共聚焦显微镜观察表明,细胞外基质产生和细胞存活也有类似的趋势。糖胺聚糖和胶原 II 的定量分析也证明了 PCL/COL1 混合支架具有优越的基质分泌性能。负载在 SLS 制造的 PCL 支架中的胶原凝胶悬浮软骨细胞可能为通过 AM 技术生产具有定制形状和设计的组织工程软骨提供了一种方法。

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