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在具有不同表面结构的羟基磷灰石陶瓷上体外生成软骨-载体构建体。

In vitro generation of cartilage-carrier-constructs on hydroxylapatite ceramics with different surface structures.

作者信息

Wiegandt Katharina, Goepfert Christiane, Richter Teresa, Fritsch Daniel, Janßen Rolf, Pörtner Ralf

机构信息

Hamburg University of Technology, Institute of Bioprocess and Biosystems Engineering, Germany.

出版信息

Open Biomed Eng J. 2008 Dec 30;2:64-70. doi: 10.2174/1874120700802010064.

Abstract

Tissue engineering approaches for healing cartilage defects are partly limited by the inability to fix cartilage to bone during implantation. To overcome this problem, cartilage can be - already in vitro - generated on a ceramic carrier which serves as bone substitute. In this study, the influence of a hydroxylapatite carrier and its surface structure on the quality of tissue engineered cartilage was investigated. Application of the carrier reduced significantly biomechanical and biochemical properties of the generated tissue. In addition, slight changes in the quality of the formed matrix, in the adhesive strength between cartilage and biomaterial and in attachment and proliferation of a chondrocyte monolayer could be observed for commercial grade carriers, with respect to modified topographies obtained by smooth grinding/polishing. These first results demonstrated an influence of the carrier and its surface structure, but further research is needed for explaining the described effects and for optimization of cartilage-carrier-constructs.

摘要

用于修复软骨缺损的组织工程方法在一定程度上受到植入过程中无法将软骨固定到骨上的限制。为了克服这个问题,可以在作为骨替代物的陶瓷载体上——已经在体外——生成软骨。在本研究中,研究了羟基磷灰石载体及其表面结构对组织工程软骨质量的影响。载体的应用显著降低了所生成组织的生物力学和生化特性。此外,对于商业级载体,相对于通过光滑研磨/抛光获得的改性表面形貌,可以观察到所形成基质的质量、软骨与生物材料之间的粘附强度以及软骨细胞单层的附着和增殖存在轻微变化。这些初步结果证明了载体及其表面结构的影响,但需要进一步研究来解释所描述的效应并优化软骨-载体构建体。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f4d5/2701073/f1dae8a588dc/TOBEJ-2-64_F1.jpg

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