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利用新型三维多孔支架构建成熟软骨结构以增强骨软骨缺损修复

Development of mature cartilage constructs using novel three-dimensional porous scaffolds for enhanced repair of osteochondral defects.

作者信息

Kasahara Yasuhiko, Iwasaki Norimasa, Yamane Shintaro, Igarashi Tatsuya, Majima Tokifumi, Nonaka Sachiko, Harada Kazuo, Nishimura Shin-Ichiro, Minami Akio

机构信息

Department of Orthopaedic Surgery, Graduate School of Medicine, Hokkaido University, Sapporo, Japan.

出版信息

J Biomed Mater Res A. 2008 Jul;86(1):127-36. doi: 10.1002/jbm.a.31259.

Abstract

In this study, we successfully developed two types of volume-reduced three-dimensional scaffolds, including cushion- and cylinder-shape scaffolds, fabricated from chitosan-based hyaluronic acid hybrid polymer fibers. Using these scaffolds combined with a bioreactor system, we regenerated histologically and mechanically mature cartilage constructs. The final goal of this study was to clarify the ability of this engineered cartilage construct to induce cartilage repair in osteochondral defects. The mature cartilage constructs regenerated with two types of scaffolds were implanted into 5-mm diameter osteochondral defects in the patellar groove of rabbits. At 12 weeks after implantation, the reparative tissues consisted of hyaline-like cartilage with evidence of stable fusion to adjacent native cartilage and normal reconstitution of subchondral bone. The histological score of these tissues significantly outranked the value of untreated tissue. Biomechanically, compression modulus of reparative tissue at 12 weeks postoperatively was comparative to that of normal articular cartilage. Our results indicate that the implantation of constructs with mature cartilage have potential as a better approach for joint resurfacing.

摘要

在本研究中,我们成功开发了两种类型的体积减小的三维支架,包括由壳聚糖基透明质酸混合聚合物纤维制成的垫状和圆柱状支架。使用这些支架与生物反应器系统相结合,我们再生出了组织学和力学上成熟的软骨构建体。本研究的最终目标是阐明这种工程化软骨构建体诱导骨软骨缺损处软骨修复的能力。用两种类型的支架再生的成熟软骨构建体被植入兔髌沟直径为5毫米的骨软骨缺损处。植入后12周,修复组织由透明样软骨组成,与相邻天然软骨有稳定融合的迹象,且软骨下骨正常重建。这些组织的组织学评分明显高于未处理组织的值。在生物力学方面,术后12周修复组织压缩模量与正常关节软骨相当。我们的结果表明,植入成熟软骨构建体有潜力成为一种更好的关节表面置换方法。

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