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采用多孔高密度聚乙烯(HDPE)作为内部支撑,制造具有特定大小和形状的工程软骨替代物。

Engineering cartilage substitute with a specific size and shape using porous high-density polyethylene (HDPE) as internal support.

机构信息

Department of Plastic Surgery, Chang Zheng Hospital, The Second Military Medical University, Shanghai, P.R. China.

出版信息

J Plast Reconstr Aesthet Surg. 2010 Apr;63(4):e370-5. doi: 10.1016/j.bjps.2009.10.016. Epub 2009 Nov 28.

Abstract

Despite the great advances in cartilage engineering, constructing cartilage of large sizes and appropriate shapes remains a great challenge, owing to limits in thickness of regenerated cartilage and to inferior mechanical properties of scaffolds. This study introduces a pre-shaped polyglycolic acid (PGA)-coated porous high-density polyethylene (HDPE) scaffold to overcome these challenges. HDPE was carved into cylindrical rods and wrapped around by PGA fibres to form PGA-HDPE scaffolds. Porcine chondrocytes were seeded into the scaffolds and the constructs were cultured in vitro for 2 weeks before subcutaneous implantation into nude mice. Scaffolds made purely of PGA with the same size and shape were used as a control. After 8 weeks of implantation, the construct formed cartilage-like tissue and retained its pre-designed shape and size. In addition, the regenerated cartilage grew and completely surrounded the HDPE core, which made the entire cartilage substitute biocompatible to its implanted environment as native cartilage similarly does. By contrast, the shape and size of the constructs in the control group seriously deformed and obvious hollow cavity and necrotic tissue were observed in the inner region. These results demonstrate that the use of HDPE as the internal support of a biodegradable scaffold has the potential to circumvent the problems of limitations in size and shape, with promising implications for the development of engineered cartilage appropriate for clinical applications.

摘要

尽管软骨工程取得了重大进展,但由于再生软骨的厚度限制和支架的机械性能较差,构建大尺寸和适当形状的软骨仍然是一个巨大的挑战。本研究介绍了一种预先成型的聚乙二醇酸(PGA)涂层多孔高密度聚乙烯(HDPE)支架,以克服这些挑战。HDPE 被雕刻成圆柱形棒材,并包裹 PGA 纤维以形成 PGA-HDPE 支架。猪软骨细胞被接种到支架中,在体外培养 2 周后,皮下植入裸鼠。使用具有相同尺寸和形状的纯 PGA 支架作为对照。植入 8 周后,构建体形成了类似软骨的组织,并保持了预先设计的形状和尺寸。此外,再生软骨生长并完全包围 HDPE 核心,这使得整个软骨替代物与其植入环境具有生物相容性,就像天然软骨一样。相比之下,对照组的构建体的形状和大小严重变形,内部区域观察到明显的空腔和坏死组织。这些结果表明,使用 HDPE 作为可生物降解支架的内部支撑物有可能避免尺寸和形状的限制问题,这对于开发适合临床应用的工程软骨具有重要意义。

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