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Strategic Design and Fabrication of Engineered Scaffolds for Articular Cartilage Repair

机译:关节软骨修复工程支架的策略设计与制造

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摘要

Damage to articular cartilage can eventually lead to osteoarthritis (OA), a debilitating, degenerative joint disease that affects millions of people around the world. The limited natural healing ability of cartilage and the limitations of currently available therapies make treatment of cartilage defects a challenging clinical issue. Hopes have been raised for the repair of articular cartilage with the help of supportive structures, called scaffolds, created through tissue engineering (TE). Over the past two decades, different designs and fabrication techniques have been investigated for developing TE scaffolds suitable for the construction of transplantable artificial cartilage tissue substitutes. Advances in fabrication technologies now enable the strategic design of scaffolds with complex, biomimetic structures and properties. In particular, scaffolds with hybrid and/or biomimetic zonal designs have recently been developed for cartilage tissue engineering applications. This paper reviews critical aspects of the design of engineered scaffolds for articular cartilage repair as well as the available advanced fabrication techniques. In addition, recent studies on the design of hybrid and zonal scaffolds for use in cartilage tissue repair are highlighted.
机译:关节软骨的损伤最终会导致骨关节炎(OA),这是一种使人衰弱,退化的关节疾病,影响着全球数百万人。软骨的自然愈合能力有限以及当前可用疗法的局限性使得软骨缺陷的治疗成为具有挑战性的临床问题。在通过组织工程(TE)创建的称为支架的支撑结构的帮助下,人们对修复关节软骨提出了希望。在过去的二十年中,已经研究了不同的设计和制造技术来开发适合构建可移植的人工软骨组织替代物的TE支架。现在,制造技术的进步使具有复杂,仿生结构和特性的脚手架的战略设计成为可能。特别地,最近已经开发出具有混合和/或仿生区带设计的支架,用于软骨组织工程应用。本文回顾了关节软骨修复工程支架设计的关键方面,以及可用的先进制造技术。另外,强调了关于用于软骨组织修复的混合和带状支架设计的最新研究。

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