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Recent Approaches to the Manufacturing of Biomimetic Multi-Phasic Scaffolds for Osteochondral Regeneration

机译:用于软骨软骨再生的仿生多相支架制造的最新方法。

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摘要

Cartilage lesions of the knee are common disorders affecting people of all ages; as the lesion progresses, it extends to the underlying subchondral bone and an osteochondral defect appears. Osteochondral (OC) tissue compromises soft cartilage over hard subchondral bone with a calcified cartilage interface between these two tissues. Osteochondral defects can be caused by numerous factors such as trauma and arthritis. Tissue engineering offers the possibility of a sustainable and effective treatment against osteochondral defects, where the damaged tissue is replaced with a long-lasting bio-manufactured replacement tissue. This review evaluates both bi-phasic and multi-phasic scaffold-based approaches of osteochondral tissue regeneration, highlighting the importance of having an interface layer between the bone and cartilage layer. The significance of a biomimetic approach is also evidenced and shown to be more effective than the more homogenous design approach to osteochondral scaffold design. Recent scaffold materials and manufacturing techniques are reviewed as well as the current clinical progress with osteochondral regeneration scaffolds.
机译:膝关节软骨病变是影响各个年龄段人群的常见疾病;随着病变的进展,它会延伸到下面的软骨下骨,并出现骨软骨缺损。骨软骨(OC)组织在硬软骨下骨上损害了软软骨,而这两种组织之间存在钙化的软骨界面。骨软骨缺损可能由多种因素引起,例如创伤和关节炎。组织工程学提供了针对骨软骨缺损的可持续有效治疗的可能性,其中受损的组织被替换为持久的生物制造的替代组织。该评价评估了基于双相和多相支架的骨软骨组织再生方法,强调了在骨和软骨层之间具有界面层的重要性。仿生方法的重要性也得到了证明,并且比骨软骨支架设计的同质设计方法更为有效。综述了最近的支架材料和制造技术,以及骨软骨再生支架的当前临床进展。

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