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首页> 外文期刊>Journal of Materials Chemistry, B. materials for biology and medicine >A biphasic scaffold based on silk and bioactive ceramic with stratified properties for osteochondral tissue regeneration
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A biphasic scaffold based on silk and bioactive ceramic with stratified properties for osteochondral tissue regeneration

机译:基于丝绸和生物活性陶瓷的双相支架,具有分层特性,可用于软骨组织再生

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摘要

Significant clinical challenges encountered in the effective long-term treatment of osteochondral defects have inspired advancements in scaffold-based tissue engineering techniques to aid repair and regeneration. This study reports the development of a biphasic scaffold produced via a rational combination of silk fibroin and bioactive ceramic with stratified properties to satisfy the complex and diverse regenerative requirements of osteochondral tissue. Structural examination showed that the biphasic scaffold contained two phases with different pore morphologies to match the cartilage and bone segments of osteochondral tissue, which were joined at a continuous interface. Mechanical assessment showed that the two phases of the biphasic scaffold imitated the load-bearing behaviour of native osteochondral tissue and matched its compressive properties. In vitro testing showed that different compositions in the two phases of the biphasic scaffold could direct the preferential differentiation of human mesenchymal stem cells towards the chondrogenic or osteogenic lineage. By featuring simple and reproducible fabrication and a well-integrated interface, the biphasic scaffold strategy established in this study circumvented the common problems experienced with integrated scaffold designs and could provide an effective approach for the regeneration of osteochondral tissue.
机译:在有效长期治疗骨软骨缺损中遇到的重大临床挑战激发了基于支架的组织工程技术的发展,以帮助修复和再生。这项研究报告了通过合理组合丝素蛋白和具有分层特性的生物活性陶瓷生产的双相支架的开发,以满足骨软骨组织复杂而多样的再生需求。结构检查表明,双相支架包含两个具有不同孔形态的相,以匹配骨软骨组织的软骨和骨段,并在连续的界面处连接。机械评估表明,双相支架的两个阶段模仿了天然骨软骨组织的承重行为,并与其压缩特性相匹配。体外测试表明,双相支架的两个阶段中的不同成分可以指导人间充质干细胞向软骨或成骨谱系的优先分化。通过以简单且可复制的制造和良好集成的界面为特色,本研究中建立的双相支架策略规避了集成支架设计所遇到的常见问题,并且可以为骨软骨组织的再生提供有效的方法。

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