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采用细胞外基质启发的天然支架增强透明软骨形成的软骨修复。

Enhanced osteochondral repair with hyaline cartilage formation using an extracellular matrix-inspired natural scaffold.

机构信息

Beijing Key Laboratory of Sports Injuries, Institute of Sports Medicine of Peking University, Peking University Third Hospital, Beijing 100191, China.

Beijing Key Laboratory of Sports Injuries, Institute of Sports Medicine of Peking University, Peking University Third Hospital, Beijing 100191, China.

出版信息

Sci Bull (Beijing). 2023 Sep 15;68(17):1904-1917. doi: 10.1016/j.scib.2023.07.050. Epub 2023 Aug 1.

Abstract

Osteochondral defects pose a great challenge and a satisfactory strategy for their repair has yet to be identified. In particular, poor repair could result in the generation of fibrous cartilage and subchondral bone, causing the degeneration of osteochondral tissue and eventually leading to repair failure. Herein, taking inspiration from the chemical elements inherent in the natural extracellular matrix (ECM), we proposed a novel ECM-mimicking scaffold composed of natural polysaccharides and polypeptides for osteochondral repair. By meticulously modifying natural biopolymers to form reversible guest-host and rigid covalent networks, the scaffold not only exhibited outstanding biocompatibility, cell adaptability, and biodegradability, but also had excellent mechanical properties that can cater to the environment of osteochondral tissue. Additionally, benefiting from the drug-loading group, chondrogenic and osteogenic drugs could be precisely integrated into the specific zone of the scaffold, providing a tissue-specific microenvironment to facilitate bone and cartilage differentiation. In rabbit osteochondral defects, the ECM-inspired scaffold not only showed a strong capacity to promote hyaline cartilage formation with typical lacuna structure, sufficient mechanical strength, good elasticity, and cartilage-specific ECM deposition, but also accelerated the regeneration of quality subchondral bone with high bone mineralization density. Furthermore, the new cartilage and subchondral bone were heterogeneous, a trait that is typical of the natural landscape, reflecting the gradual progression from cartilage to subchondral bone. These results suggest the potential value of this bioinspired osteochondral scaffold for clinical applications.

摘要

软骨骨缺损是一个巨大的挑战,目前还没有找到满意的修复策略。特别是,如果修复不当,可能会导致纤维软骨和软骨下骨的形成,从而导致软骨骨组织退化,最终导致修复失败。在此,受天然细胞外基质(ECM)固有化学元素的启发,我们提出了一种由天然多糖和多肽组成的新型 ECM 模拟支架,用于软骨骨修复。通过精心修饰天然生物聚合物以形成可逆的主体-客体和刚性共价网络,该支架不仅表现出优异的生物相容性、细胞适应性和生物降解性,而且具有出色的机械性能,可以适应软骨骨组织的环境。此外,得益于载药基团,成软骨和成骨药物可以精确地整合到支架的特定区域,为骨和软骨分化提供组织特异性的微环境。在兔软骨骨缺损模型中,这种 ECM 启发的支架不仅表现出很强的促进透明软骨形成的能力,具有典型的陷窝结构、足够的机械强度、良好的弹性和软骨特异性 ECM 沉积,而且还加速了具有高矿化密度的高质量软骨下骨的再生。此外,新形成的软骨和软骨下骨具有异质性,这是一种典型的天然景观特征,反映了从软骨到软骨下骨的逐渐进展。这些结果表明,这种仿生软骨骨支架具有潜在的临床应用价值。

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