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用于修复软骨缺损的可注射外泌体增强魔芋葡甘聚糖复合水凝胶:内源性抗氧化途径的激活

Injectable exosome-reinforced konjac glucomannan composite hydrogel for repairing cartilage defect: activation of endogenous antioxidant pathways.

作者信息

Ye Cong, Xu Jiabao, Wang Youjian, Ji Minrui, Tao Ran, Han Fei, Zhou Peng

机构信息

Department of Orthopaedics, Affiliated Hospital of Nantong University, Medical School of Nantong University, Nantong 226001, China.

Department of Sports Medicine, The 941th Hospital of Joint Logistic Support Force of Chinese People's Liberation Army, Xining 810000, China.

出版信息

Regen Biomater. 2025 Jun 17;12:rbaf060. doi: 10.1093/rb/rbaf060. eCollection 2025.

Abstract

Enhancing the regeneration of cartilage defects remains a formidable challenge, as the dysregulated microenvironment and its crosstalk with chondrocytes play pivotal roles in impairing regeneration. In this study, we proposed a natural plant polysaccharides-derived injectable hydrogel (Exos@EKM) for adapting to irregular cartilage defects. By encapsulating stem cell-derived exosomes (Exos) into polyphenol modified methacryloylated konjac glucomannan (EKM), this hydrogel exerting a potent biological synergistic effect. First, the hydrogel demonstrates favorable biocompatibility and has the capability to modulate cellular behavior through the delivery of Exos. Additionally, it demonstrates significant chondroprotective effects and reprograms macrophages to the pro-healing state. Furthermore, konjac glucomannan and polyphenols in hydrogel synergistically activate the endogenous antioxidant capacity of chondrocytes through nuclear factor erythroid 2-related factor 2 (NRF2)-dependent pathway, thereby optimizing the biological function of Exos in regulating chondrocyte behavior and maintaining normal cartilage metabolism. In a full-thickness cartilage defect model, in vivo implantation of Exos@EKM hydrogel successfully improved cartilage regeneration and ultimately restoring knee joint functionalities. Overall, this combination of natural konjac glucomannan, polyphenols and Exos has resulted in the promotion the harmony between the microenvironment, chondrocyte and ECM. This study offers a novel approach for designing biomaterials for cartilage tissue engineering.

摘要

增强软骨缺损的再生仍然是一项艰巨的挑战,因为失调的微环境及其与软骨细胞的相互作用在损害再生过程中起着关键作用。在本研究中,我们提出了一种源自天然植物多糖的可注射水凝胶(Exos@EKM),以适应不规则的软骨缺损。通过将干细胞衍生的外泌体(Exos)封装到多酚修饰的甲基丙烯酰化魔芋葡甘露聚糖(EKM)中,这种水凝胶发挥了强大的生物协同效应。首先,该水凝胶表现出良好的生物相容性,并具有通过递送Exos来调节细胞行为的能力。此外,它还表现出显著的软骨保护作用,并将巨噬细胞重编程为促愈合状态。此外,水凝胶中的魔芋葡甘露聚糖和多酚通过核因子红细胞2相关因子2(NRF2)依赖性途径协同激活软骨细胞的内源性抗氧化能力,从而优化Exos在调节软骨细胞行为和维持正常软骨代谢中的生物学功能。在全层软骨缺损模型中,体内植入Exos@EKM水凝胶成功改善了软骨再生,并最终恢复了膝关节功能。总体而言,天然魔芋葡甘露聚糖、多酚和Exos的这种组合促进了微环境、软骨细胞和细胞外基质之间的协调。本研究为设计用于软骨组织工程的生物材料提供了一种新方法。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4fef/12311292/d1c091bb56e7/rbaf060f11.jpg

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