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Integration of stem cell-derived exosomes with in situ hydrogel glue as a promising tissue patch for articular cartilage regeneration

机译:液的干细胞的集成原位凝胶胶是一种很有前途的组织块对关节软骨再生

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摘要

The regeneration of articular cartilage, which scarcely shows innate self-healing ability, is a great challenge in clinical treatment. Stem cell-derived exosomes (SC-Exos), an important type of extracellular nanovesicle, exhibit great potential for cartilage regeneration to replace stem cell-based therapy. Cartilage regeneration often takes a relatively long time and there is currently no effective administration method to durably retain exosomes at cartilage defect sites to effectively exert their reparative effect. Therefore, in this study, we exploited a photoinduced imine crosslinking hydrogel glue, which presents excellent operation ability, biocompatibility and most importantly, cartilage-integration, as an exosome scaffold to prepare an acellular tissue patch (EHG) for cartilage regeneration. It was found that EHG can retain SC-Exos and positively regulate both chondrocytes and hBMSCs in vitro. Furthermore, EHG can integrate with native cartilage matrix and promote cell deposition at cartilage defect sites, finally resulting in the promotion of cartilage defect repair. The EHG tissue patch therefore provides a novel, cell-free scaffold material for wound repair.
机译:关节软骨的再生几乎没有显示天生的自愈能力,是一个巨大的挑战在临床治疗。细胞衍生液(SC-Exos),一个重要的类型的细胞外nanovesicle,表现出伟大软骨再生潜力取代干细胞治疗。经常需要相对较长的时间,目前没有有效的管理方法经久地保留液软骨缺损处有效地发挥他们的修复效果。因此,在这项研究中,我们利用了光诱导的亚胺交联水凝胶胶,提供了优秀的操作能力,生物相容性和最重要的是,cartilage-integration,作为一个外来体支架准备一个非细胞组织补丁(EHG)软骨再生。保留SC-Exos和积极的调节软骨细胞和hBMSCs体外。EHG可以集成本机软骨矩阵和促进细胞沉积在软骨缺损网站,最后导致推广软骨缺损修复。因此提供了一个小说,脱细胞支架伤口修复材料。

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