Suppr超能文献

三维自组装纳米纤维基质可使老化/退变的人肌腱干/祖细胞恢复活力。

Three-dimensional self-assembling nanofiber matrix rejuvenates aged/degenerative human tendon stem/progenitor cells.

作者信息

Yin Heyong, Strunz Franziska, Yan Zexing, Lu Jiaju, Brochhausen Christoph, Kiderlen Stefanie, Clausen-Schaumann Hauke, Wang Xiumei, Gomes Manuela E, Alt Volker, Docheva Denitsa

机构信息

Experimental Trauma Surgery, Department of Trauma Surgery, University Regensburg Medical Centre, Regensburg, Germany; Department of Orthopedics, Beijing Friendship Hospital, Capital Medical University, Beijing, China.

Experimental Trauma Surgery, Department of Trauma Surgery, University Regensburg Medical Centre, Regensburg, Germany.

出版信息

Biomaterials. 2020 Apr;236:119802. doi: 10.1016/j.biomaterials.2020.119802. Epub 2020 Jan 21.

Abstract

The poor healing capacity of tendons is known to worsen in the elderly. During tendon aging and degeneration, endogenous human tendon stem/progenitor cells (hTSPCs) experience profound pathological changes. Here, we explored a rejuvenation strategy for hTSPCs derived from aged/degenerated Achilles tendons (A-TSPCs) by providing three-dimensional (3D) nanofiber hydrogels and comparing them to young/healthy TSPCs (Y-TSPCs). RADA peptide hydrogel has a self-assembling ability, forms a nanofibrous 3D niche and can be further functionalized by adding RGD motifs. Cell survival, apoptosis, and proliferation assays demonstrated that RADA and RADA/RGD hydrogels support A-TSPCs in a comparable manner to Y-TSPCs. Moreover, they rejuvenated A-TSPCs to a phenotype similar to that of Y-TSPCs, as evidenced by restored cell morphology and cytoskeletal architecture. Transmission electron, confocal laser scanning and atomic force microscopies demonstrated comparable ultrastructure, surface roughness and elastic modulus of A- and Y-TSPC-loaded hydrogels. Lastly, quantitative PCR revealed similar expression profiles, as well a significant upregulation of genes related to tenogenesis and multipotency. Taken together, the RADA-based hydrogels exert a rejuvenating effect by recapitulating in vitro specific features of the natural microenvironment of human TSPCs, which strongly indicates their potential to direct cell behaviour and overcome the challenge of cell aging and degeneration in tendon repair.

摘要

众所周知,肌腱的愈合能力在老年人中会变差。在肌腱老化和退变过程中,内源性人肌腱干/祖细胞(hTSPCs)会经历深刻的病理变化。在此,我们通过提供三维(3D)纳米纤维水凝胶并将其与年轻/健康的TSPCs(Y-TSPCs)进行比较,探索了一种针对源自老化/退变跟腱(A-TSPCs)的hTSPCs的年轻化策略。RADA肽水凝胶具有自组装能力,可形成纳米纤维三维微环境,并可通过添加RGD基序进一步功能化。细胞存活、凋亡和增殖分析表明,RADA和RADA/RGD水凝胶对A-TSPCs的支持作用与Y-TSPCs相当。此外,它们使A-TSPCs恢复到与Y-TSPCs相似的表型,细胞形态和细胞骨架结构的恢复证明了这一点。透射电子显微镜、共聚焦激光扫描显微镜和原子力显微镜显示,负载A-TSPCs和Y-TSPCs的水凝胶具有可比的超微结构、表面粗糙度和弹性模量。最后,定量PCR显示了相似的表达谱,以及与肌腱生成和多能性相关基因的显著上调。综上所述,基于RADA的水凝胶通过重现人TSPCs天然微环境的体外特定特征发挥年轻化作用,这强烈表明它们在指导细胞行为以及克服肌腱修复中细胞老化和退变挑战方面的潜力。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验