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首页> 外文期刊>Biomaterials >The role of engineered tendon matrix in the stemness of tendon stem cells in vitro and the promotion of tendon-like tissue formation in vivo.
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The role of engineered tendon matrix in the stemness of tendon stem cells in vitro and the promotion of tendon-like tissue formation in vivo.

机译:工程化的肌腱基质在体外肌腱干细胞干中的作用以及在体内促进肌腱样组织形成的作用。

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摘要

When injured, tendons tend to heal but with poor structure and compromised function. Tissue engineering is a promising approach to enhancing the quality of healing tendons. Our group and others have identified tendon stem cells (TSCs), a type of tendon-specific stem cells which may be optimal for cellular interventions seeking to restore normal structure and function to injured tendons. However, in vitro expanding of TSCs on regular plastic cell culture dishes only yields a limited number of TSCs before they lose the stemness, i.e., the self-renewal capability and multipotency. In this study, we developed a substrate material for TSCs, engineered tendon matrix (ETM) from decellularized tendon tissues. We showed that ETM in vitro was able to stimulate TSC proliferation and better preserve the stemness of TSCs than plastic culture surfaces. In vivo, implantation of ETM-TSC composite promoted tendon-like tissue formation whereas implantation of TSCs alone led to little such tissue formation. Together, the findings of this study indicate that ETM may be used to effectively expand TSCs in vitro and with TSCs, to enhance repair of injured tendons in vivo.
机译:受伤时,肌腱易于愈合,但结构不良且功能受损。组织工程学是提高愈合肌腱质量的一种有前途的方法。我们的小组和其他人已经确定了肌腱干细胞(TSC),这是一种肌腱特异性干细胞,对于寻求恢复受损肌腱的正常结构和功能的细胞干预措施而言可能是最佳的。然而,在普通塑料细胞培养皿上TSC的体外扩增仅产生有限数量的TSC,然后它们失去干性,即自我更新能力和多能性。在这项研究中,我们开发了TSC的基质材料,即脱细胞肌腱组织的工程化肌腱基质(ETM)。我们显示,体外ETM能够刺激TSC增殖,并且比塑性培养表面更好地保留TSC的茎干。在体内,ETM-TSC复合材料的植入促进了肌腱样组织的形成,而仅TSC的植入却很少导致这种组织的形成。总之,这项研究的发现表明ETM可以用于在体外和与TSC一起有效地扩展TSC,以增强体内受损肌腱的修复。

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