首页> 美国卫生研究院文献>International Journal of Molecular Sciences >In Vitro Comparison of 2D-Cell Culture and 3D-Cell Sheets of Scleraxis-Programmed Bone Marrow Derived Mesenchymal Stem Cells to Primary Tendon Stem/Progenitor Cells for Tendon Repair
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In Vitro Comparison of 2D-Cell Culture and 3D-Cell Sheets of Scleraxis-Programmed Bone Marrow Derived Mesenchymal Stem Cells to Primary Tendon Stem/Progenitor Cells for Tendon Repair

机译:巩膜程序化的骨髓衍生间充质干细胞与肌腱干/祖细胞的2D细胞培养和3D细胞片的体外比较。

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摘要

The poor and slow healing capacity of tendons requires novel strategies to speed up the tendon repair process. Hence, new and promising developments in tendon tissue engineering have become increasingly relevant. Previously, we have established a tendon progenitor cell line via ectopic expression of the tendon-related basic helix-loop-helix (bHLH) transcription factor Scleraxis (Scx) in human bone marrow mesenchymal stem cells (hMSC-Scx). The aim of this study was to directly compare the characteristics of hMSC-Scx cells to that of primary human tendon stem/progenitors cells (hTSPCs) via assessment of self-renewal and multipotency, gene marker expression profiling, in vitro wound healing assay and three-dimensional cell sheet formation. As expected, hTSPCs were more naive than hMSC-Scx cells because of higher clonogenicity, trilineage differentiation potential, and expression of stem cell markers, as well as higher mRNA levels of several gene factors associated with early tendon development. Interestingly, with regards to wound healing, both cell types demonstrate a comparable speed of scratch closure, as well as migratory velocity and distance in various migration experiments. In the three-dimensional cell sheet model, hMSC-Scx cells and hTSPCs form compact tendinous sheets as histological staining, and transmission electron microscopy shows spindle-shaped cells and collagen type I fibrils with similar average diameter size and distribution. Taken together, hTSPCs exceed hMSC-Scx cells in several characteristics, namely clonogenicity, multipotentiality, gene expression profile and rates of tendon-like sheet formation, whilst in three-dimensional cell sheets, both cell types have comparable in vitro healing potential and collagenous composition of their three-dimensional cell sheets, making both cell types a suitable cell source for tendon tissue engineering and healing.
机译:肌腱的愈合能力差且缓慢,需要新颖的策略来加快肌腱修复过程。因此,肌腱组织工程学中新的和有希望的发展变得越来越重要。以前,我们已经通过在人骨髓间充质干细胞(hMSC-Scx)中与肌腱相关的基本螺旋-环-螺旋(bHLH)转录因子Scleraxis(Scx)异位表达建立了肌腱祖细胞系。这项研究的目的是通过评估自我更新和多能性,基因标志物表达谱,体外伤口愈合测定以及三种方法直接比较hMSC-Scx细胞与原代人肌腱干/祖细胞(hTSPC)的特征维细胞片形成。不出所料,hTSPC比hMSC-Scx细胞更幼稚,因为其更高的克隆形成性,三系分化潜能,干细胞标志物的表达以及与早期肌腱发育相关的几种基因因子的mRNA水平更高。有趣的是,关于伤口愈合,两种细胞类型在各种迁移实验中均显示出相当的划痕闭合速度以及迁移速度和距离。在三维细胞片模型中,hMSC-Scx细胞和hTSPCs通过组织学染色形成紧密的肌腱片,并且透射电子显微镜显示纺锤形细胞和I型胶原原纤维具有相似的平均直径大小和分布。总而言之,hTSPC在几个特征方面超过了hMSC-Scx细胞,即克隆形成性,多能性,基因表达谱和腱样片形成的速率,而在三维细胞片中,两种细胞类型的体外愈合潜力和胶原蛋白组成均具有可比性它们的三维细胞片,使这两种细胞类型成为腱组织工程和愈合的合适细胞来源。

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