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Early cellular responses of BMSCs genetically modified with bFGF/BMP2 co-cultured with ligament fibroblasts in a three-dimensional model in?vitro

机译:在体外三维模型中,用bFGF / BMP2与韧带成纤维细胞共培养的BMSCs的早期细胞反应

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Currently, a number of strategies including the implantation of bone marrow-derived mesenchymal stem cells?(BMSCs) and growth factors have been developed to regenerate the tendon-to-bone interface after performing anterior cruciate ligament reconstruction. However, the mechanisms behind the interactions of the implanted BMSCs and tendon cells remain to be elucidated. The aim of this study was to evaluate the early cellular responses of BMSCs genetically modified with basic growth factor growth factor?(bFGF)/bone morphogenic protein?2?(BMP2) and ligament fibroblasts in a three-dimensional co-culture model. BMSCs and ligament fibroblasts were both isolated from male Wistar rats. The BMSCs were then transfected with an adenoviral vector carrying bFGF or BMP2. The transfected BMSCs and ligament fibroblasts both encapsulated in alginate beads were co-cultured for 6?days in three-dimensional model. On days?0, 3?and?6, cell proliferation was assayed. On day?6, the expression of several tendon-bone related markers was evaluated. In the co-culture system, bFGF and BMP2 were highly expressed at the mRNA and protein level. During the process, bFGF significantly promoted cell proliferation, as well as the expression of scleraxis?(SCX) and collagen?(COL) type?Ⅰ?(COL1) in the BMSCs; however, it markedly decreased the expression of phenotype markers in the ligament fibroblasts, including COL1 and COL3. BMP2 markedly increased the expression of alkaline phosphatase and osteocalcin in the BMSCs and ligament fibroblasts, whereas it had no obvious effect on cell proliferation and collagen synthesis in the ligament fibroblasts. The combination of bFGF and BMP2 resulted in the similarly enhanced proliferation of BMSCs and ligament fibroblasts as observed with bFGF alone; however, this combination more potently promoted osteogenic differentiation than did BMP2 alone. The findings of our study demonstrate the superiority of the combined use of growth factors in inducing osteogenic differentiation and provide a theoretical foundation for the regeneration of the tendon-to-bone interface.
机译:目前,已经开发了许多策略,包括植入骨髓源性间充质干细胞(BMSCs)和生长因子,以在进行前十字韧带重建后再生肌腱至骨的界面。然而,植入的BMSC与肌腱细胞相互作用的背后机制尚待阐明。本研究的目的是在三维共培养模型中评估用碱性生长因子生长因子(bFGF)/骨形态发生蛋白α2β(BMP2)和韧带成纤维细胞基因修饰的骨髓间充质干细胞的早期细胞反应。均从雄性Wistar大鼠中分离出BMSC和韧带成纤维细胞。然后用携带bFGF或BMP2的腺病毒载体转染BMSC。将都包裹在藻酸盐珠中的转染的BMSC和韧带成纤维细胞在三维模型中共培养6天。在第0、3和6天,测定细胞增殖。在第6天,评估几种肌腱-骨相关标志物的表达。在共培养系统中,bFGF和BMP2在mRNA和蛋白质水平上高表达。在此过程中,bFGF能显着促进细胞的增殖,并促进骨髓间充质干细胞中巩膜?(SCX)和胶原?(COL)???????然而,它显着降低了韧带成纤维细胞(包括COL1和COL3)中表型标志物的表达。 BMP2显着增加了碱性磷酸酶和骨钙素在BMSCs和韧带成纤维细胞中的表达,而对韧带成纤维细胞的细胞增殖和胶原合成没有明显影响。 bFGF和BMP2的结合导致BMSCs和韧带成纤维细胞增殖的增加,与单独使用bFGF观察到的类似。但是,这种组合比单独的BMP2更有效地促进了成骨分化。我们研究的结果证明了生长因子联合使用在诱导成骨分化方面的优越性,并为肌腱-骨界面的再生提供了理论基础。

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