首页> 外文期刊>Tissue engineering, Part A >Smad Signaling Determines Chondrogenic Differentiation of Bone-Marrow-Derived Mesenchymal Stem Cells: Inhibition of Smad1/5/8P Prevents Terminal Differentiation and Calcification
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Smad Signaling Determines Chondrogenic Differentiation of Bone-Marrow-Derived Mesenchymal Stem Cells: Inhibition of Smad1/5/8P Prevents Terminal Differentiation and Calcification

机译:Smad信号传导决定了骨髓衍生的间充质干细胞的软骨外分化:Smad1 / 5 / 8p的抑制阻止终端分化和钙化

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The aim of this study was to investigate the roles of Smad2/3 and Smad1/5/8 phosphorylation in transforming growth factor-beta-induced chondrogenic differentiation of bone-marrow-derived mesenchymal stem cells (BMSCs) to assess whether specific targeting of different Smad signaling pathways offers possibilities to prevent terminal differentiation and mineralization of chondrogenically differentiated BMSCs. Terminally differentiated chondrocytes produced in vitro by chondrogenic differentiation of BMSCs or studied ex vivo during murine embryonic limb formation stained positive for both Smad2/3P and Smad1 /5/8P. Hyaline-like cartilage produced in vitro by articular chondrocytes or studied in ex vivo articular cartilage samples that lacked expression for matrix metalloproteinase 13 and collagen X only expressed Smad2/3P. When either Smad2/3 or Smadl/5/8 phosphorylation was blocked in BMSC culture by addition of SB-505124 or dorsomorphin throughout culture, no collagen II expression was observed, indicating that both pathways are involved in early chondrogenesis. Distinct functions for these pathways were demonstrated when Smad signaling was blocked after the onset of chondrogenesis. Blocking Smad2/3P after the onset of chondrogenesis resulted in a halt in collagen II production. On the other hand, blocking Smad1/5/8P during this time period resulted in decreased expression of matrix metalloproteinase 13, collagen X, and alkaline phosphatase while allowing collagen II production. Moreover, blocking Smad1/5/8P prevented mineralization. This indicates that while Smad2/3P is important for continuation of collagen II deposition, Smadl /5/8 phosphorylation is associated with terminal differentiation and mineralization.
机译:本研究的目的是研究Smad2 / 3和Smad1 / 5/8磷酸化在转化生长因子 - β诱导的骨髓衍生的间充质干细胞(BMSC)的软骨内分化中的作用,以评估不同的特定靶向SMAD信号通路提供了防止末端分化和软弱化分化BMSCs的矿化和矿化的可能性。通过BMSCs的软骨生分化在体外产生的终端分化的软骨细胞,或者在鼠胚胎肢体形成期间研究了SMAD2 / 3P和Smad1 / 5 / 8P的阳性。用关节软骨细胞在体外产生的透明软骨或在缺乏基质金属蛋白酶13和胶原X的表达式表达Smad2 / 3p的表达中生成的透明软骨。当通过加入Sb-505124或整个培养物在BMSC培养物中封闭Smad2 / 3或Smadl / 5/8磷酸化时,未观察到胶原II表达,表明两种途径涉及早期的软骨发生。当在软骨发生发作后,当Smad信号传导阻断时,证明了这些途径的不同功能。在软骨发生开始后阻断Smad2 / 3P导致胶原蛋白II的生产中停止。另一方面,在该时间段中阻断SMAD1 / 5 / 8P导致基质金属蛋白酶13,胶原蛋白X和碱性磷酸酶的表达降低,同时允许胶原II产生。此外,阻塞Smad1 / 5 / 8p防止矿化。这表明,虽然Smad2 / 3P对胶原II沉积的延续很重要,但Smadl / 5/8磷酸化与末端分化和矿化有关。

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