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Uniaxial cyclic strain of human adipose–derived mesenchymal stem cells and C2C12 myoblasts in coculture

机译:共培养人类脂肪来源间充质干细胞和C2C12成肌细胞的单轴循环株

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Tissue engineering skeletal muscle in vitro is of great importance for the production of tissue-like constructs for treating tissue loss due to traumatic injury or surgery. However, it is essential to find new sources of cells for muscle engineering as efficient in vitro expansion and culture of primary myoblasts are problematic. Mesenchymal stem cells may be a promising source of myogenic progenitor cells and may be harvested in large numbers from adipose tissue. As skeletal muscle is a mechanically dynamic tissue, we have investigated the effect of cyclic mechanical strain on the myogenic differentiation of a coculture system of murine C2C12 myoblasts and human adipose–derived mesenchymal stem cells. Fusion of mesenchymal stem cells with nascent myotubes and expression of human sarcomeric proteins was observed, indicating the potential for myogenic differentiation of human mesenchymal stem cells. Cyclic mechanical strain did not affect the fusion of mesenchymal stem cells, but maturation of myotubes was perturbed.
机译:体外组织工程骨骼肌对于生产用于治疗由于外伤或手术引起的组织损失的组织样构建体非常重要。但是,必须找到新的肌肉工程细胞来源,因为有效的体外扩增和原代成肌细胞的培养存在问题。间充质干细胞可能是成肌祖细胞的有前途的来源,并可能从脂肪组织中大量收获。由于骨骼肌是机械动力学的组织,因此我们研究了循环机械应变对鼠C2C12成肌细胞与人脂肪间充质干细胞共培养系统成肌分化的影响。观察到间充质干细胞与新生肌管的融合和人肌节蛋白的表达,表明人间充质干细胞的成肌分化潜力。循环机械应变不影响间充质干细胞的融合,但肌管的成熟受到干扰。

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