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Cyclic mechanical cells stimulation of myoblasts in skeletal muscle tissue engineering: a preliminary study

机译:循环机械细胞刺激骨骼肌组织工程中成肌细胞的初步研究

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The aim of this study is to evaluate how cyclic mechanical stretching influences skeletal muscle differentiation. To this purpose we realized a mechanical bioreactor that reproduces in vitro a cyclic mechanical stretching of cells seeded on to a polymeric scaffold. The bioreactor consists of three fundamental parts: a Petri dish (in polycarbonate Lexan~®), the stretching scaffold device and a controlled DC motor. Firstly we performed tests of cellular adhesion on different membranes to identify the best cell culture surface using the murine muscular cell line C2C12, and after the identification of the culture surface we examined the role of cyclic mechanical stimulation on differentiation of C2C12 cells. We analysed the expression of genes involved in muscle differentiation by RT-PCR. Our results demonstrate that although the dynamic culture expressed a noticeable quantity of myosin (MLC3F) the cells did not significantly differentiate.
机译:这项研究的目的是评估周期性机械拉伸如何影响骨骼肌的分化。为此,我们实现了一种机械生物反应器,该生物反应器可在体外复制播种到聚合物支架上的细胞的循环机械拉伸。生物反应器由三个基本部分组成:培养皿(聚碳酸酯Lexan®),拉伸支架装置和可控直流电动机。首先,我们使用鼠类肌肉细胞系C2C12对细胞在不同膜上的粘附力进行了测试,以确定最佳的细胞培养表面,然后在鉴定了培养表面后,我们研究了循环机械刺激对C2C12细胞分化的作用。我们通过RT-PCR分析了参与肌肉分化的基因的表达。我们的结果表明,尽管动态培养表达了明显数量的肌球蛋白(MLC3F),但细胞并未明显分化。

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