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Mesenchymal stem cells and myoblast differentiation under HGF and IGF-1 stimulation for 3D skeletal muscle tissue engineering

机译:HGF和IGF-1刺激下的间充质干细胞和成肌细胞分化用于3D骨骼肌组织工程

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摘要

BackgroundVolumetric muscle loss caused by trauma or after tumour surgery exceeds the natural regeneration capacity of skeletal muscle. Hence, the future goal of tissue engineering (TE) is the replacement and repair of lost muscle tissue by newly generating skeletal muscle combining different cell sources, such as myoblasts and mesenchymal stem cells (MSCs), within a three-dimensional matrix. Latest research showed that seeding skeletal muscle cells on aligned constructs enhance the formation of myotubes as well as cell alignment and may provide a further step towards the clinical application of engineered skeletal muscle.In this study the myogenic differentiation potential of MSCs upon co-cultivation with myoblasts and under stimulation with hepatocyte growth factor (HGF) and insulin-like growth factor-1 (IGF-1) was evaluated. We further analysed the behaviour of MSC-myoblast co-cultures in different 3D matrices.
机译:背景技术由创伤或肿瘤手术导致的体积性肌肉损失超过了骨骼肌的自然再生能力。因此,组织工程学(TE)的未来目标是通过在三维矩阵中结合不同细胞源(例如成肌细胞和间充质干细胞(MSC))的新生成的骨骼肌来替换和修复丢失的肌肉组织。最新研究表明,将骨骼肌细胞接种在对齐的构建体上可增强肌管的形成以及细胞排列,并可能为工程化骨骼肌的临床应用提供进一步的步骤。评估成肌细胞和肝细胞生长因子(HGF)和胰岛素样生长因子-1(IGF-1)刺激下的情况。我们进一步分析了MSC-成肌细胞共培养在不同3D矩阵中的行为。

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