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The role of multifunctional delivery scaffold in the ability of cultured myoblasts to promote muscle regeneration.

机译:多功能递送支架在培养成肌细胞促进肌肉再生的能力中的作用。

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摘要

Many cell types of therapeutic interest, including myoblasts, exhibit reduced engraftment if cultured prior to transplantation. This study investigated whether polymeric scaffolds that direct cultured myoblasts to migrate outwards and repopulate the host damaged tissue, in concert with release of angiogenic factors designed to enhance revascularizaton of the regenerating tissue, would enhance the efficacy of this cell therapy and lead to functional muscle regeneration. This was investigated in the context of a severe injury to skeletal muscle tissue involving both myotoxin-mediated direct damage and induction of regional ischemia. Local and sustained release of VEGF and IGF-1 from macroporous scaffolds used to transplant and disperse cultured myogenic cells significantly enhanced their engraftment, limited fibrosis, and accelerated the regenerative process. This resulted in increased muscle mass and, improved contractile function. These results demonstrate the importance of finely controlling the microenvironment of transplanted cells in the treatment of severe muscle damage.
机译:如果在移植之前进行培养,那么许多具有治疗意义的细胞类型(包括成肌细胞)的移植减少。这项研究调查了定向培养成肌细胞向外迁移并重新聚集宿主受损组织的聚合物支架,与旨在增强再生组织血管再生的血管生成因子的释放相结合,是否会增强这种细胞疗法的功效并导致功能性肌肉再生。在涉及肌毒素介导的直接损伤和局部缺血的诱导的骨骼肌组织严重损伤的情况下,对此进行了研究。从用于移植和分散培养的成肌细胞的大孔支架中局部和持续释放VEGF和IGF-1,显着增强了它们的植入,有限的纤维化并加速了再生过程。这导致肌肉质量增加,收缩功能改善。这些结果证明了在严重的肌肉损伤的治疗中精细控制移植细胞的微环境的重要性。

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