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体外人骨骼肌前体细胞培养及肌纤维形成的优化

Optimization of human skeletal muscle precursor cell culture and myofiber formation in vitro.

作者信息

Eberli Daniel, Soker Shay, Atala Anthony, Yoo James J

机构信息

Wake Forest University Health Sciences, Wake Forest Institute for Regenerative Medicine, Medical Center Boulevard, Winston Salem, NC 27154-1094, USA.

出版信息

Methods. 2009 Feb;47(2):98-103. doi: 10.1016/j.ymeth.2008.10.016. Epub 2008 Oct 24.

Abstract

Muscle bioengineering is proposed as a treatment option for various conditions requiring restoration of muscle function. In order to allow for rapid clinical translation culture conditions have to be optimized for human application. The optimal isolation and culture technique should be able to support cell growth and differentiation using defined media only. Therefore, we have evaluated alternative culture conditions to determine the optimal growth condition for the engineering of human skeletal muscle. In this research, we present protocols for consistent isolation and growth of human muscle precursor cells (MPCs). MPCs were grown from human biopsies and expanded in culture using defined media and collagen coated dishes only. The best results were achieved using a one-step pre-plating and by supplementing the growth medium with insulin, dexamethasone, human basic fibroblast growth factor (hFGF) and human epithelial growth factor (hEGF). Detailed cell characterization using fluorescence-activated cell-sorting analysis and morphological analysis at different passages were performed. Further, the applicability of these cells for tissue engineering purposes was assessed by measuring expansion potential, formation of myofibers and fused myotubes. We have established a culture technique for human MPCs that allows for reliable cell growth and expansion using collagen coated dishes and defined media only. Cell characterization demonstrated a muscle phenotype and the ability to form myofibers in vitro.

摘要

肌肉生物工程被提议作为恢复肌肉功能的各种病症的一种治疗选择。为了实现快速临床转化,必须针对人体应用优化培养条件。最佳的分离和培养技术应仅使用特定培养基就能支持细胞生长和分化。因此,我们评估了替代培养条件,以确定人类骨骼肌工程的最佳生长条件。在本研究中,我们展示了用于人类肌肉前体细胞(MPC)一致分离和生长的方案。MPC从人类活检组织中生长出来,并仅使用特定培养基和胶原蛋白包被的培养皿在培养中进行扩增。通过一步预铺板以及在生长培养基中添加胰岛素、地塞米松、人碱性成纤维细胞生长因子(hFGF)和人表皮生长因子(hEGF)可获得最佳结果。使用荧光激活细胞分选分析和不同传代时的形态分析进行了详细的细胞表征。此外,通过测量扩增潜力、肌纤维形成和融合肌管来评估这些细胞用于组织工程目的的适用性。我们已经建立了一种用于人类MPC的培养技术,该技术仅使用胶原蛋白包被的培养皿和特定培养基就能实现可靠的细胞生长和扩增。细胞表征显示出肌肉表型以及在体外形成肌纤维的能力。

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