Xu Bin, Zhang Mengen, Perlingeiro Rita C R, Shen Wei
Department of Biomedical Engineering, University of Minnesota, Minneapolis, MN, 55455, USA.
Department of Medicine, University of Minnesota, Minneapolis, MN, 55455, USA.
Adv Biosyst. 2019 Dec;3(12):e1900005. doi: 10.1002/adbi.201900005. Epub 2019 Nov 4.
Three-dimensional (3D) skeletal muscle constructs engineered from myogenic progenitors derived from human pluripotent stem cells (hPSCs) have a wide range of applications, but to date, such constructs generate lower specific tetanic force than adult human muscles. Methods enhancing functional muscle differentiation and force generation of these constructs are highly desirable. The finding of this study is that addition of the supplements in the endothelial cell growth medium-2 (EGM-2) to the myogenic differentiation medium can substantially enhance contractile force generation. For constructs differentiated for 4 weeks, addition of the EGM-2 supplements in the first 2 weeks leads to tenfold and sevenfold increases in twitch and tetanic forces, respectively. The specific tetanic force generated by these constructs is 33 mN mm , which is significantly higher than previously reported. These constructs show wider myotubes and higher gene expression levels for all skeletal muscle-specific myosin heavy chain isoforms, suggesting that a more mature differentiation stage of the cells underlies the greater contractile force generation. The constructs exposed to these supplements for 4 weeks do not generate as high contractile forces, suggesting that prolonged treatment is not beneficial. These results suggest that temporal conditioning with the EGM-2 supplements assists functional development of hPSC-derived skeletal muscle constructs.
由人多能干细胞(hPSC)来源的成肌祖细胞构建的三维(3D)骨骼肌结构具有广泛的应用,但迄今为止,此类结构产生的强直比力低于成人肌肉。非常需要增强这些结构的功能性肌肉分化和力产生的方法。本研究的发现是,将内皮细胞生长培养基-2(EGM-2)中的补充剂添加到成肌分化培养基中可显著增强收缩力的产生。对于分化4周的结构,在前2周添加EGM-2补充剂可使抽搐力和强直力分别增加10倍和7倍。这些结构产生的特定强直比力为33 mN/mm,显著高于先前报道的数值。这些结构显示出更宽的肌管以及所有骨骼肌特异性肌球蛋白重链亚型的更高基因表达水平,这表明细胞更成熟的分化阶段是产生更大收缩力的基础。暴露于这些补充剂4周的结构不会产生同样高的收缩力,这表明延长处理并无益处。这些结果表明,用EGM-2补充剂进行时间调控有助于hPSC来源的骨骼肌结构的功能发育。