Rao Lingjun, Qian Ying, Khodabukus Alastair, Ribar Thomas, Bursac Nenad
Department of Biomedical Engineering, Duke University, Durham, NC, 27708, USA.
Duke iPSC Shared Resource Facility, Duke University, Durham, NC, 27708, USA.
Nat Commun. 2018 Jan 9;9(1):126. doi: 10.1038/s41467-017-02636-4.
The generation of functional skeletal muscle tissues from human pluripotent stem cells (hPSCs) has not been reported. Here, we derive induced myogenic progenitor cells (iMPCs) via transient overexpression of Pax7 in paraxial mesoderm cells differentiated from hPSCs. In 2D culture, iMPCs readily differentiate into spontaneously contracting multinucleated myotubes and a pool of satellite-like cells endogenously expressing Pax7. Under optimized 3D culture conditions, iMPCs derived from multiple hPSC lines reproducibly form functional skeletal muscle tissues (iSKM bundles) containing aligned multi-nucleated myotubes that exhibit positive force-frequency relationship and robust calcium transients in response to electrical or acetylcholine stimulation. During 1-month culture, the iSKM bundles undergo increased structural and molecular maturation, hypertrophy, and force generation. When implanted into dorsal window chamber or hindlimb muscle in immunocompromised mice, the iSKM bundles survive, progressively vascularize, and maintain functionality. iSKM bundles hold promise as a microphysiological platform for human muscle disease modeling and drug development.
尚未有关于从人多能干细胞(hPSC)生成功能性骨骼肌组织的报道。在此,我们通过在从hPSC分化而来的近轴中胚层细胞中短暂过表达Pax7来获得诱导性肌原性祖细胞(iMPC)。在二维培养中,iMPC很容易分化为自发收缩的多核肌管以及内源性表达Pax7的卫星样细胞群。在优化的三维培养条件下,源自多个hPSC系的iMPC可重复性地形成功能性骨骼肌组织(iSKM束),其中包含排列整齐的多核肌管,这些肌管表现出正力-频率关系,并且在受到电刺激或乙酰胆碱刺激时会出现强烈的钙瞬变。在1个月的培养过程中,iSKM束的结构和分子成熟度增加,出现肥大并产生力量。当植入免疫缺陷小鼠的背窗室或后肢肌肉中时,iSKM束能够存活、逐渐血管化并维持功能。iSKM束有望成为用于人类肌肉疾病建模和药物开发的微生理平台。