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首页> 外文期刊>Biomaterials >Generation of craniofacial myogenic progenitor cells from human induced pluripotent stem cells for skeletal muscle tissue regeneration
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Generation of craniofacial myogenic progenitor cells from human induced pluripotent stem cells for skeletal muscle tissue regeneration

机译:从人诱导的多能干细胞生成颅面肌原素细胞进行骨骼肌组织再生

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摘要

Craniofacial skeletal muscle is composed of approximately 60 muscles, which have critical functions including food uptake, eye movements and facial expressions. Although craniofacial muscles have significantly different embryonic origin, most current skeletal muscle differentiation protocols using human induced pluripotent stem cells (iPSCs) are based on somite-derived limb and trunk muscle developmental pathways. Since the lack of a protocol for craniofacial muscles is a significant gap in the iPSC-derived muscle field, we have developed an optimized protocol to generate craniofacial myogenic precursor cells (cMPCs) from human iPSCs by mimicking key signaling pathways during craniofacial embryonic myogenesis. At each different stage, human iPSC-derived cMPCs mirror the transcription factor expression profiles seen in their counterparts during embryo development. After the bi-potential cranial pharyngeal mesoderm is established, cells are committed to cranial skeletal muscle lineages with inhibition of cardiac lineages and are purified by flow cytometry. Furthermore, identities of iPSC-derived cMPCs are verified with human primary myoblasts from craniofacial muscles using RNA sequencing. These data suggest that our new method could provide not only in vitro research tools to study muscle specificity of muscular dystrophy but also abundant and reliable cellular resources for tissue engineering to support craniofacial reconstruction surgery.
机译:颅面骨骼肌由大约60个肌肉组成,具有临界功能,包括食物摄取,眼球运动和面部表情。虽然颅面肌肉具有显着不同的胚胎来源,但使用人诱导的多能干细胞(IPSC)的大多数电流骨骼肌分化方案基于SoMite衍生的肢体和躯干肌肉发育途径。由于患有Craniofacial肌肉的缺乏术语是IPSC衍生的肌肉场中的显着差距,因此我们开发了一种优化的方案,通过模拟颅面胚肌发育期间模仿关键信号传导途径来产生来自人IPSC的颅面肌原素前体细胞(CMPC)。在每个不同的阶段,人类IPSC衍生的CMPC在胚胎发育期间镜像在其对应物中看到的转录因子表达谱。在建立双潜能的颅骨Mesoderm之后,细胞致力于抑制心脏谱系的颅骨骨骼肌谱系,并通过流式细胞术纯化。此外,使用RNA测序,用来自颅面肌肉的人伯卵细胞验证IPSC衍生的CMPC的身份。这些数据表明,我们的新方法不仅可以提供体外研究工具,以研究肌营养不良的肌肉特异性,而且可以为组织工程提供丰富和可靠的蜂窝资源,以支持颅面重建手术。

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