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Multilineage Differentiation for Formation of Innervated Skeletal Muscle Fibers from Healthy and Diseased Human Pluripotent Stem Cells

机译:从健康和患病的人多能干细胞中形成支配的骨骼肌纤维的多系分化。

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摘要

Induced pluripotent stem cells (iPSCs) obtained by reprogramming primary somatic cells have revolutionized the fields of cell biology and disease modeling. However, the number protocols for generating mature muscle fibers with sarcolemmal organization using iPSCs remain limited, and partly mimic the complexity of mature skeletal muscle. We used a novel combination of small molecules added in a precise sequence for the simultaneous codifferentiation of human iPSCs into skeletal muscle cells and motor neurons. We show that the presence of both cell types reduces the production time for millimeter-long multinucleated muscle fibers with sarcolemmal organization. Muscle fiber contractions are visible in 19–21 days, and can be maintained over long period thanks to the production of innervated multinucleated mature skeletal muscle fibers with autonomous cell regeneration of PAX7-positive cells and extracellular matrix synthesis. The sequential addition of specific molecules recapitulates key steps of human peripheral neurogenesis and myogenesis. Furthermore, this organoid-like culture can be used for functional evaluation and drug screening. Our protocol, which is applicable to hiPSCs from healthy individuals, was validated in Duchenne Muscular Dystrophy, Myotonic Dystrophy, Facio-Scapulo-Humeral Dystrophy and type 2A Limb-Girdle Muscular Dystrophy, opening new paths for the exploration of muscle differentiation, disease modeling and drug discovery.
机译:通过对原代体细胞进行重新编程获得的诱导性多能干细胞(iPSC)彻底改变了细胞生物学和疾病建模领域。但是,使用iPSC产生具有肌膜组织的成熟肌纤维的方案仍然有限,并且部分模仿了成熟骨骼肌的复杂性。我们使用以精确序列添加的小分子的新型组合,将人iPSC同时共分化为骨骼肌细胞和运动神经元。我们表明两种细胞类型的存在减少了肌膜组织毫米长的多核肌肉纤维的生产时间。肌肉纤维收缩在19-21天可见,并且由于产生神经支化的多核成熟骨骼肌纤维以及PAX7阳性细胞的自主细胞再生和细胞外基质合成,因此可以长期维持。特定分子的顺序添加概括了人类外周神经发生和肌发生的关键步骤。此外,这种类器官的培养物可用于功能评估和药物筛选。我们的方案适用于健康个体的hiPSC,已在杜兴氏肌营养不良症,强直性肌营养不良症,面肩S肱骨营养不良症和2A型肢带型腰带肌营养不良症中得到验证,为探索肌肉分化,疾病模型和药物发现。

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