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A muscle fatigue-like contractile decline was recapitulated using skeletal myotubes from Duchenne muscular dystrophy patient-derived iPSCs

机译:使用来自Duchenne肌营养不良患者衍生的IPSCS的骨骼肌肌肉肌肉肌肉肌肉疲劳的疲劳性疲劳下降

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摘要

Duchenne muscular dystrophy (DMD) is a muscle degenerating disease caused by dystrophin deficiency, for which therapeutic options are limited. To facilitate drug development, it is desirable to develop in vitro disease models that enable the evaluation of DMD declines in contractile performance. Here, we show MYOD1-induced differentiation of hiPSCs into functional skeletal myotubes in vitro with collagen gel and electrical field stimulation (EFS). Long-term EFS training (0.5 Hz, 20 V, 2 ms, continuous for 2 weeks) mimicking muscle overuse recapitulates declines in contractile performance in dystrophic myotubes. A screening of clinically relevant drugs using this model detects three compounds that ameliorate this decline. Furthermore, we validate the feasibility of adapting the model to a 96-well culture system using optogenetic technology for large-scale screening. Our results support a disease model using patient-derived iPSCs that allows for the recapitulation of the contractile pathogenesis of DMD and a screening strategy for drug development.
机译:Duchenne肌营养不良(DMD)是一种由营养不良症缺乏引起的肌肉退化疾病,治疗选择有限。为了促进药物开发,希望开发体外疾病模型,使得DMD评估在收缩性能下的下降。在这里,我们将Myod1诱导的HIPSCS分化为具有胶原凝胶和电场刺激(EFS)的体外功能性骨髓肌管。模仿肌肉过度使用的长期EFS培训(0.5Hz,20毫升,2毫秒,连续2周)促进营养不良肌管中的收缩性能下降。使用该模型筛选临床相关药物检测到这种改善这种下降的三种化合物。此外,我们验证了使用对大型筛选的致光学技术将模型适应96孔培养系统的可行性。我们的结果支持使用患者衍生的IPSC的疾病模型,允许允许核糖的分娩发病机制和药物发育的筛选策略。

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