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Derivation and Characterization of Immortalized Human Muscle Satellite Cell Clones from Muscular Dystrophy Patients and Healthy Individuals

机译:肌营养不良患者和健康个体中永生化人肌卫星细胞克隆的衍生和表征

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摘要

In Duchenne muscular dystrophy (DMD) patients, absence of dystrophin causes muscle wasting by impacting both the myofiber integrity and the properties of muscle stem cells (MuSCs). Investigation of DMD encompasses the use of MuSCs issued from human skeletal muscle. However, DMD-derived MuSC usage is restricted by the limited number of divisions that human MuSCs can undertake in vitro before losing their myogenic characteristics and by the scarcity of human material available from DMD muscle. To overcome these limitations, immortalization of MuSCs appears as a strategy. Here, we used CDK4/hTERT expression in primary MuSCs and we derived MuSC clones from a series of clinically and genetically characterized patients, including eight DMD patients with various mutations, four congenital muscular dystrophies and three age-matched control muscles. Immortalized cultures were sorted into single cells and expanded as clones into homogeneous populations. Myogenic characteristics and differentiation potential were tested for each clone. Finally, we screened various promoters to identify the preferred gene regulatory unit that should be used to ensure stable expression in the human MuSC clones. The 38 clonal immortalized myogenic cell clones provide a large collection of controls and DMD clones with various genetic defects and are available to the academic community.
机译:在Duchenne肌营养不良症(DMD)患者中,缺乏患病素通过影响MyoFiber完整性和肌肉干细胞(Muscs)的性质而导致肌肉浪费。 DMD的调查包括使用从人骨骼肌发出的MUSC。然而,DMD衍生的MOSC使用受到人类Muscs可以在体外进行的有限数量的限制,并且在失去肌原特征之前和从DMD肌肉获得的人体材料的稀缺性。为了克服这些限制,MOSC的永生化表现为一种策略。在这里,我们在原发性Muscs中使用CDK4 / HTERT表达,我们从一系列临床和遗传特征患者中衍生出MSC克隆,其中包括八个患有各种突变的DMD患者,四个先天性肌营养不良和三个常见的对照肌肉。将永生化培养物分为单细胞,并作为克隆膨胀成均匀群体。对每个克隆测试肌原特征和分化潜力。最后,我们筛选了各种启动子来鉴定应使用的优选基因调节单元,以确保人们克隆中稳定的表达。 38个克隆永生化的肌原瘤细胞克隆提供了大量的对照和DMD克隆,具有各种遗传缺陷,可供学术界获得。

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