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Dynamic Support Culture of Murine Skeletal Muscle-Derived Stem Cells Improves Their Cardiogenic Potential In Vitro

机译:小鼠骨骼肌源性干细胞的动态支持培养可提高其体外心源性潜力。

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摘要

Ischemic heart disease is the main cause of death in western countries and its burden is increasing worldwide. It typically involves irreversible degeneration and loss of myocardial tissue leading to poor prognosis and fatal outcome. Autologous cells with the potential to regenerate damaged heart tissue would be an ideal source for cell therapeutic approaches. Here, we compared different methods of conditional culture for increasing the yield and cardiogenic potential of murine skeletal muscle-derived stem cells. A subpopulation of nonadherent cells was isolated from skeletal muscle by preplating and applying cell culture conditions differing in support of cluster formation. In contrast to static culture conditions, dynamic culture with or without previous hanging drop preculture led to significantly increased cluster diameters and the expression of cardiac specific markers on the protein and mRNA level. Whole-cell patch-clamp studies revealed similarities to pacemaker action potentials and responsiveness to cardiac specific pharmacological stimuli. This data indicates that skeletal muscle-derived stem cells are capable of adopting enhanced cardiac muscle cell-like properties by applying specific culture conditions. Choosing this route for the establishment of a sustainable, autologous source of cells for cardiac therapies holds the potential of being clinically more acceptable than transgenic manipulation of cells.
机译:缺血性心脏病是西方国家的主要死亡原因,其负担在全世界范围内正在增加。它通常涉及不可逆的变性和心肌组织的丢失,从而导致不良的预后和致命的后果。具有再生受损心脏组织潜力的自体细胞将是细胞治疗方法的理想来源。在这里,我们比较了条件培养的不同方法,以提高鼠骨骼肌衍生干细胞的产量和心源性潜力。通过预铺板和应用在支持簇形成的支持上不同的细胞培养条件,从骨骼肌中分离出非粘附细胞亚群。与静态培养条件相反,有或没有预先悬滴预培养的动态培养导致簇直径显着增加以及蛋白质和mRNA水平上心脏特异性标志物的表达。全细胞膜片钳研究显示与起搏器动作电位和对心脏特定药理刺激的反应性相似。该数据表明,通过施加特定的培养条件,骨骼肌来源的干细胞能够采用增强的心肌样细胞特性。选择这种方法来建立用于心脏疗法的可持续的自体细胞来源,具有比转基因操作更能被临床接受的潜力。

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