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首页> 外文期刊>Stem Cell Reports >Contractile Work Contributes to Maturation of Energy Metabolism in hiPSC-Derived Cardiomyocytes
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Contractile Work Contributes to Maturation of Energy Metabolism in hiPSC-Derived Cardiomyocytes

机译:收缩工作有助于hiPSC衍生的心肌细胞能量代谢的成熟。

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Summary Energy metabolism is a key aspect of cardiomyocyte biology. Human induced pluripotent stem cell-derived cardiomyocytes (hiPSC-CMs) are a promising tool for biomedical application, but they are immature and have not undergone metabolic maturation related to early postnatal development. To assess whether cultivation of hiPSC-CMs in 3D engineered heart tissue format leads to maturation of energy metabolism, we analyzed the mitochondrial and metabolic state of 3D hiPSC-CMs and compared it with 2D culture. 3D hiPSC-CMs showed increased mitochondrial mass, DNA content, and protein abundance (proteome). While hiPSC-CMs exhibited the principal ability to use glucose, lactate, and fatty acids as energy substrates irrespective of culture format, hiPSC-CMs in 3D performed more oxidation of glucose, lactate, and fatty acid and less anaerobic glycolysis. The increase in mitochondrial mass and DNA in 3D was diminished by pharmacological reduction of contractile force. In conclusion, contractile work contributes to metabolic maturation of hiPSC-CMs.
机译:小结能量代谢是心肌生物学的关键方面。人类诱导的多能干细胞衍生的心肌细胞(hiPSC-CM)是生物医学应用中有希望的工具,但它们不成熟,并且尚未经历与出生后早期发育相关的代谢成熟。为了评估以3D工程心脏组织形式培养hiPSC-CM是否会导致能量代谢成熟,我们分析了3D hiPSC-CM的线粒体和代谢状态,并将其与2D培养进行了比较。 3D hiPSC-CM显示线粒体质量,DNA含量和蛋白质丰度(蛋白质组)增加。尽管hiPSC-CMs展示出使用葡萄糖,乳酸和脂肪酸作为能量底物的主要能力,而与培养形式无关,但hiPSC-CMs在3D模式下表现出更多的葡萄糖,乳酸和脂肪酸氧化作用以及更少的厌氧糖酵解作用。药理学上降低了收缩力,从而减少了3D中线粒体质量和DNA的增加。总之,收缩工作有助于hiPSC-CMs的代谢成熟。

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