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Remodelling of oxidative energy metabolism by galactose improves glucose handling and metabolic switching in human skeletal muscle cells

机译:半乳糖对氧化能代谢的重塑可改善人体骨骼肌细胞的葡萄糖处理和代谢转换

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摘要

Cultured human myotubes have a low mitochondrial oxidative potential. This study aims to remodel energy metabolism in myotubes by replacing glucose with galactose during growth and differentiation to ultimately examine the consequences for fatty acid and glucose metabolism. Exposure to galactose showed an increased [14C]oleic acid oxidation, whereas cellular uptake of oleic acid uptake was unchanged. On the other hand, both cellular uptake and oxidation of [14C]glucose increased in myotubes exposed to galactose. In the presence of the mitochondrial uncoupler carbonylcyanide p-trifluormethoxy-phenylhydrazone (FCCP) the reserve capacity for glucose oxidation was increased in cells grown with galactose. Staining and live imaging of the cells showed that myotubes exposed to galactose had a significant increase in mitochondrial and neutral lipid content. Suppressibility of fatty acid oxidation by acute addition of glucose was increased compared to cells grown in presence of glucose. In summary, we show that cells grown in galactose were more oxidative, had increased oxidative capacity and higher mitochondrial content, and showed an increased glucose handling. Interestingly, cells exposed to galactose showed an increased suppressibility of fatty acid metabolism. Thus, galactose improved glucose metabolism and metabolic switching of myotubes, representing a cell model that may be valuable for metabolic studies related to insulin resistance and disorders involving mitochondrial impairments.
机译:培养的人肌管的线粒体氧化电位低。这项研究旨在通过在生长和分化过程中用半乳糖替代葡萄糖来重塑肌管中的能量代谢,从而最终检查脂肪酸和葡萄糖代谢的后果。暴露于半乳糖显示[14C]油酸氧化增加,而细胞对油酸的吸收未发生变化。另一方面,在暴露于半乳糖的肌管中,[14C]葡萄糖的细胞摄取和氧化均增加。在线粒体解偶联剂羰基氰化物对-三氟甲氧基-苯基hydr(FCCP)的存在下,半乳糖生长的细胞中葡萄糖氧化的储备能力增加。细胞染色和实时成像显示,暴露于半乳糖的肌管线粒体和中性脂质含量显着增加。与在葡萄糖存在下生长的细胞相比,通过急性添加葡萄糖可以提高脂肪酸氧化的抑制性。总之,我们显示在半乳糖中生长的细胞更具氧化性,具有增加的氧化能力和更高的线粒体含量,并显示出增加的葡萄糖处理能力。有趣的是,暴露于半乳糖的细胞显示出增加的脂肪酸代谢抑制性。因此,半乳糖改善了葡萄糖代谢和肌管的代谢转换,代表了一种细胞模型,对于与胰岛素抵抗和涉及线粒体损伤的疾病有关的代谢研究可能是有价值的。

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