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Palmitate but Not Oleate Exerts a Negative Effect on Oxygen Utilization in Myoblasts of Patients with the m.3243AG Mutation: A Pilot Study

机译:棕榈酸盐但不油eee对M.3243A G突变患者的肌细胞中的氧气利用产生负面影响:试验研究

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摘要

It is known that exposure to excess saturated fatty acids, especially palmitate, can trigger cellular stress responses interpreted as lipotoxicity. The effect of excessive free fatty acids on oxidative phosphorylation capacity in myoblasts of patients with the m.3243A>G mutation was evaluated with the mitochondrial (Mito) stress test using a Seahorse XF96 analyzer. ß-oxidation, measured with the Seahorse XF96 analyzer, was similar in patients and controls, and reduced in both patients and controls at 40 °C compared to 37 °C. Mito stress test in the absence of fatty acids showed lower values in patients compared to controls. The mitochondrial activity and ATP production rates were significantly reduced in presence of palmitate, but not of oleate in patients, showing a negative effect of excessive palmitate on mitochondrial function in patients. Diabetes mellitus is a frequent symptom in patients with m.3243A>G mutation. It can be speculated that the negative effect of palmitate on mitochondrial function might be related to diacylglycerols (DAG) and ceramides (CER) mediated insulin resistance. This might contribute to the elevated risk for diabetes mellitus in m.3243A>G patients.
机译:已知暴露于过量的饱和脂肪酸,尤其是棕榈酸盐,可以引发被解释为脂毒性的细胞应激反应。使用Seahorse XF96分析仪评估过量的游离脂肪酸对M.3243A> G突变患者肌细胞腺脓性氧化磷酸化能力的影响。用Seahorse XF96分析仪测量的β-氧化在患者和对照中类似,两者患者和40℃的对照减少到37°C。与对照组相比,在没有脂肪酸的情况下,在没有脂肪酸的情况下表现出较低的值。在棕榈酸盐存在下显着降低了线粒体活性和ATP生产率,但患者的油脂不含油脂,显示出过度棕榈酸酯对患者线粒体功能的负面影响。糖尿病患者M3243A> G突变是一种常见的症状。可以推测棕榈酸棕榈酸酯对线粒体功能的负面影响可能与二酰基甘油(DAG)和神经酰胺(CER)介导的胰岛素抗性有关。这可能有助于M.3243A> G患者糖尿病患者的升高风险。

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