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Skeletal muscle alkaline Pi pool is decreased in overweight-to-obese sedentary subjects and relates to mitochondrial capacity and phosphodiester content

机译:骨骼肌碱性PI池减少超过肥胖的久坐性受试者,并涉及线粒体能力和磷酸二酯含量

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Defects in skeletal muscle energy metabolism are indicative of systemic disorders such as obesity or type 2 diabetes. Phosphorus magnetic resonance spectroscopy ((31)P-MRS), in particularly dynamic (31)P-MRS, provides a powerful tool for the non-invasive investigation of muscular oxidative metabolism. The increase in spectral and temporal resolution of (31)P-MRS at ultra high fields (i.e., 7T) uncovers new potential for previously implemented techniques, e.g., saturation transfer (ST) or highly resolved static spectra. In this study, we aimed to investigate the differences in muscle metabolism between overweight-to-obese sedentary (Ob/Sed) and lean active (L/Ac) individuals through dynamic, static, and ST (31)P-MRS at 7T. In addition, as the dynamic (31)P-MRS requires a complex setup and patient exercise, our aim was to identify an alternative technique that might provide a biomarker of oxidative metabolism. The Ob/Sed group exhibited lower mitochondrial capacity, and, in addition, static (31)P-MRS also revealed differences in the Pi-to-ATP exchange flux, the alkaline Pi-pool, and glycero-phosphocholine concentrations between the groups. In addition to these differences, we have identified correlations between dynamically measured oxidative flux and static concentrations of the alkaline Pi-pool and glycero-phosphocholine, suggesting the possibility of using high spectral resolution (31)P-MRS data, acquired at rest, as a marker of oxidative metabolism.
机译:骨骼肌能量代谢中的缺陷表明系统性疾病,如肥胖症或2型糖尿病。磷磁共振光谱((31)p-MRS),特别是动态(31)P-MR,为肌肉氧化代谢的非侵入性调查提供了强大的工具。在超高领域(即,7T)的(31)P-MRS的光谱和时间分辨率的增加揭示了以前实现了先前实现的技术的新电位,例如,饱和转移(ST)或高度分辨的静态光谱。在这项研究中,我们旨在通过动态,静态和ST(31)P-MRS在7T中探讨超重对肥胖的久坐不动(OB / SED)和瘦活性(L / AC)个体之间的肌肉代谢的差异。此外,随着动态(31)P-MRS需要复杂的设置和患者运动,我们的目的是识别可能提供氧化代谢的生物标志物的替代技术。 OB / SED组表现出较低的线粒体容量,此外,静态(31)P-MRS还揭示了基团之间的PI-TO-ATP交换通量,碱性PI-池和甘油 - 磷光络浓度的差异。除了这些差异之外,我们还确定了动态测量的氧化助熔剂和碱性PI-池和甘油 - 磷光啉的静态浓度之间的相关性,表明在休息时获得的高分辨率分辨率(31)P-MRS数据的可能性。氧化代谢的标志物。

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