Department of Endocrinology, Odense University Hospital, DK-5000 Odense, Denmark.
Biochem Biophys Res Commun. 2011 Jan 28;404(4):1023-8. doi: 10.1016/j.bbrc.2010.12.102. Epub 2010 Dec 25.
Exercise increases while physical inactivity decrease mitochondrial content and oxidative capacity of skeletal muscles in vivo. It is unknown whether mitochondrial mass and substrate oxidation are related in non-contracting skeletal muscle. Mitochondrial mass, ATP, ADP, AMP, glucose and lipid oxidation (complete and incomplete) were determined in non-contracting myotubes established from 10 lean, 10 obese and 10 subjects with type 2 diabetes precultured under normophysiological conditions. ATP, ADP, AMP, mitochondrial mass and energy charge were not different between groups. In diabetic myotubes, basal glucose oxidation and incomplete lipid oxidation were significantly increased while complete lipid oxidation was lower. Mitochondrial mass was not correlated to glucose oxidation or incomplete lipid oxidation in human myotubes but inversely correlated to complete lipid oxidation. Thus within a stable energetic background, an increased mitochondrial mass in human myotubes was not positive correlated to an increased substrate oxidation as expected from skeletal muscles in vivo but surprisingly with a reduced complete lipid oxidation.
运动增加而体力活动减少体内骨骼肌的线粒体含量和氧化能力。线粒体质量和底物氧化在非收缩骨骼肌中是否相关尚不清楚。在正常生理条件下预培养的 10 名瘦人、10 名肥胖者和 10 名 2 型糖尿病患者的非收缩肌管中,确定了线粒体质量、ATP、ADP、AMP、葡萄糖和脂质氧化(完全和不完全)。各组间 ATP、ADP、AMP、线粒体质量和能量电荷无差异。在糖尿病肌管中,基础葡萄糖氧化和不完全脂质氧化显著增加,而完全脂质氧化降低。线粒体质量与人类肌管中的葡萄糖氧化或不完全脂质氧化无关,但与完全脂质氧化呈负相关。因此,在稳定的能量背景下,人类肌管中线粒体质量的增加与预期的体内骨骼肌中增加的底物氧化无关,但令人惊讶的是与减少的完全脂质氧化有关。