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人体线粒体偶联:小腿运动开始时P/O2比值的评估。

Mitochondrial coupling in humans: assessment of the P/O2 ratio at the onset of calf exercise.

作者信息

Cettolo V, Cautero M, Tam E, Francescato M P

机构信息

Dipartimento di Scienze e Tecnologie Biomediche, M.A.T.I. Centre of Excellence, Università degli Studi di Udine, P.le Kolbe 4, 33100 Udine, Italy.

出版信息

Eur J Appl Physiol. 2007 Apr;99(6):593-604. doi: 10.1007/s00421-006-0382-7. Epub 2007 Jan 6.

Abstract

Coupling of oxidation to ATP synthesis (P/O2 ratio) is a critical step in the conversion of carbon substrates to fuel (ATP) for cellular activity. The ability to quantitatively assess mitochondrial coupling in vivo can be a valuable tool for basic research and clinical purposes. At the onset of a square wave moderate exercise, the ratio between absolute amount of phosphocreatine split and O2 deficit (corrected for the amount of O2 released from the body O2 stores and in the absence of lactate production), is the mirror image of the P/O2 ratio. To calculate this value, cardiac output (Q), whole body O2 uptake (VO2), O2 deficit (O2(def)) and high-energy phosphates concentration (by 31P-NMR spectroscopy) in the calf muscles were measured on nine healthy volunteers at rest and during moderate intensity plantar flexion exercise (3.44 +/- 0.73 W per unit active muscle mass). Q and VO2 increased (from 4.68 +/- 1.56 to 5.83 +/- 1.59 l min(-1) and from 0.28 +/- 0.05 to 0.48 +/- 0.09 l min(-1), respectively), while phosphocreatine (PCr) concentration decreased significantly (22 +/- 6%) from rest to steady-state exercise. For each volunteer, "gross" O2(def) was corrected for the individual changes in the venous blood O2 stores (representing 49.9 +/- 9.5% of the gross O2(def)) yielding the "net" O2(def). Resting PCr concentration was estimated from the appropriate spectroscopy data. The so calculated P/O2 ratio amounted on average to 4.24 +/- 0.13 and was, in all nine subjects, very close to the literature values obtained directly on intact skeletal muscle. This unfolds the prospect of a non-invasive tool to quantitatively study mitochondrial coupling in vivo.

摘要

氧化与ATP合成的偶联(P/O2比值)是碳底物转化为细胞活动所需燃料(ATP)的关键步骤。体内定量评估线粒体偶联的能力对于基础研究和临床应用而言可能是一项有价值的工具。在方波中等强度运动开始时,磷酸肌酸分解的绝对量与氧亏(校正了从体内氧储备释放的氧量且无乳酸生成)之间的比值,是P/O2比值的镜像。为计算该值,对9名健康志愿者在静息状态和中等强度跖屈运动(每单位活动肌肉质量为3.44±0.73瓦)期间测量了心输出量(Q)、全身氧摄取量(VO2)、氧亏(O2(def))以及小腿肌肉中的高能磷酸盐浓度(通过31P-NMR光谱法)。Q和VO2增加(分别从4.68±1.56升至5.83±1.59升/分钟和从0.28±0.05升至0.48±0.09升/分钟),而磷酸肌酸(PCr)浓度从静息状态到稳态运动显著下降(22±6%)。对于每位志愿者,“总”氧亏校正了静脉血氧储备的个体变化(占总氧亏的49.9±9.5%),得出“净”氧亏。静息PCr浓度根据适当的光谱数据估算。如此计算出的P/O2比值平均为4.24±0.13,并且在所有9名受试者中,都非常接近直接在完整骨骼肌上获得的文献值。这展现了一种用于体内定量研究线粒体偶联的非侵入性工具的前景。

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