Temperature dependence of human gastrocnemius pH and high-energy phosphate concentration by noninvasive techniques

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Abstract

It is well established that ADP is an important regulator of the oxidative phosphorylation in the mitochondria. Thus, by means of noninvasive techniques it is demonstrated that the relationship between O2 consumption of the human gastrocnemius at rest and its temperature is likely determined by at least two factors: 1) the modulation of the rate of the chemical reactions imposed by the 'physical' temperature-effect; 2) the influence of temperature-induced ADP concentration changes (~0.83 μM °C-1) on oxidative phosphorylation. ADP was assessed by applying the temperature- corrected Lohmann equilibrium equation. PCr and ATP were found to increase, with decreasing temperature (-0.54 ± 0.05 and -0.17 ± mM °C-1, respectively), while pH varies following the α-stat hypothesis (-0.016 ± 0.001 pH °C-1). These findings should be of value when dealing with muscle physiology in extreme environments or clinical applications of hypothermia. (C) 2000 Wiley-Liss, Inc.

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APA

Binzoni, T., Hiltbrand, E., Terrier, F., Cerretelli, P., & Delpy, D. (2000). Temperature dependence of human gastrocnemius pH and high-energy phosphate concentration by noninvasive techniques. Magnetic Resonance in Medicine, 43(4), 611–614. https://doi.org/10.1002/(SICI)1522-2594(200004)43:4<611::AID-MRM18>3.0.CO;2-I

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