Comparative analysis of NMR and NIRS measurements of intracellular P O 2 in human skeletal muscle

Author:

Tran Tuan-Khanh1,Sailasuta Napapon2,Kreutzer Ulrike1,Hurd Ralph2,Chung Youngran1,Mole Paul3,Kuno Shinya4,Jue Thomas1

Affiliation:

1. Department of Biological Chemistry, School of Medicine, and

2. General Electric Medical Systems, Fremont, California 94539; and

3. Department of Exercise Science, University of California, Davis, 5616;

4. University of Tsukuba, Tsukuba-shi, Ibiraki-ken, 305-8573 Japan

Abstract

1H NMR has detected both the deoxygenated proximal histidyl NδH signals of myoglobin (deoxyMb) and deoxygenated Hb (deoxyHb) from human gastrocnemius muscle. Exercising the muscle or pressure cuffing the leg to reduce blood flow elicits the appearance of the deoxyMb signal, which increases in intensity as cellular[Formula: see text] decreases. The deoxyMb signal is detected with a 45-s time resolution and reaches a steady-state level within 5 min of pressure cuffing. Its desaturation kinetics match those observed in the near-infrared spectroscopy (NIRS) experiments, implying that the NIRS signals are actually monitoring Mb desaturation. That interpretation is consistent with the signal intensity and desaturation of the deoxyHb proximal histidyl NδH signal from the β-subunit at 73 parts per million. The experimental results establish the feasibility and methodology to observe the deoxyMb and Hb signals in skeletal muscle, help clarify the origin of the NIRS signal, and set a stage for continuing study of O2regulation in skeletal muscle.

Publisher

American Physiological Society

Subject

Physiology (medical),Physiology

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