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Intracellular oxygen tension limits muscle contraction‐induced change in muscle oxygen consumption under hypoxic conditions during Hb‐free perfusion

Under acute hypoxic conditions, the muscle oxygen uptake (m [Formula: see text] O(2)) during exercise is reduced by the restriction in oxygen‐supplied volume to the mitochondria within the peripheral tissue. This suggests the existence of a factor restricting the m [Formula: see text] O(2) under hyp...

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Autores principales: Takakura, Hisashi, Ojino, Minoru, Jue, Thomas, Yamada, Tatsuya, Furuichi, Yasuro, Hashimoto, Takeshi, Iwase, Satoshi, Masuda, Kazumi
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley and Sons Inc. 2017
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5269414/
https://www.ncbi.nlm.nih.gov/pubmed/28108649
http://dx.doi.org/10.14814/phy2.13112
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author Takakura, Hisashi
Ojino, Minoru
Jue, Thomas
Yamada, Tatsuya
Furuichi, Yasuro
Hashimoto, Takeshi
Iwase, Satoshi
Masuda, Kazumi
author_facet Takakura, Hisashi
Ojino, Minoru
Jue, Thomas
Yamada, Tatsuya
Furuichi, Yasuro
Hashimoto, Takeshi
Iwase, Satoshi
Masuda, Kazumi
author_sort Takakura, Hisashi
collection PubMed
description Under acute hypoxic conditions, the muscle oxygen uptake (m [Formula: see text] O(2)) during exercise is reduced by the restriction in oxygen‐supplied volume to the mitochondria within the peripheral tissue. This suggests the existence of a factor restricting the m [Formula: see text] O(2) under hypoxic conditions at the peripheral tissue level. Therefore, this study set out to test the hypothesis that the restriction in m [Formula: see text] O(2) is regulated by the net decrease in intracellular oxygen tension equilibrated with myoglobin oxygen saturation (∆P(mb)O(2)) during muscle contraction under hypoxic conditions. The hindlimb of male Wistar rats (8 weeks old, n = 5) was perfused with hemoglobin‐free Krebs–Henseleit buffer equilibrated with three different fractions of O(2) gas: 95.0%O(2), 71.3%O(2), and 47.5%O(2). The deoxygenated myoglobin (Mb) kinetics during muscle contraction were measured under each oxygen condition with a near‐infrared spectroscopy. The ∆[deoxy‐Mb] kinetics were converted to oxygen saturation of myoglobin (S(mb)O(2)), and the P(mb)O(2) was then calculated based on the S(mb)O(2) and the O(2) dissociation curve of the Mb. The S(mb)O(2) and P(mb)O(2) at rest decreased with the decrease in O(2) supply, and the muscle contraction caused a further decrease in S(mb)O(2) and P(mb)O(2) under all O(2) conditions. The net increase in m [Formula: see text] O(2) from the muscle contraction (∆m [Formula: see text] O(2)) gradually decreased as the ∆P(mb)O(2) decreased during muscle contraction. The results of this study suggest that ΔP(mb)O(2) is a key determinant of the Δm [Formula: see text] O(2).
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spelling pubmed-52694142017-02-01 Intracellular oxygen tension limits muscle contraction‐induced change in muscle oxygen consumption under hypoxic conditions during Hb‐free perfusion Takakura, Hisashi Ojino, Minoru Jue, Thomas Yamada, Tatsuya Furuichi, Yasuro Hashimoto, Takeshi Iwase, Satoshi Masuda, Kazumi Physiol Rep Original Research Under acute hypoxic conditions, the muscle oxygen uptake (m [Formula: see text] O(2)) during exercise is reduced by the restriction in oxygen‐supplied volume to the mitochondria within the peripheral tissue. This suggests the existence of a factor restricting the m [Formula: see text] O(2) under hypoxic conditions at the peripheral tissue level. Therefore, this study set out to test the hypothesis that the restriction in m [Formula: see text] O(2) is regulated by the net decrease in intracellular oxygen tension equilibrated with myoglobin oxygen saturation (∆P(mb)O(2)) during muscle contraction under hypoxic conditions. The hindlimb of male Wistar rats (8 weeks old, n = 5) was perfused with hemoglobin‐free Krebs–Henseleit buffer equilibrated with three different fractions of O(2) gas: 95.0%O(2), 71.3%O(2), and 47.5%O(2). The deoxygenated myoglobin (Mb) kinetics during muscle contraction were measured under each oxygen condition with a near‐infrared spectroscopy. The ∆[deoxy‐Mb] kinetics were converted to oxygen saturation of myoglobin (S(mb)O(2)), and the P(mb)O(2) was then calculated based on the S(mb)O(2) and the O(2) dissociation curve of the Mb. The S(mb)O(2) and P(mb)O(2) at rest decreased with the decrease in O(2) supply, and the muscle contraction caused a further decrease in S(mb)O(2) and P(mb)O(2) under all O(2) conditions. The net increase in m [Formula: see text] O(2) from the muscle contraction (∆m [Formula: see text] O(2)) gradually decreased as the ∆P(mb)O(2) decreased during muscle contraction. The results of this study suggest that ΔP(mb)O(2) is a key determinant of the Δm [Formula: see text] O(2). John Wiley and Sons Inc. 2017-01-20 /pmc/articles/PMC5269414/ /pubmed/28108649 http://dx.doi.org/10.14814/phy2.13112 Text en © 2017 The Authors. Physiological Reports published by Wiley Periodicals, Inc. on behalf of The Physiological Society and the American Physiological Society. This is an open access article under the terms of the Creative Commons Attribution (http://creativecommons.org/licenses/by/4.0/) License, which permits use, distribution and reproduction in any medium, provided the original work is properly cited.
spellingShingle Original Research
Takakura, Hisashi
Ojino, Minoru
Jue, Thomas
Yamada, Tatsuya
Furuichi, Yasuro
Hashimoto, Takeshi
Iwase, Satoshi
Masuda, Kazumi
Intracellular oxygen tension limits muscle contraction‐induced change in muscle oxygen consumption under hypoxic conditions during Hb‐free perfusion
title Intracellular oxygen tension limits muscle contraction‐induced change in muscle oxygen consumption under hypoxic conditions during Hb‐free perfusion
title_full Intracellular oxygen tension limits muscle contraction‐induced change in muscle oxygen consumption under hypoxic conditions during Hb‐free perfusion
title_fullStr Intracellular oxygen tension limits muscle contraction‐induced change in muscle oxygen consumption under hypoxic conditions during Hb‐free perfusion
title_full_unstemmed Intracellular oxygen tension limits muscle contraction‐induced change in muscle oxygen consumption under hypoxic conditions during Hb‐free perfusion
title_short Intracellular oxygen tension limits muscle contraction‐induced change in muscle oxygen consumption under hypoxic conditions during Hb‐free perfusion
title_sort intracellular oxygen tension limits muscle contraction‐induced change in muscle oxygen consumption under hypoxic conditions during hb‐free perfusion
topic Original Research
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5269414/
https://www.ncbi.nlm.nih.gov/pubmed/28108649
http://dx.doi.org/10.14814/phy2.13112
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