Literature DB >> 17234801

Reduced efficiency, but increased fat oxidation, in mitochondria from human skeletal muscle after 24-h ultraendurance exercise.

Maria Fernström1, Linda Bakkman, Michail Tonkonogi, Irina G Shabalina, Zinaida Rozhdestvenskaya, C Mikael Mattsson, Jonas K Enqvist, Björn Ekblom, Kent Sahlin.   

Abstract

The hypothesis that ultraendurance exercise influences muscle mitochondrial function has been investigated. Athletes in ultraendurance performance performed running, kayaking, and cycling at 60% of their peak O(2) consumption for 24 h. Muscle biopsies were taken preexercise (Pre-Ex), postexercise (Post-Ex), and after 28 h of recovery (Rec). Respiration was analyzed in isolated mitochondria during state 3 (coupled to ATP synthesis) and state 4 (noncoupled respiration), with fatty acids alone [palmitoyl carnitine (PC)] or together with pyruvate (Pyr). Electron transport chain activity was measured with NADH in permeabilized mitochondria. State 3 respiration with PC increased Post-Ex by 39 and 41% (P < 0.05) when related to mitochondrial protein and to electron transport chain activity, respectively. State 3 respiration with Pyr was not changed (P > 0.05). State 4 respiration with PC increased Post-Ex but was lower than Pre-Ex at Rec (P < 0.05 vs. Pre-Ex). Mitochondrial efficiency [amount of added ADP divided by oxygen consumed during state 3 (P/O ratio)] decreased Post-Ex by 9 and 6% (P < 0.05) with PC and PC + Pyr, respectively. P/O ratio remained reduced at Rec. Muscle uncoupling protein 3, measured with Western blotting, was not changed Post-Ex but tended to decrease at Rec (P = 0.07 vs. Pre-Ex). In conclusion, extreme endurance exercise decreases mitochondrial efficiency. This will increase oxygen demand and may partly explain the observed elevation in whole body oxygen consumption during standardized exercise (+13%). The increased mitochondrial capacity for PC oxidation indicates plasticity in substrate oxidation at the mitochondrial level, which may be of advantage during prolonged exercise.

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Year:  2007        PMID: 17234801     DOI: 10.1152/japplphysiol.01173.2006

Source DB:  PubMed          Journal:  J Appl Physiol (1985)        ISSN: 0161-7567


  25 in total

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Journal:  J Proteomics       Date:  2009-06-28       Impact factor: 4.044

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Authors:  Linda Bakkman; Maria Fernström; Peter Loogna; Olav Rooyackers; Lena Brandt; Ylva Trolle Lagerros
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4.  Plasma IL-6 concentration during ultra-endurance exercise.

Authors:  Linnea Wallberg; C Mikael Mattsson; Jonas K Enqvist; Björn Ekblom
Journal:  Eur J Appl Physiol       Date:  2010-11-27       Impact factor: 3.078

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Review 7.  Energy metabolism, fuel selection and body weight regulation.

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Journal:  J Appl Physiol (1985)       Date:  2017-09-07

9.  Biomarkers of mitochondrial content in skeletal muscle of healthy young human subjects.

Authors:  Steen Larsen; Joachim Nielsen; Christina Neigaard Hansen; Lars Bo Nielsen; Flemming Wibrand; Nis Stride; Henrik Daa Schroder; Robert Boushel; Jørn Wulff Helge; Flemming Dela; Martin Hey-Mogensen
Journal:  J Physiol       Date:  2012-05-14       Impact factor: 5.182

10.  Adenosine Triphosphate Production of Muscle Mitochondria after Acute Exercise in Lean and Obese Humans.

Authors:  Katon A Kras; Nyssa Hoffman; Lori R Roust; Tonya R Benjamin; Elena A DE Filippis; Christos S Katsanos
Journal:  Med Sci Sports Exerc       Date:  2019-03       Impact factor: 5.411

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