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- W2947053774 abstract "Purpose: Exercise health benefits are partly mediated by exertional changes in several myokines/adipokines. but little is known on individual variability, which is an important question in the context of personalized exercise prescription. This study aimed to compare the acute response of some of these biomarkers to aerobic exercise performed at the intensity corresponding to the maximum fat oxidation rate (FATmax) or the ‘anaerobic’ threshold (AT). Methods: Following a cross-over, counterbalanced design, 14 healthy untrained men (23±1 years) performed a 45-minute exercise bout at their FATmax or AT intensity (been previously determined through incremental exercise tests). The concentration of interleukin (IL)-15, follistatin, myostatin, fibroblast-growth factor (FGF)-21, irisin, resistin and omentin was measured at baseline and 0, 1, 3, 24, 48 and 72 hours post-exercise. Results: AT exercise was performed at a higher intensity (85±8 vs 52±14% of maximal oxygen uptake [VO2max], p0.05). Conclusion: In summary, Iincreasing exercise intensity load (from FATmax to AT) maximizes results in a higher response of the FGF-21, follistatin and omentin response to aerobic exercise, with the subsequent potential cardiometabolic benefits. No intensity effects were, however, observed on the remainder of biomarkers. or on the rate of responsiveness. Future research should address if manipulating other exercise variables (e.g., type, frequency) can promote a higher myokine/adipokine individual responsivenessresponse." @default.
- W2947053774 created "2019-06-07" @default.
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- W2947053774 date "2019-05-29" @default.
- W2947053774 modified "2023-10-06" @default.
- W2947053774 title "Myokine/Adipokine Response to “Aerobic” Exercise: Is It Just a Matter of Exercise Load?" @default.
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- W2947053774 doi "https://doi.org/10.3389/fphys.2019.00691" @default.
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