Post-absorptive muscle protein turnover affects resistance training hypertrophy
Purpose Acute bouts of resistance exercise and subsequent training alters protein turnover in skeletal muscle. The mechanisms responsible for the changes in basal post-absorptive protein turnover and its impact on muscle hypertrophy following resistance exercise training are unknown. Our goal was to...
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Veröffentlicht in: | European journal of applied physiology 2017-05, Vol.117 (5), p.853-866 |
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Format: | Artikel |
Sprache: | eng |
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Zusammenfassung: | Purpose
Acute bouts of resistance exercise and subsequent training alters protein turnover in skeletal muscle. The mechanisms responsible for the changes in basal post-absorptive protein turnover and its impact on muscle hypertrophy following resistance exercise training are unknown. Our goal was to determine whether post-absorptive muscle protein turnover following 12 weeks of resistance exercise training (RET) plays a role in muscle hypertrophy. In addition, we were interested in determining potential molecular mechanisms responsible for altering post-training muscle protein turnover.
Methods
Healthy young men (
n
= 31) participated in supervised whole body progressive RET at 60–80% 1 repetition maximum (1-RM), 3 days/week for 3 months. Pre- and post-training
vastus lateralis
muscle biopsies and blood samples taken during an infusion of
13
C
6
and
15
N phenylalanine and were used to assess skeletal muscle protein turnover in the post-absorptive state. Lean body mass (LBM), muscle strength (determined by dynamometry),
vastus lateralis
muscle thickness (MT), myofiber type-specific cross-sectional area (CSA), and mRNA were assessed pre- and post-RET.
Results
RET increased strength (12–40%), LBM (~5%), MT (~15%) and myofiber CSA (~20%) (
p
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ISSN: | 1439-6319 1439-6327 |
DOI: | 10.1007/s00421-017-3566-4 |