Muscular and Systemic Correlates of Resistance Training-Induced Muscle Hypertrophy
Мышечные и системные корреляты гипертрофии мышц, вызванной силовыми тренировками
2013-10-09
SCID: 54.1/pjgh9vcc
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androgen receptorinterleukin-6muscle hypertrophyp70S6K phosphorylationresistance training
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Abstract (AI)
PURPOSE: To determine relationships between post-exercise changes in systemic [testosterone, growth hormone (GH), insulin like grow factor 1 (IGF-1) and interleukin 6 (IL-6)], or intramuscular [skeletal muscle androgen receptor (AR) protein content and p70S6K phosphorylation status] factors in a moderately-sized cohort of young men exhibiting divergent resistance training-mediated muscle hypertrophy. METHODS: Twenty three adult males completed 4 sessions•wk⁻¹ of resistance training for 16 wk. Muscle biopsies were obtained before and after the training period and acutely 1 and 5 h after the first training session. Serum hormones and cytokines were measured immediately, 15, 30 and 60 minutes following the first and last training sessions of the study. RESULTS: Mean fiber area increased by 20% (range: -7 to 80%; P<0.001). Protein content of the AR was unchanged with training (fold change = 1.17 ± 0.61; P=0.19); however, there was a significant correlation between the changes in AR content and fiber area (r=0.60, P=0.023). Phosphorylation of p70S6K was elevated 5 hours following exercise, which was correlated with gains in mean fiber area (r=0.54, P=0.007). There was no relationship between the magnitude of the pre- or post-training exercise-induced changes in free testosterone, GH, or IGF-1 concentration and muscle fiber hypertrophy; however, the magnitude of the post exercise IL-6 response was correlated with muscle hypertrophy (r=0.48, P=0.019). CONCLUSION: Post-exercise increases in circulating hormones are not related to hypertrophy following training. Exercise-induced changes in IL-6 correlated with hypertrophy, but the mechanism for the role of IL-6 in hypertrophy is not known. Acute increases, in p70S6K phosphorylation and changes in muscle AR protein content correlated with muscle hypertrophy implicating intramuscular rather than systemic processes in mediating hypertrophy.
Key Findings
1
Changes in post-exercise IL-6 responses correlated with hypertrophy, whereas exercise-induced changes in free testosterone, growth hormone, and IGF-1 did not.
2
Exercise-induced p70S6K phosphorylation measured five hours after training correlated with subsequent gains in mean muscle fiber area.
3
Sixteen weeks of resistance training increased mean muscle fiber area by 20%, with substantial individual variability ranging from -7% to 80%.
4
The findings implicate intramuscular signaling processes, including androgen receptor content and p70S6K activation, rather than systemic hormone elevations as correlates of hypertrophy.
5
Training-induced changes in androgen receptor protein content correlated with muscle fiber hypertrophy, despite no significant overall change in receptor content.
Research Object
Young men undergoing 16 weeks of resistance training
Research Subject
Relationships of systemic hormonal and cytokine responses and intramuscular androgen receptor content and p70S6K phosphorylation with resistance training-induced skeletal muscle fiber hypertrophy
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2013-10-09
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