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Mixed muscle protein synthesis and breakdown after resistance exercise in humans

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TLDR
It is concluded that exercise resulted in an increase in muscle net protein balance that persisted for up to 48 h after the exercise bout and was unrelated to the type of muscle contraction performed.
Abstract
Mixed muscle protein fractional synthesis rate (FSR) and fractional breakdown rate (FBR) were examined after an isolated bout of either concentric or eccentric resistance exercise. Subjects were eight untrained volunteers (4 males, 4 females). Mixed muscle protein FSR and FBR were determined using primed constant infusions of [2H5]phenylalanine and 15N-phenylalanine, respectively. Subjects were studied in the fasted state on four occasions: at rest and 3, 24, and 48 h after a resistance exercise bout. Exercise was eight sets of eight concentric or eccentric repetitions at 80% of each subject's concentric 1 repetition maximum. There was no significant difference between contraction types for either FSR, FBR, or net balance (FSR minus FBR). Exercise resulted in significant increases above rest in muscle FSR at all times: 3 h = 112%, 24 h = 65%, 48 h = 34% (P < 0.01). Muscle FBR was also increased by exercise at 3 h (31%; P < 0.05) and 24 h (18%; P < 0.05) postexercise but returned to resting levels by 48 h. Muscle net balance was significantly increased after exercise at all time points [(in %/h) rest = -0.0573 +/- 0.003 (SE), 3 h = -0.0298 +/- 0.003, 24 h = -0.0413 +/- 0.004, and 48 h = -0.0440 +/- 0.005], and was significantly different from zero at all time points (P < 0.05). There was also a significant correlation between FSR and FBR (r = 0.88, P < 0.001). We conclude that exercise resulted in an increase in muscle net protein balance that persisted for up to 48 h after the exercise bout and was unrelated to the type of muscle contraction performed.

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References
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Journal ArticleDOI

Increased rates of muscle protein turnover and amino acid transport after resistance exercise in humans

TL;DR: Results indicate that, during recovery after resistance exercise, muscle protein turnover is increased because of an acceleration of synthesis and degradation and a postexercise acceleration of amino acid transport may contribute to the relatively greater stimulation of protein synthesis.
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Structural and mechanical basis of exercise-induced muscle injury.

TL;DR: It is hypothesized that eccentric contraction-induced damage occurs early in the treatment period, i.e., within the first few minutes, and the structural abnormalities predominate in the fast-twitch glycolytic fibers.
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Changes in human muscle protein synthesis after resistance exercise

TL;DR: The results indicate that a single bout of heavy resistance exercise can increase biceps MPS for up to 24 h postexercise, and these increases appear to be due to changes in posttranscriptional events.
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Acute effects of resistance exercise on muscle protein synthesis rate in young and elderly men and women

TL;DR: It is demonstrated that, during the initial phase of a resistance exercise training program, a marked increase in quadriceps muscle protein synthesis rate occurs in elderly and young adults without an increase in the rate of whole body protein breakdown.
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