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Postexercise net protein synthesis in human muscle from orally administered amino acids

American Journal of Physiology-Endocrinology and Metabolism · 1999 · Vol. 276(4) · pp. E628–E634
Kevin D. TiptonArny A. FerrandoStuart M. PhillipsDavid J. DoyleRobert R. Wolfe

Abstract

We examined the response of net muscle protein synthesis to ingestion of amino acids after a bout of resistance exercise. A primed, constant infusion of L-[ring-2H5]phenylalanine was used to measure net muscle protein balance in three male and three female volunteers on three occasions. Subjects consumed in random order 1 liter of 1) a mixed amino acid (40 g) solution (MAA), 2) an essential amino acid (40 g) solution (EAA), and 3) a placebo solution (PLA). Arterial amino acid concentrations increased approximately 150-640% above baseline during ingestion of MAA and EAA. Net muscle protein balance was significantly increased from negative during PLA ingestion (-50 +/- 23 nmol. min-1. 100 ml leg volume-1) to positive during MAA ingestion (17 +/- 13 nmol. min-1. 100 ml leg volume-1) and EAA (29 +/- 14 nmol. min-1. 100 ml leg volume-1; P < 0.05). Because net balance was similar for MAA and EAA, it does not appear necessary to include nonessential amino acids in a formulation designed to elicit an anabolic response from muscle after exercise. We concluded that ingestion of oral essential amino acids results in a change from net muscle protein degradation to net muscle protein synthesis after heavy resistance exercise in humans similar to that seen when the amino acids were infused.

Muscle metabolism and nutritionDiet and metabolism studiesMetabolism and Genetic DisordersAmino acidMuscle proteinPharmacologyChemistryMedicineInternal medicineBiochemistrySkeletal muscle

MeSH terms

Administration, OralAdultAmino AcidsAmino Acids, EssentialDeuteriumPhysical ExertionFemaleHumansLeucineLysineMaleMuscle ProteinsPhenylalanineMuscle, Skeletal
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References
Mixed muscle protein synthesis and breakdown after resistance exercise in humans
American Journal of Physiology-Endocrinology and Metabolism · 1997 · 1,129 citations
An abundant supply of amino acids enhances the metabolic effect of exercise on muscle protein
American Journal of Physiology-Endocrinology and Metabolism · 1997 · 821 citations
Prolonged bed rest decreases skeletal muscle and whole body protein synthesis
American Journal of Physiology-Endocrinology and Metabolism · 1996 · 490 citations
Increased rates of muscle protein turnover and amino acid transport after resistance exercise in humans
American Journal of Physiology-Endocrinology and Metabolism · 1995 · 711 citations
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