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January 3, 2017View842 citationsOpen Access

International Society of Sports Nutrition Position Stand: protein and exercise

RJRalf JägerCKChad M. KerksickBCBill Campbell

Key Points

  • To provide an evidence-based position stand evaluating protein intake requirements, per-dose timing strategies, and supplementation considerations for healthy exercising individuals.
  • Critically reviewed published literature examining dietary protein intake, amino acid kinetics, and metabolic responses to exercise.
  • Evaluated total daily protein ranges, acute per-serving dosing thresholds, essential amino acid quality, and pre-sleep nutrient timing.
  • Daily protein intakes of 1.4–2.0 g/kg/day build and maintain muscle mass, with intakes >3.0 g/kg/day potentially promoting fat mass reduction in resistance-trained populations.
  • Single protein doses of 0.25 g/kg (or 20–40 g total) containing 700–3000 mg leucine evenly spaced every 3–4 hours optimize muscle protein synthesis.
  • Pre-sleep ingestion of 30–40 g casein protein increases overnight muscle protein synthesis and resting metabolic rate without impairing lipolysis.

Abstract

Position statement The International Society of Sports Nutrition (ISSN) provides an objective and critical review related to the intake of protein for healthy, exercising individuals. Based on the current available literature, the position of the Society is as follows:An acute exercise stimulus, particularly resistance exercise, and protein ingestion both stimulate muscle protein synthesis (MPS) and are synergistic when protein consumption occurs before or after resistance exercise. For building muscle mass and for maintaining muscle mass through a positive muscle protein balance, an overall daily protein intake in the range of 1.4–2.0 g protein/kg body weight/day (g/kg/d) is sufficient for most exercising individuals, a value that falls in line within the Acceptable Macronutrient Distribution Range published by the Institute of Medicine for protein. There is novel evidence that suggests higher protein intakes (>3.0 g/kg/d) may have positive effects on body composition in resistance-trained individuals (i.e., promote loss of fat mass). Recommendations regarding the optimal protein intake per serving for athletes to maximize MPS are mixed and are dependent upon age and recent resistance exercise stimuli. General recommendations are 0.25 g of a high-quality protein per kg of body weight, or an absolute dose of 20–40 g. Acute protein doses should strive to contain 700–3000 mg of leucine and/or a higher relative leucine content, in addition to a balanced array of the essential amino acids (EAAs). These protein doses should ideally be evenly distributed, every 3–4 h, across the day. The optimal time period during which to ingest protein is likely a matter of individual tolerance, since benefits are derived from pre- or post-workout ingestion; however, the anabolic effect of exercise is long-lasting (at least 24 h), but likely diminishes with increasing time post-exercise. While it is possible for physically active individuals to obtain their daily protein requirements through the consumption of whole foods, supplementation is a practical way of ensuring intake of adequate protein quality and quantity, while minimizing caloric intake, particularly for athletes who typically complete high volumes of training. Rapidly digested proteins that contain high proportions of essential amino acids (EAAs) and adequate leucine, are most effective in stimulating MPS. Different types and quality of protein can affect amino acid bioavailability following protein supplementation. Athletes should consider focusing on whole food sources of protein that contain all of the EAAs (i.e., it is the EAAs that are required to stimulate MPS). Endurance athletes should focus on achieving adequate carbohydrate intake to promote optimal performance; the addition of protein may help to offset muscle damage and promote recovery. Pre-sleep casein protein intake (30–40 g) provides increases in overnight MPS and metabolic rate without influencing lipolysis.

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Cite This Study

Jäger et al. (2017) studied this question.

synapsesocial.com/papers/69da0c5c8988aeabbe6865aehttps://doi.org/10.1186/s12970-017-0177-8
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Also Consider

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  1. 1Whey Protein Supplementation Combined with Exercise on Muscle Protein Synthesis and the AKT/mTOR Pathway in Healthy Adults: A Systematic Review and Meta-Analysis2025
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