ISSN Sports Nutrition β-hydroxy-β-methylbutyrate (HMB) Position Statement - Guideline Summary - Guideline Central
Summary and Conclusions
Document Overview

Sports Nutrition Position Stand: β-hydroxy-β-methylbutyrate (HMB)

International Society of Sports Nutrition


Publication Date: Nov 21, 2024

Page Last Updated: May 6, 2026



Document Overview

Document Title
Sports Nutrition Position Stand: β-hydroxy-β-methylbutyrate (HMB)
Authoring Society

International Society of Sports Nutrition

Document Publication Date
Nov 21, 2024
Page Last Reviewed/Updated
May 6, 2026
Document Type
Consensus Statement
Country of Publication
Global
Full Text Freely Available
Yes
Full Text Guideline
www.tandfonline.com/doi/full/10.1080/15502783.2024.2434734
Source Citation

Rathmacher JA, Pitchford LM, Stout JR, Townsend JR, Jäger R, Kreider RB, Campbell BI, Kerksick CM, Harty PS, Candow DG, Roberts BM, Arent SM, Kalman DS, Antonio J. International society of sports nutrition position stand: β-hydroxy-β-methylbutyrate (HMB). J Int Soc Sports Nutr. 2025 Dec;22(1):2434734. doi: 10.1080/15502783.2024.2434734. Epub 2024 Dec 19. PMID: 39699070; PMCID: PMC11740297.


Document Scope, Criteria, and Use Cases

Document Objectives

Position Statement: The International Society of Sports Nutrition (ISSN) bases the following position stand on an analysis of the literature regarding the effects of β-Hydroxy-β-Methylbutyrate (HMB). The following 12 points have been approved by the Research Committee of the Society: 1. HMB is a metabolite of the amino acid leucine that is naturally produced in both humans and other animals. Two forms of HMB have been studied: Calcium HMB (HMB-Ca) and a free acid form of HMB (HMB-FA). HMB-FA appears to lead to increased appearance of HMB in the bloodstream when compared to HMB-Ca, though recent results are mixed. 2. The available safety/toxicity data suggest that chronic HMB-Ca and HMB-FA consumption are safe for oral HMB supplementation in humans up to at least one year. 3. There are no negative effects of HMB-Ca and HMB-FA on glucose tolerance and insulin sensitivity in humans. There may be improvements in glucose metabolism in younger adults. 4. The primary mode of action of HMB appears to be through its dual mechanism to enhance muscle protein synthesis and suppress muscle protein breakdown. HMB's activation of mTORC1 is independent of the leucine-sensing pathway (Sestrin2-GATOR2 complex). 5. HMB may help reduce muscle damage and promote muscle recovery, which can promote muscle growth/repair. HMB may also have anti-inflammatory effects, which could contribute to reducing muscle damage and soreness. 6. HMB consumption in close proximity to an exercise bout may be beneficial to increase muscle protein synthesis and attenuate the inflammatory response. HMB can provide a beneficial physiological effect when consumed both acutely and chronically in humans. 7. Daily HMB supplementation (38 mg/kg body weight) in combination with exercise training may improve body composition through increasing lean mass and/or decreasing fat mass with benefits in participants across age, sex, and training status. The most pronounced of these improvements in body composition with HMB have been observed in studies with robust resistance training programs and dietary control. 8. HMB may improve strength and power in untrained individuals, but its performance benefits in trained athletes are mixed and increase with an increase in study duration (>6 weeks). HMB's beneficial effects on athletic performance are thought to be driven by improved recovery. 9. HMB supplementation appears to potentially have a positive impact on aerobic performance, especially in trained athletes. The mechanisms of the effects are unknown. 10. HMB supplementation may be important in a non-exercising sedentary and aging population to improve muscle strength, functionality, and muscle quality. The effects of HMB supplementation with exercise are varied, but the combination may have a beneficial effect on the treatment of age-associated sarcopenia under select conditions. 11. HMB may be effective in countering muscle disuse atrophy during periods of inactivity due to illness or injury. The modulation of mitochondrial dynamics and lipid metabolism by HMB may be a potential mechanism for preventing disuse atrophy and aiding rehabilitation beyond HMB's effects on rates of muscle protein synthesis and degradation. 12. The efficacy of HMB in combination with certain nutrients may be enhanced under select conditions.

Scope
Management, Prevention
Diseases/Conditions (MeSH)

D013177 - Sports

D013178 - Sports Medicine

D064132 - Sports Nutritional Sciences

D013177 - Sports

D013178 - Sports Medicine

D064132 - Sports Nutritional Sciences

Keywords
HMB, leucine, sport nutrition, supplementation, β-Hydroxy-β-Methylbutyrate
Inclusion Criteria
Male, Female, Adolescent, Older Adult
Health Care Settings
Ambulatory
Intended Users
Athletics/Coaching, Nurse, Nurse Practitioner, Physician, Physician Assistant
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