Submitted:
31 July 2026
Posted:
03 August 2026
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Abstract
Keywords:
1. Introduction
2. Literature Search and Narrative Synthesis Approach
3. Narrative Synthesis of Current Evidence
3.1. Characteristics of Included Studies
3.2. Biological Rationale for Whey Protein Supplementation
3.3. Effects of Whey Protein on Muscle Mass
3.4. Effects on Muscle Strength and Physical Performance
3.5. Dose, Timing, and Duration of Whey Protein Supplementation
4. Discussion
5. Strengths and Limitations
- focus on whey protein-containing interventions
- inclusion of recent meta-analyses
- clinical applicability
- narrative methodology
- no formal risk-of-bias assessment
- heterogeneity of studies
- inability to isolate whey protein effects
6. Clinical Implications
7. Future Directions
8. Conclusions
Author Contributions
Funding
Institutional Review Board Statement
Informed Consent Statement
Data Availability Statement
Conflicts of Interest
References
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| Study | Design | Population | Sample Size | Intervention | Duration | Comparator | Main Findings |
|---|---|---|---|---|---|---|---|
| Bauer et al., 2015 | Multicenter randomized double-blind placebo-controlled trial | Sarcopenic adults ≥65 years with SPPB 4–9 and low skeletal muscle mass | n = 380 (184 intervention,196 control) | Whey protein (20 g) + leucine (3 g) + vitamin D (800 IU), twice daily | 13 weeks | Isocaloric control supplement | Significant increase in appendicular muscle mass (+0.17 kg) and improved chair-stand performance; no significant effect on handgrip strength or total SPPB score. |
| Englund et al., 2018 | Randomized double-blind placebo-controlled trial | Mobility-limited and vitamin D-insufficient older adults (SPPB ≤9) | n = 149 | Physical activity program + daily supplement containing 20 g whey protein and 800 IU vitamin D | 6 months | Physical activity + placebo drink | Greater reduction in intermuscular fat and improved muscle density compared with placebo. |
| Mori & Tokuda, 2022 | Randomized controlled trial | Community-dwelling older adults with sarcopenia | n = 81 (RT+PRO=27, RT=27, PRO=27) | Whey protein supplement (11 g protein, 2300 mg leucine) with or without resistance training | 24 weeks intervention + 24 weeks detraining follow-up | RT alone or whey protein alone | Improved ASMI and handgrip strength; benefits remained during detraining period. |
| Chang & Choo, 2023 | Systematic review and meta-analysis | Patients with sarcopenia | n = 637 from 3 RCTs | Whey protein + leucine + vitamin D with/without exercise | Variable | Control interventions | Increased appendicular muscle mass; strength and physical function improved only when exercise was included. |
| Gielen et al., 2021 | Umbrella review | Older adults at risk of sarcopenia | Multiple reviews/meta-analyses | Nutritional interventions including whey protein, EAA, HMB and vitamin D | Variable | Various | Nutritional support contributes to improvements in muscle mass, strength and physical performance. |
| Al-Rawhani et al., 2025 | Scoping review of RCTs | Older adults | Multiple RCTs | Protein and amino acid supplementation | Variable | Various | Potential benefits for body composition and muscle mass. |
| Li et al., 2024 | Systematic review and meta-analysis | Older adults with sarcopenia | Multiple RCTs | Whey protein supplementation with or without resistance training | Variable | Various | Improvements in functional capacity and sarcopenia-related outcomes, especially with resistance training. |
| Liao et al., 2024 | Network meta-analysis | Older adults undergoing resistance training | Multiple RCTs | Various protein supplements including whey protein | Variable | Alternative protein interventions | Whey protein among the most effective supplements for improving muscle outcomes during resistance training. |
| Cereda et al., 2022 | Narrative review | Older adults with sarcopenia | Not applicable | Whey protein-, leucine-, and vitamin D-enriched ONS | Variable | — | Supports enriched oral nutritional supplementation as part of sarcopenia management. |
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