Whey protein
Intervention1 paper4 findings
- Animals1
Outcomes
4Fbxo32
downin mice1
1 study
Fbxo32
downin mice1
Whey protein decreases Fbxo32 in mice.
“suppression of the muscle atrophy factors MuRF-1 and Atrogin-1 in the ubiquitin-proteasome system via PWPI@MPNs/HA.”
Animalsin a murine sarcopenia modelPWPI@MPNs/HAskeletal muscle
Encapsulated sustained-release whey protein improves muscle mass and strength in sarcopenic mice · Advanced science (Weinheim, Baden-Wurttemberg, Germany) · 27 Sep 2026
Trim63
downin mice1
1 study
Trim63
downin mice1
Whey protein decreases Trim63 in mice.
“suppression of the muscle atrophy factors MuRF-1 and Atrogin-1 in the ubiquitin-proteasome system via PWPI@MPNs/HA.”
Animalsin a murine sarcopenia modelPWPI@MPNs/HAskeletal muscle
Encapsulated sustained-release whey protein improves muscle mass and strength in sarcopenic mice · Advanced science (Weinheim, Baden-Wurttemberg, Germany) · 27 Sep 2026
Grip strength
upin mice1
1 study
Grip strength
upin mice1
Whey protein improves grip strength in mice.
“PWPI@MPNs25/HA significantly improves lean body content, grip strength, grid hanging time, exhaustion time, and exhaustion distance.”
Animalsin a murine sarcopenia modelPWPI@MPNs25/HA
Encapsulated sustained-release whey protein improves muscle mass and strength in sarcopenic mice · Advanced science (Weinheim, Baden-Wurttemberg, Germany) · 27 Sep 2026
Lean body mass
upin mice1
1 study
Lean body mass
upin mice1
Whey protein improves lean body mass in mice.
“In a murine sarcopenia model, PWPI@MPNs25/HA significantly improves lean body content, grip strength, grid hanging time, exhaustion time, and exhaustion distance.”
Animalsin a murine sarcopenia modelPWPI@MPNs25/HA
Encapsulated sustained-release whey protein improves muscle mass and strength in sarcopenic mice · Advanced science (Weinheim, Baden-Wurttemberg, Germany) · 27 Sep 2026
Latest
1Encapsulated sustained-release whey protein improves muscle mass and strength in sarcopenic mice
A specialized encapsulation system slows protein digestion to boost muscle signaling and physical endurance in a murine sarcopenia model.
Advanced science (Weinheim, Baden-Wurttemberg, Germany) · Zhang Y et al.