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Aging|March 31, 2026
ATF5 is required for the maintenance of mitochondrial homeostasis and skeletal muscle health during agingVictoria C Sanfrancesco, David A HoodMitochondrion|December 7, 2011
Plasticity of TOM complex assembly in skeletal muscle mitochondria in response to chronic contractile activityAnna-Maria Joseph, David A HoodSports Medicine and Health Science|December 9, 2024
Sulforaphane, Urolithin A, and ZLN005 induce time-dependent alterations in antioxidant capacity, mitophagy, and mitochondrial biogenesis in muscle cellsNeushaw Moradi, Sabrina Champsi, David A HoodPPAR Research|September 18, 2010
Regulation of PPARγ Coactivator-1α Function and Expression in Muscle: Effect of ExerciseGiulia Uguccioni, Donna D'souza, David A HoodJournal of Applied Physiology (Bethesda, Md. : 1985)|April 9, 2011
Effects of endurance training on apoptotic susceptibility in striated muscleAnna Vainshtein, Lawrence Kazak, David A HoodAutophagy|December 23, 2008
Denervation-induced oxidative stress and autophagy signaling in muscleMichael F N O'Leary, David A HoodAmerican Journal of Physiology. Cell Physiology|March 10, 2017
The unfolded protein response in relation to mitochondrial biogenesis in skeletal muscle cellsZahra S Mesbah Moosavi, David A HoodJournal of Applied Physiology (Bethesda, Md. : 1985)|May 3, 2008
Effect of prior chronic contractile activity on mitochondrial function and apoptotic protein expression in denervated muscleMichael F N O'Leary, David A HoodJournal of Sport and Health Science|May 3, 2025
Adaptations in mitochondrial quality control and interactions with innate immune signaling within skeletal muscle: A narrative reviewPriyanka Khemraj, Anastasiya Kuznyetsova, David A HoodJournal of Applied Physiology (Bethesda, Md. : 1985)|May 8, 2025
Effect of aging, endurance training, and denervation on innate immune signaling in skeletal musclePriyanka Khemraj, Anastasiya Kuznyetsova, David A HoodPageof 15