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Diabetes|October 20, 2023
Divergent Skeletal Muscle Metabolomic Signatures of Different Exercise Training Modes Independently Predict Cardiometabolic Risk FactorsMark W Pataky, Arathi Prabha Kumar, David A Gaul, et al.The Journal of Clinical Endocrinology and Metabolism|December 29, 2015
Predictors of Whole-Body Insulin Sensitivity Across Ages and Adiposity in Adult HumansAntigoni Z Lalia, Surendra Dasari, Matthew L Johnson, et al.Cell Metabolism|November 8, 2023
Impact of biological sex and sex hormones on molecular signatures of skeletal muscle at rest and in response to distinct exercise training modesMark W Pataky, Surendra Dasari, Kelly L Michie, et al.American Journal of Physiology. Endocrinology and Metabolism|June 19, 2024
Intramuscular diacylglycerol accumulates with acute hyperinsulinemia in insulin-resistant phenotypesColleen F McKenna, Harrison D Stierwalt, Karin A Zemski Berry, et al.Elife|June 15, 2021
Tetrahydroxanthohumol, a xanthohumol derivative, attenuates high-fat diet-induced hepatic steatosis by antagonizing PPARγYang Zhang, Gerd Bobe, Cristobal L Miranda, et al.Nature Communications|July 2, 2025
Aerobic and resistance exercise-regulated phosphoproteome and acetylproteome modifications in human skeletal muscleMark W Pataky, Carrie J Heppelmann, Kyle J Sevits, et al.The Journals of Gerontology. Series A, Biological Sciences and Medical Sciences|December 16, 2014
Differential Effect of Endurance Training on Mitochondrial Protein Damage, Degradation, and Acetylation in the Context of AgingMatthew L Johnson, Brian A Irving, Ian R Lanza, et al.Cell Metabolism|December 11, 2012
Chronic caloric restriction preserves mitochondrial function in senescence without increasing mitochondrial biogenesisIan R Lanza, Piotrek Zabielski, Katherine A Klaus, et al.The Journal of Clinical Investigation|August 16, 2016
Insulin and IGF-1 receptors regulate FoxO-mediated signaling in muscle proteostasisBrian T O'Neill, Kevin Y Lee, Katherine Klaus, et al.The Journal of Nutrition|September 10, 2019
Treatment with Nitrate, but Not Nitrite, Lowers the Oxygen Cost of Exercise and Decreases Glycolytic Intermediates While Increasing Fatty Acid Metabolites in Exercised ZebrafishElizabeth R Axton, Laura M Beaver, Lindsey St Mary, et al.Pageof 6