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Free Radical Biology & Medicine|October 23, 2017
Selenium-containing indolyl compounds: Kinetics of reaction with inflammation-associated oxidants and protective effect against oxidation of extracellular matrix proteinsAngela M Casaril, Marta T Ignasiak, Christine Y Chuang, et al.Molecular Neurodegeneration|April 24, 2025
Multi-region brain transcriptomic analysis of amyotrophic lateral sclerosis reveals widespread RNA alterations and substantial cerebellum involvementNatalie Grima, Andrew N Smith, Claire E Shepherd, et al.Science Advances|June 11, 2025
Cold exposure stimulates cross-tissue metabolic rewiring to fuel glucose-dependent thermogenesis in brown adipose tissueHarry B Cutler, Sigrid Jall-Rogg, Senthil Thillainadesan, et al.Elife|July 26, 2023
Leveraging genetic diversity to identify small molecules that reverse mouse skeletal muscle insulin resistanceStewart W C Masson, Søren Madsen, Kristen C Cooke, et al.Journal of Neurotrauma|April 10, 2024
Discovery of Alpha-1-Antichymotrypsin as a Marker of Delayed Recovery from Concussion in ChildrenElla E K Swaney, Franz E Babl, Vanessa C Rausa, et al.Elife|July 13, 2021
Akt phosphorylates insulin receptor substrate to limit PI3K-mediated PIP3 synthesisAlison L Kearney, Dougall M Norris, Milad Ghomlaghi, et al.Biorxiv : the Preprint Server for Biology|March 22, 2023
Mitochondrial electron transport chain, ceramide and Coenzyme Q are linked in a pathway that drives insulin resistance in skeletal muscleAlexis Diaz-Vegas, Soren Madsen, Kristen C Cooke, et al.Cell Metabolism|January 12, 2022
Systems-level analysis of insulin action in mouse strains provides insight into tissue- and pathway-specific interactions that drive insulin resistanceMarin E Nelson, Søren Madsen, Kristen C Cooke, et al.Elife|December 27, 2023
Mitochondrial electron transport chain, ceramide, and coenzyme Q are linked in a pathway that drives insulin resistance in skeletal muscleAlexis Diaz-Vegas, Søren Madsen, Kristen C Cooke, et al.Diabetes Research and Clinical Practice|January 10, 2021
Shortened relative leukocyte telomere length is associated with all-cause mortality in type 2 diabetes- analysis from the Hong Kong Diabetes RegisterFeifei Cheng, Andrea O Luk, Hongjiang Wu, et al.Pageof 4