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Diabetes|April 3, 2019
Diabetes-Associated Myelopoiesis Drives Stem Cell Mobilopathy Through an OSM-p66Shc Signaling PathwayMattia Albiero, Stefano Ciciliot, Serena Tedesco, et al.Diabetes|November 26, 2013
Diabetes causes bone marrow autonomic neuropathy and impairs stem cell mobilization via dysregulated p66Shc and Sirt1Mattia Albiero, Nicol Poncina, Marc Tjwa, et al.Molecular Metabolism|December 3, 2015
The calcineurin-NFAT pathway controls activity-dependent circadian gene expression in slow skeletal muscleKenneth A Dyar, Stefano Ciciliot, Guidantonio Malagoli Tagliazucchi, et al.FASEB Journal : Official Publication of the Federation of American Societies for Experimental Biology|February 22, 2018
Interplay between gut microbiota and p66Shc affects obesity-associated insulin resistanceStefano Ciciliot, Mattia Albiero, Stefano Campanaro, et al.Antioxidants (Basel, Switzerland)|June 27, 2024
A Novel MAO-B/SSAO Inhibitor Improves Multiple Aspects of Dystrophic Phenotype in <i>mdx</i> MiceFrancesca Gasparella, Leonardo Nogara, Elena Germinario, et al.PNAS Nexus|February 6, 2023
Signatures of muscle disuse in spaceflight and bed rest revealed by single muscle fiber proteomicsMarta Murgia, Stefano Ciciliot, Nagarjuna Nagaraj, et al.Diabetologia|July 1, 2015
p66Shc deletion or deficiency protects from obesity but not metabolic dysfunction in mice and humansStefano Ciciliot, Mattia Albiero, Lisa Menegazzo, et al.JCI Insight|August 8, 2023
A combination of metformin and galantamine exhibits synergistic benefits in the treatment of sarcopeniaCaterina Tezze, Francesco Ivan Amendolagine, Leonardo Nogara, et al.Nature Communications|August 4, 2016
MRF4 negatively regulates adult skeletal muscle growth by repressing MEF2 activityIrene Moretti, Stefano Ciciliot, Kenneth A Dyar, et al.The Journal of Physiology|April 21, 2021
Neuromuscular junction instability and altered intracellular calcium handling as early determinants of force loss during unloading in humansElena Monti, Carlo Reggiani, Martino V Franchi, et al.Pageof 4