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Frontiers in Molecular Biosciences|September 28, 2016
Melusin Promotes a Protective Signal Transduction Cascade in Stressed HeartsMatteo Sorge, Mara BrancaccioFrontiers in Bioengineering and Biotechnology|June 13, 2020
Blocking Extracellular Chaperones to Improve Cardiac RegenerationLaura Seclì, Matteo Sorge, Alessandro Morotti, et al.Frontiers in Cell and Developmental Biology|November 1, 2021
Extracellular HSP90 Machineries Build Tumor Microenvironment and Boost Cancer ProgressionPietro Poggio, Matteo Sorge, Laura Seclì, et al.Cells|January 6, 2021
Master Regulators of Muscle Atrophy: Role of Costamere ComponentsLuisa Gorza, Matteo Sorge, Laura Seclì, et al.Journal of Cachexia, Sarcopenia and Muscle|December 21, 2024
Chaperone Proteins: The Rising Players in Muscle AtrophyDavide Acquarone, Alessandro Bertero, Mara Brancaccio, et al.Frontiers in Physiology|April 5, 2018
Redox Aspects of Chaperones in Cardiac FunctionClaudia Penna, Matteo Sorge, Saveria Femminò, et al.Biology|January 21, 2022
A TRICk to Improve the Effectiveness of RIC: Role of Limb Temperature in Enhancing the Effectiveness of Remote Ischemic ConditioningClaudia Penna, Matteo Sorge, Francesca Tullio, et al.Scientific Reports|June 1, 2018
The <sup>13</sup>C hyperpolarized pyruvate generated by ParaHydrogen detects the response of the heart to altered metabolism in real timeEleonora Cavallari, Carla Carrera, Matteo Sorge, et al.Journal of Cachexia, Sarcopenia and Muscle|March 11, 2020
Loss of melusin is a novel, neuronal NO synthase/FoxO3-independent master switch of unloading-induced muscle atrophyMaurizio Vitadello, Matteo Sorge, Elena Percivalle, et al.Shock (Augusta, Ga.)|March 10, 2022
Modulation of LTCC Pathways by a Melusin Mimetic Increases Ventricular Contractility During LPS-Induced CardiomyopathyPietro Arina, Matteo Sorge, Andrea Gallo, et al.Pageof 2