{"recordsTotal":20,"data":[["Pasqua T<\/a>, Mazza Maria Rosaria, Gallo Cantafio M<\/a>, Soda T<\/a>, Amodio N<\/a>, Angelone Tommaso","Palmitate-Induced Cardiac Lipotoxicity Is Relieved by the Redox-Active Motif of SELENOT through Improving Mitochondrial Function and Regulating Metabolic State<\/a>","CELLS",2023,"12","1042"],["Soda T<\/a>, Viglietto G<\/a>, Angelone Tommaso, Amodio N<\/a>","Mitochondrial dysfunction at the crossroad of cardiovascular diseases and cancer<\/a>","JOURNAL OF TRANSLATIONAL MEDICINE",2023,"21","635"],["Soda T<\/a>","Allyl Isothiocianate Induces Ca2+ Signals and Nitric Oxide Release by Inducing Reactive Oxygen Species Production in the Human Cerebrovascular Endothelial Cell Line hCMEC\/D3<\/a>","CELLS",2023,"12","1732"],["Soda T<\/a>","Store-Operated Ca2+ Entry as a Putative Target of Flecainide for the Treatment of Arrhythmogenic Cardiomyopathy<\/a>","JOURNAL OF CLINICAL MEDICINE",2023,"12","5295"],["Soda T<\/a>, Angelone Tommaso, Iaquinta F<\/a>, Canonaco Marcello, Facciolo Rosa Maria","Ketogenic diet ameliorates autism spectrum disorders-like behaviors via reduced inflammatory factors and microbiota remodeling in BTBR T+ Itpr3tf\/J mice<\/a>","EXPERIMENTAL NEUROLOGY",2023,"366","114432"],["Soda T<\/a>","The Emerging Role of N-Methyl-D-Aspartate (NMDA) Receptors in the Cardiovascular System: Physiological Implications, Pathological Consequences, and Therapeutic Perspectives<\/a>","INTERNATIONAL JOURNAL OF MOLECULAR SCIENCES",2023,"24","3914"],["Soda T<\/a>","The Molecular Heterogeneity of Store-Operated Ca2+ Entry in Vascular Endothelial Cells: The Different roles of Orai1 and TRPC1\/TRPC4 Channels in the Transition from Ca2+-Selective to Non-Selective Cation Currents<\/a>","INTERNATIONAL JOURNAL OF MOLECULAR SCIENCES",2023,"24","3259"],["Soda T<\/a>","Deconstruction of Neurotrypsin Reveals a Multi-factorially Regulated Activity Affecting Myotube Formation and Neuronal Excitability<\/a>","MOLECULAR NEUROBIOLOGY",2022,"59","7466-7485"],["Soda T<\/a>","Platelet-Derived Extracellular Vesicles Stimulate Migration through Partial Remodelling of the Ca2+ Handling Machinery in MDA-MB-231 Breast Cancer Cells<\/a>","CELLS",2022,"11","3120"],["Soda T<\/a>","The Cerebellar Involvement in Autism Spectrum Disorders: From the Social Brain to Mouse Models<\/a>","INTERNATIONAL JOURNAL OF MOLECULAR SCIENCES",2022,"23","3894"],["Iaccarino Guido, Pasqua T<\/a>, Soda T<\/a>, Angelone Tommaso","Understanding the heart-brain axis response in COVID-19 patients: A suggestive perspective for therapeutic development<\/a>","PHARMACOLOGICAL RESEARCH",2021,"168","105581"],["Soda T<\/a>","Calcium Channel-Dependent Induction of Long-Term Synaptic Plasticity at Excitatory Golgi Cell Synapses of Cerebellum (CO-FIRST AUTHOR)<\/a>","THE JOURNAL OF NEUROSCIENCE",2021,"41","3307-3319"],["De Luca Antonio, Soda T<\/a>","Targeting Endolysosomal Two-Pore Channels to Treat Cardiovascular Disorders in the Novel COronaVIrus Disease 2019<\/a>","FRONTIERS IN PHYSIOLOGY",2021,"12","629119"],["Soda T<\/a>","Endothelial signaling at the core of neurovascular coupling: The emerging role of endothelial inward-rectifier K+ (Kir2.1) channels and N-methyl-d-aspartate receptors in the regulation of cerebral blood flow<\/a>","THE INTERNATIONAL JOURNAL OF BIOCHEMISTRY & CELL BIOLOGY",2021,"135","105983"],["Soda T<\/a>","Deletion of calcineurin from GFAP-expressing astrocytes impairs excitability of cerebellar and hippocampal neurons through astroglial Na+ \/K+ ATPase (CO-FIRST AUTHOR)<\/a>","GLIA",2020,"68","543-560"],["Soda T<\/a>","Hyperexcitability and Hyperplasticity Disrupt Cerebellar Signal Transfer in the IB2 KO Mouse Model of Autism<\/a>","THE JOURNAL OF NEUROSCIENCE",2019,"39","2383-2397"],["Soda T<\/a>","Cerebellar Learning Properties Are Modulated by the CRF Receptor<\/a>","THE JOURNAL OF NEUROSCIENCE",2018,"38","6751-6765"],["Soda T<\/a>","Hebbian Spike-Timing Dependent Plasticity at the Cerebellar Input Stage<\/a>","THE JOURNAL OF NEUROSCIENCE",2017,"37","2809-2823"],["Soda T<\/a>","Granular Layer Neurons Control Cerebellar Neurovascular Coupling Through an NMDA Receptor\/NO-Dependent System<\/a>","THE JOURNAL OF NEUROSCIENCE",2017,"37","1340-1351"],["Soda T<\/a>","Stim and Orai proteins in neuronal Ca(2+) signaling and excitability<\/a>","FRONTIERS IN CELLULAR NEUROSCIENCE",2015,"9","153"]],"data_aggiornamento":"22\/01\/2025"}