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International Journal of Molecular Sciences|December 23, 2020
A<sub>2B</sub> Adenosine Receptors: When Outsiders May Become an Attractive Target to Treat Brain Ischemia or DemyelinationElisabetta Coppi, Ilaria Dettori, Federica Cherchi, et al.Journal of Neuroinflammation|April 14, 2011
Selective adenosine A2A receptor agonists and antagonists protect against spinal cord injury through peripheral and central effectsIrene Paterniti, Alessia Melani, Sara Cipriani, et al.Molecules (Basel, Switzerland)|March 26, 2022
Therapeutic Potential of Highly Selective A<sub>3</sub> Adenosine Receptor Ligands in the Central and Peripheral Nervous SystemElisabetta Coppi, Federica Cherchi, Martina Venturini, et al.International Journal of Molecular Sciences|August 7, 2021
Uncovering the Mechanisms of Adenosine Receptor-Mediated Pain Control: Focus on the A<sub>3</sub> Receptor SubtypeElisabetta Coppi, Federica Cherchi, Elena Lucarini, et al.The European Journal of Neuroscience|April 2, 2011
P2 receptor antagonists prevent synaptic failure and extracellular signal-regulated kinase 1/2 activation induced by oxygen and glucose deprivation in rat CA1 hippocampus in vitroChiara Traini, Felicita Pedata, Sara Cipriani, et al.Plos One|December 20, 2014
The selective antagonism of P2X7 and P2Y1 receptors prevents synaptic failure and affects cell proliferation induced by oxygen and glucose deprivation in rat dentate gyrusGiovanna Maraula, Daniele Lana, Elisabetta Coppi, et al.Progress in Neurobiology|November 21, 2007
Adenosine A2A receptors and brain injury: broad spectrum of neuroprotection, multifaceted actions and "fine tuning" modulationJiang-Fan Chen, Patricia K Sonsalla, Felicita Pedata, et al.Biomolecules|June 28, 2023
Pharmacological Characterization of P626, a Novel Dual Adenosine A<sub>2A</sub>/A<sub>2B</sub> Receptor Antagonist, on Synaptic Plasticity and during an Ischemic-like Insult in CA1 Rat HippocampusMartina Venturini, Federica Cherchi, Clara Santalmasi, et al.Journal of Neurochemistry|October 8, 2020
Acetylcholine modulates K<sup>+</sup> and Na<sup>+</sup> currents in human basal forebrain cholinergic neuroblasts through an autocrine/paracrine mechanismElisabetta Coppi, Federica Cherchi, Erica Sarchielli, et al.Journal of Neurochemistry|January 27, 2007
Differential glutamate-dependent and glutamate-independent adenosine A1 receptor-mediated modulation of dopamine release in different striatal compartmentsJanusz Borycz, M Fátima Pereira, Alessia Melani, et al.Pageof 7