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Biochemical Pharmacology|April 24, 2004
Mechanisms involved in the antiplatelet activity of 8-methyl-4-(1-piperazinyl)-7-(3-pyridinylmethoxy)-2H-1-benzopyran-2-one (RC414)Giuliana Leoncini, Maria Grazia Signorello, Debora Bruzzese, et al.Current Neurovascular Research|June 17, 2011
Activation of human platelets by 2-arachidonoylglycerol: role of PKC in NO/cGMP pathway modulationMaria Grazia Signorello, Enrica Giacobbe, Alessia Segantin, et al.Bioorganic & Medicinal Chemistry|December 7, 2002
Coumarin, chromone, and 4(3H)-pyrimidinone novel bicyclic and tricyclic derivatives as antiplatelet agents: synthesis, biological evaluation, and comparative molecular field analysisGiorgio Roma, Mario Di Braccio, Antonio Carrieri, et al.European Journal of Medicinal Chemistry|February 22, 2013
Synthesis, in vitro antiplatelet activity and molecular modelling studies of 10-substituted 2-(1-piperazinyl)pyrimido[1,2-a]benzimidazol-4(10H)-onesMario Di Braccio, Giancarlo Grossi, Maria Grazia Signorello, et al.Biochemical Pharmacology|February 2, 2026
Modulation of thrombin-induced human platelet activation and oxidative stress by polyaminesMaria Grazia SignorelloJournal of Medicinal Chemistry|May 16, 2007
Synthesis and in vitro antiplatelet activity of new 4-(1-piperazinyl)coumarin derivatives. Human platelet phosphodiesterase 3 inhibitory properties of the two most effective compounds described and molecular modeling study on their interactions with phosphodiesterase 3A catalytic siteGiorgio Roma, Mario Di Braccio, Giancarlo Grossi, et al.Biology of the Cell|March 15, 2018
Extramitochondrial energy production in plateletsSilvia Ravera, Maria Grazia Signorello, Martina Bartolucci, et al.Cells|July 14, 2023
Platelet Metabolic Flexibility: A Matter of Substrate and LocationSilvia Ravera, Maria Grazia Signorello, Isabella PanfoliThe Journal of Biological Chemistry|July 9, 2008
Adenylic dinucleotides produced by CD38 are negative endogenous modulators of platelet aggregationMirko Magnone, Giovanna Basile, Debora Bruzzese, et al.Nanoscale Advances|September 22, 2022
Reshaped as polyester-based nanoparticles, gallic acid inhibits platelet aggregation, reactive oxygen species production and multi-resistant Gram-positive bacteria with an efficiency never obtainedSilvana Alfei, Maria Grazia Signorello, Anna Schito, et al.Pageof 5