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Biochemical Pharmacology|January 27, 2022
Kv7.4 channels regulate potassium permeability in neuronal mitochondriaGianluca Paventi, Maria Virginia Soldovieri, Ilenio Servettini, et al.Epilepsia|May 19, 2023
A novel KCNC1 gain-of-function variant causing developmental and epileptic encephalopathy: "Precision medicine" approach with fluoxetinePaolo Ambrosino, Francesca Ragona, Ilaria Mosca, et al.Frontiers in Physiology|October 5, 2020
A Novel Kv7.3 Variant in the Voltage-Sensing S4 Segment in a Family With Benign Neonatal Epilepsy: Functional Characterization and in vitro Rescue by β-HydroxybutyrateFrancesco Miceli, Lidia Carotenuto, Vincenzo Barrese, et al.Molecular Neurobiology|February 1, 2018
Kv7.3 Compound Heterozygous Variants in Early Onset Encephalopathy Reveal Additive Contribution of C-Terminal Residues to PIP2-Dependent K+ Channel GatingPaolo Ambrosino, Elena Freri, Barbara Castellotti, et al.Pharmacological Research|June 29, 2014
Critical role of large-conductance calcium- and voltage-activated potassium channels in leptin-induced neuroprotection of N-methyl-d-aspartate-exposed cortical neuronsMaria Mancini, Maria Virginia Soldovieri, Guido Gessner, et al.Epilepsia Open|August 24, 2019
A novel homozygous KCNQ3 loss-of-function variant causes non-syndromic intellectual disability and neonatal-onset pharmacodependent epilepsyAnna Lauritano, Sebastien Moutton, Elena Longobardi, et al.Proceedings of the National Academy of Sciences of the United States of America|April 4, 2022
Gain of function due to increased opening probability by two KCNQ5 pore variants causing developmental and epileptic encephalopathyMario Nappi, Vincenzo Barrese, Lidia Carotenuto, et al.Cardiovascular Research|January 1, 2016
Expression and function of Kv7.4 channels in rat cardiac mitochondria: possible targets for cardioprotectionLara Testai, Vincenzo Barrese, Maria Virginia Soldovieri, et al.Pharmacological Research|September 17, 2020
Gabapentin treatment in a patient with KCNQ2 developmental epileptic encephalopathyMaria Virginia Soldovieri, Elena Freri, Paolo Ambrosino, et al.Journal of Medicinal Chemistry|February 6, 2016
Tryptamine-Based Derivatives as Transient Receptor Potential Melastatin Type 8 (TRPM8) Channel ModulatorsAlessia Bertamino, Carmine Ostacolo, Paolo Ambrosino, et al.Pageof 6