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Molecular Pharmacology|September 11, 2013
Subtype-selective activation of K(v)7 channels by AaTXKβ₂₋₆₄, a novel toxin variant from the Androctonus australis scorpion venomZied Landoulsi, Francesco Miceli, Angelo Palmese, et al.
Epileptic Disorders : International Epilepsy Journal with Videotape|February 21, 2019
A novel mutation in KCNQ3-related benign familial neonatal epilepsy: electroclinical features and neurodevelopmental outcomeEttore Piro, Rosaria Nardello, Elena Gennaro, et al.
European Journal of Human Genetics : EJHG|March 10, 2005
A y(+)LAT-1 mutant protein interferes with y(+)LAT-2 activity: implications for the molecular pathogenesis of lysinuric protein intoleranceMaria P Sperandeo, Simona Paladino, Luigi Maiuri, et al.
The International Journal of Biochemistry & Cell Biology|February 7, 2006
Human neoplastic mesothelial cells express voltage-gated sodium channels involved in cell motilityGianluca Fulgenzi, Laura Graciotti, Monica Faronato, et al.
Frontiers in Pharmacology|June 21, 2011
The Voltage-Sensing Domain of K(v)7.2 Channels as a Molecular Target for Epilepsy-Causing Mutations and AnticonvulsantsFrancesco Miceli, Maria Virginia Soldovieri, Fabio Arturo Iannotti, et al.
Human Mutation|March 19, 2005
Lysinuric protein intolerance: identification and functional analysis of mutations of the SLC7A7 geneMaria Pia Sperandeo, Patrizia Annunziata, Virginia Ammendola, et al.
Epilepsia|November 15, 2021
Distinct epilepsy phenotypes and response to drugs in KCNA1 gain- and loss-of function variantsFrancesco Miceli, Renzo Guerrini, Mario Nappi, et al.
Annals of Neurology|November 15, 2023
De novo variants in KCNA3 cause developmental and epileptic encephalopathyMaria Virginia Soldovieri, Paolo Ambrosino, Ilaria Mosca, et al.
American Journal of Physiology. Cell Physiology|January 29, 2024
Kv7 channel activation reduces brain endothelial cell permeability and prevents kainic acid-induced blood-brain barrier damageCamilla Celentano, Lidia Carotenuto, Francesco Miceli, et al.
Journal of Neurochemistry|August 5, 2010
Pre-synaptic BK channels selectively control glutamate versus GABA release from cortical and hippocampal nerve terminalsMaria Martire, Vincenzo Barrese, Monia D'Amico, et al.
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