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Characterization of Na+ currents regulating intrinsic excitability of optic tectal neurons. , Thompson AC., Life Sci Alliance. January 1, 2024; 7 (1):
Anesthetic Pharmacology of the Mint Extracts L-Carvone and Methyl Salicylate. , Brosnan RJ., Pharmacology. January 1, 2022; 107 (3-4): 167-178.
Heterologous functional expression of ascidian Nav1 channels and close relationship with the evolutionary ancestor of vertebrate Nav channels. , Kawai T., J Biol Chem. January 1, 2021; 296 100783.
Polyunsaturated fatty acid analogues differentially affect cardiac NaV, CaV, and KV channels through unique mechanisms. , Bohannon BM., Elife. March 24, 2020; 9
BK channel inhibition by strong extracellular acidification. , Zhou Y., Elife. July 2, 2018; 7
Characterization of the honeybee AmNaV1 channel and tools to assess the toxicity of insecticides. , Gosselin-Badaroudine P., Sci Rep. January 12, 2015; 5 12475.
Xenopus borealis as an alternative source of oocytes for biophysical and pharmacological studies of neuronal ion channels. , Cristofori-Armstrong B., Sci Rep. January 12, 2015; 5 14763.
Differential state-dependent modification of inactivation-deficient Nav1.6 sodium channels by the pyrethroid insecticides S-bioallethrin, tefluthrin and deltamethrin. , McCavera SJ., Neurotoxicology. June 1, 2012; 33 (3): 384-90.
Transmembrane voltage potential controls embryonic eye patterning in Xenopus laevis. , Pai VP ., Development. January 1, 2012; 139 (2): 313-23.
Functional properties and toxin pharmacology of a dorsal root ganglion sodium channel viewed through its voltage sensors. , Bosmans F., J Gen Physiol. July 1, 2011; 138 (1): 59-72.
Induction of vertebrate regeneration by a transient sodium current. , Tseng AS ., J Neurosci. September 29, 2010; 30 (39): 13192-200.
Electric currents in Xenopus tadpole tail regeneration. , Reid B., Dev Biol. November 1, 2009; 335 (1): 198-207.
Slow inactivation of the NaV1.4 sodium channel in mammalian cells is impeded by co-expression of the beta1 subunit. , Webb J., Pflugers Arch. April 1, 2009; 457 (6): 1253-63.
An extracellular Cu2+ binding site in the voltage sensor of BK and Shaker potassium channels. , Ma Z., J Gen Physiol. May 1, 2008; 131 (5): 483-502.
Concentration-dependent accumulation of [3H]-deltamethrin in sodium channel Nav1.2/beta1 expressing Xenopus laevis oocytes. , Watkins JA., Toxicol In Vitro. December 1, 2007; 21 (8): 1672-7.
H+ pump-dependent changes in membrane voltage are an early mechanism necessary and sufficient to induce Xenopus tail regeneration. , Adams DS ., Development. April 1, 2007; 134 (7): 1323-35.
Structural basis for the voltage-gated Na+ channel selectivity of the scorpion alpha-like toxin BmK M1. , Ye X., J Mol Biol. November 4, 2005; 353 (4): 788-803.