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Voltage-gated sodium channel organization in neurons: Protein interactions and trafficking pathwaysLETERRIER, Christophe; BRACHET, Anna; FACHE, Marie-Pierre et al.Neuroscience letters. 2010, Vol 486, Num 2, pp 92-100, issn 0304-3940, 9 p.Article

Low concentrations of tetrodotoxin interact with tetrodotoxin-resistant voltage-gated sodium channelsFARMER, C. E; SMITH, K. J; DOCHERTY, R. J et al.British journal of pharmacology. 2008, Vol 155, Num 1, pp 34-43, issn 0007-1188, 10 p.Article

DEVELOPMENTAL EXPOSURE TO LEAD CAUSES INHERENT CHANGES ON VOLTAGE-GATED SODIUM CHANNELS IN RAT HIPPOCAMPAL CA1 NEURONSYAN, D; WANG, L; MA, F.-L et al.Neuroscience. 2008, Vol 153, Num 2, pp 436-445, issn 0306-4522, 10 p.Article

Differential expression of proteoglycans at central and peripheral nodes of ranvierMELENDEZ-VASQUEZ, Carmen; CAREY, David J; ZANAZZI, George et al.Glia (New York, NY. Print). 2005, Vol 52, Num 4, pp 301-308, issn 0894-1491, 8 p.Article

NaV1.5 enhances breast cancer cell invasiveness by increasing NHE1-dependent H+ efflux in caveolaeBRISSON, L; GILLET, L; CALAGHAN, S et al.Oncogene (Basingstoke). 2011, Vol 30, Num 17, pp 2070-2076, issn 0950-9232, 7 p.Article

Biophysical properties of Nav1.8/Nav1.2 chimeras and inhibition by μO-conotoxin MrVIBKNAPP, O; NEVIN, S. T; YASUDA, T et al.British journal of pharmacology. 2012, Vol 166, Num 7, pp 2148-2160, issn 0007-1188, 13 p.Article

Nav1.4 and Nav1.5 are modulated differently during muscle immobilization and contractile phenotype conversionRANNOU, Fabrice; PENNEC, Jean-Pierre; MOREL, Julie et al.Journal of applied physiology (1985). 2011, Vol 111, Num 2, pp 495-507, issn 8750-7587, 13 p.Article

Sustained increase in the excitability of myelinated peripheral axons to depolarizing current is mediated by Nav1.6SITTL, Ruth; CARR, Richard W; GRAFE, Peter et al.Neuroscience letters. 2011, Vol 492, Num 3, pp 129-133, issn 0304-3940, 5 p.Article

Redistribution of voltage-gated sodium channels after nerve decompression contributes to relieve neuropathic pain in chronic constriction injuryTSENG, To-Jung; HSIEH, Yu-Lin; KO, Miau-Hwa et al.Brain research. 2014, Vol 1589, pp 15-25, issn 0006-8993, 11 p.Article

Narrow and wide field amacrine cells fire action potentials in response to depolarization and light stimulationHEFLIN, Stephanie J; COOK, Paul B.Visual neuroscience (Print). 2007, Vol 24, Num 2, pp 197-206, issn 0952-5238, 10 p.Article

Numerical Characterization of Protein Sequences and Application to Voltage-Gated Sodium Channel α Subunit PhylogenyNANDY, Ashesh; GHOSH, Ambarnil; NANDY, Papiya et al.In silico biology (Gedrukt). 2009, Vol 9, Num 3, pp 77-87, issn 1386-6338, 11 p.Article

Electrostatic Contributions of Aromatic Residues in the Local Anesthetic Receptor of Voltage-Gated Sodium ChannelsAHERN, Christopher A; EASTWOOD, Amy L; DOUGHERTY, Dennis A et al.Circulation research. 2008, Vol 102, Num 1, pp 86-94, issn 0009-7330, 9 p.Article

Molecular identification and functional role of voltage-gated sodium channels in rat carotid body chemoreceptor cells. Regulation of expression by chronic hypoxia in vivoCACERES, Ana I; OBESO, Ana; GONZALEZ, Constancio et al.Journal of neurochemistry. 2007, Vol 102, Num 1, pp 231-245, issn 0022-3042, 15 p.Article

Voltage-gated sodium channels : New targets in cancer therapy?ROGER, Sébastien; POTIER, Marie; VANDIER, Christophe et al.Current pharmaceutical design. 2006, Vol 12, Num 28, pp 3681-3695, issn 1381-6128, 15 p.Article

NaV1.7 accumulates and co-localizes with phosphorylated ERK1/2 within transected axons in early experimental neuromasPERSSON, Anna-Karin; GASSER, Andreas; BLACK, Joel A et al.Experimental neurology (Print). 2011, Vol 230, Num 2, pp 273-279, issn 0014-4886, 7 p.Article

A chronic pain: Inflammation-dependent chemoreceptor adaptation in rat carotid bodyLIU, X; HE, L; DINGER, B et al.Respiratory physiology & neurobiology. 2011, Vol 178, Num 3, pp 362-369, issn 1569-9048, 8 p.Article

Sea anemone toxins affecting voltage-gated sodium channels - molecular and evolutionary featuresMORAN, Yehu; GORDON, Dalia; GUREVITZ, Michael et al.Toxicon (Oxford). 2009, Vol 54, Num 8, pp 1089-1101, issn 0041-0101, 13 p.Article

μ-Opioid receptor-independent fashion of the suppression of sodium currents by μ-opioid analgesics in thalamic neuronsHASHIMOTO, Keisuke; AMINO, Taku; KASAKURA, Akiko et al.Neuroscience letters. 2009, Vol 453, Num 1, pp 62-67, issn 0304-3940, 6 p.Article

Gambierol, a toxin produced by the dinoflagellate Gambierdiscus toxicus, is a potent blocker of voltage-gated potassium channelsCUYPERS, Eva; ABDEL-MOTTALEB, Yousra; KOPLJAR, Ivan et al.Toxicon (Oxford). 2008, Vol 51, Num 6, pp 974-983, issn 0041-0101, 10 p.Article

Bilayer lipid membranes supported on Teflon filters: A functional environment for ion channelsTHAI PHUNG; YANLI ZHANG; DUNLOP, James et al.Biosensors & bioelectronics. 2011, Vol 26, Num 7, pp 3127-3135, issn 0956-5663, 9 p.Article

The developmental changes of Nav1.1 and Nav1.2 expression in the human hippocampus and temporal lobeWENZE WANG; TAKASHIMA, Sachio; SEGAWA, Yoshie et al.Brain research. 2011, Vol 1389, pp 61-70, issn 0006-8993, 10 p.Article

Regulation of caveolar cardiac sodium current by a single Gsα histidine residuePALYGIN, Oleg A; PETTUS, Janette M; SHIBATA, Erwin F et al.American journal of physiology. Heart and circulatory physiology. 2008, Vol 63, Num 4, issn 0363-6135, H1693-H1699Article

Effects of capsaicin on VGSCs in TRPV1-/- miceXUEHONG CAO; XUESONG CAO; HONG XIE et al.Brain research. 2007, Vol 1163, pp 33-43, issn 0006-8993, 11 p.Article

Expression of Nav 1.1 in rat retinal ALL amacrine cellsKANEKO, Yuko; WATANABE, Shu-Ichi.Neuroscience letters. 2007, Vol 424, Num 2, pp 83-88, issn 0304-3940, 6 p.Article

Voltage-gated sodium channel modulation by scorpion α-toxinsBOSNIANS, Frank; TYTGAT, Jan.Toxicon (Oxford). 2007, Vol 49, Num 2, pp 142-158, issn 0041-0101, 17 p.Article

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