Ca2+ toxicity due to reverse Na+/Ca2+ exchange contributes to degeneration of neurites of DRG neurons induced by a neuropathy-associated Nav1.7 mutation
Estacion, M, Vohra, B P S, Liu, S, Hoeijmakers, J, Faber, C G, Merkies, I S J, Lauria, G, Black, J A, Waxman, S G
Published in Journal of neurophysiology (01.09.2015)
Published in Journal of neurophysiology (01.09.2015)
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NaV1.7 Gain-of-Function Mutations as a Continuum: A1632E Displays Physiological Changes Associated with Erythromelalgia and Paroxysmal Extreme Pain Disorder Mutations and Produces Symptoms of Both Disorders
Estacion, M, Dib-Hajj, S. D, Benke, P. J, te Morsche, Rene H. M, Eastman, E. M, Macala, L. J, Drenth, J. P. H, Waxman, S. G
Published in The Journal of neuroscience (22.10.2008)
Published in The Journal of neuroscience (22.10.2008)
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Can robots patch‐clamp as well as humans? Characterization of a novel sodium channel mutation
Estacion, M., Choi, J. S., Eastman, E. M., Lin, Z., Li, Y., Tyrrell, L., Yang, Y., Dib‐Hajj, S. D., Waxman, S. G.
Published in The Journal of physiology (01.06.2010)
Published in The Journal of physiology (01.06.2010)
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Safety and efficacy of a Nav1.7 selective sodium channel blocker in patients with trigeminal neuralgia: a double-blind, placebo-controlled, randomised withdrawal phase 2a trial
Zakrzewska, Joanna M, Prof, Palmer, Joanne, PhD, Morisset, Valerie, PhD, Giblin, Gerard MP, PhD, Obermann, Mark, MD, Ettlin, Dominik A, MD, Cruccu, Giorgio, Prof, Bendtsen, Lars, MD, Estacion, Mark, PhD, Derjean, Dominique, PhD, Waxman, Stephen G, Prof, Layton, Gary, MSc, Gunn, Kevin, MD, Tate, Simon, PhD
Published in Lancet neurology (01.04.2017)
Published in Lancet neurology (01.04.2017)
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Human Na(v)1.8: enhanced persistent and ramp currents contribute to distinct firing properties of human DRG neurons
Han, Chongyang, Estacion, Mark, Huang, Jianying, Vasylyev, Dymtro, Zhao, Peng, Dib-Hajj, Sulayman D, Waxman, Stephen G
Published in Journal of neurophysiology (01.05.2015)
Published in Journal of neurophysiology (01.05.2015)
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Nav1.7-A1632G Mutation from a Family with Inherited Erythromelalgia: Enhanced Firing of Dorsal Root Ganglia Neurons Evoked by Thermal Stimuli
Yang, Yang, Huang, Jianying, Mis, Malgorzata A, Estacion, Mark, Macala, Lawrence, Shah, Palak, Schulman, Betsy R, Horton, Daniel B, Dib-Hajj, Sulayman D, Waxman, Stephen G
Published in The Journal of neuroscience (13.07.2016)
Published in The Journal of neuroscience (13.07.2016)
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A novel Nav1.7 mutation producing carbamazepine-responsive erythromelalgia
Fischer, Tanya Z., Gilmore, Elaine S., Estacion, Mark, Eastman, Emmanuella, Taylor, Sean, Melanson, Michel, Dib-Hajj, Sulayman D., Waxman, Stephen G.
Published in Annals of neurology (01.06.2009)
Published in Annals of neurology (01.06.2009)
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A sodium channel gene SCN9A polymorphism that increases nociceptor excitability
Estacion, Mark, Harty, T. Patrick, Choi, Jin-Sung, Tyrrell, Lynda, Dib-Hajj, Sulayman D., Waxman, Stephen G.
Published in Annals of neurology (01.12.2009)
Published in Annals of neurology (01.12.2009)
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Journal Article
Ca 2+ toxicity due to reverse Na + /Ca 2+ exchange contributes to degeneration of neurites of DRG neurons induced by a neuropathy-associated Nav1.7 mutation
Estacion, M., Vohra, B. P. S, Liu, S., Hoeijmakers, J., Faber, C. G., Merkies, I. S. J., Lauria, G., Black, J. A., Waxman, S. G.
Published in Journal of neurophysiology (01.09.2015)
Published in Journal of neurophysiology (01.09.2015)
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Identification and localization of TRPC channels in the rat kidney
Goel, Monu, Sinkins, William G, Zuo, Cheng-Di, Estacion, Mark, Schilling, William P
Published in American journal of physiology. Renal physiology (01.05.2006)
Published in American journal of physiology. Renal physiology (01.05.2006)
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Differential effect of D623N variant and wild-type Na(v)1.7 sodium channels on resting potential and interspike membrane potential of dorsal root ganglion neurons
Ahn, Hye-Sook, Vasylyev, Dmytro V, Estacion, Mark, Macala, Lawrence J, Shah, Palak, Faber, Catharina G, Merkies, Ingemar S J, Dib-Hajj, Sulayman D, Waxman, Stephen G
Published in Brain research (05.09.2013)
Published in Brain research (05.09.2013)
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