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Plos One|July 17, 2015
Human Nav1.6 Channels Generate Larger Resurgent Currents than Human Nav1.1 Channels, but the Navβ4 Peptide Does Not Protect Either Isoform from Use-Dependent ReductionReesha R Patel, Cindy Barbosa, Yucheng Xiao, et al.Brain : a Journal of Neurology|June 9, 2016
Aberrant epilepsy-associated mutant Nav1.6 sodium channel activity can be targeted with cannabidiolReesha R Patel, Cindy Barbosa, Tatiana Brustovetsky, et al.Journal of Cellular Physiology|May 28, 2011
Mechanisms controlling neurite outgrowth in a pheochromocytoma cell line: the role of TRPC channelsSanjay Kumar, Saikat Chakraborty, Cindy Barbosa, et al.Pain|January 20, 2016
Upregulation of the sodium channel NaVβ4 subunit and its contributions to mechanical hypersensitivity and neuronal hyperexcitability in a rat model of radicular pain induced by local dorsal root ganglion inflammationWenrui Xie, Zhi-Yong Tan, Cindy Barbosa, et al.The Journal of Neuroscience : the Official Journal of the Society for Neuroscience|January 9, 2019
Increased Resurgent Sodium Currents in Nav1.8 Contribute to Nociceptive Sensory Neuron Hyperexcitability Associated with Peripheral NeuropathiesYucheng Xiao, Cindy Barbosa, Zifan Pei, et al.Pflugers Archiv : European Journal of Physiology|December 22, 2016
FHF2 isoforms differentially regulate Nav1.6-mediated resurgent sodium currents in dorsal root ganglion neuronsCindy Barbosa, Yucheng Xiao, Andrew J Johnson, et al.Inorganic Chemistry|February 21, 2012
Luminescence rigidochromism and redox chemistry of pyrazolate-bridged binuclear platinum(II) diimine complex intercalated into zirconium phosphate layersEladio J Rivera, Cindy Barbosa, Rafael Torres, et al.Molecular Pain|September 27, 2015
Navβ4 regulates fast resurgent sodium currents and excitability in sensory neuronsCindy Barbosa, Zhi-Yong Tan, Ruizhong Wang, et al.Journal of Organometallic Chemistry|May 28, 2026
Molybdocene dichloride intercalation into zirconium phosphate nanoparticlesBarbara Casañas-Montes, Agustín Díaz, Cindy Barbosa, et al.Journal of Medicinal Chemistry|July 9, 2014
Substituted N-(biphenyl-4'-yl)methyl (R)-2-acetamido-3-methoxypropionamides: potent anticonvulsants that affect frequency (use) dependence and slow inactivation of sodium channelsHyosung Lee, Ki Duk Park, Robert Torregrosa, et al.Pageof 2