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dc.contributor.authorMuqeem, Tanziyahpor
dc.contributor.authorGhosh, Biswaruppor
dc.contributor.authorPinto, Vítor Manuel Silvapor
dc.contributor.authorLepore, Angelo C.por
dc.contributor.authorCovarrubias, Manuelpor
dc.date.accessioned2019-01-08T12:08:12Z-
dc.date.issued2018-04-11-
dc.identifier.citationMuqeem, T., Ghosh, B., Pinto, V., Lepore, A. C., & Covarrubias, M. (2018). Regulation of nociceptive glutamatergic signaling by presynaptic Kv3. 4 channels in the rat spinal dorsal horn. Journal of Neuroscience, 3212-17por
dc.identifier.issn0270-6474-
dc.identifier.urihttps://hdl.handle.net/1822/57908-
dc.description.abstractPresynaptic voltage-gated K+ (Kv) channels in dorsal root ganglion (DRG) neurons are thought to regulate nociceptive synaptic transmission in the spinal dorsal horn. However, the Kv channel subtypes responsible for this critical role have not been identified. The Kv3.4 channel is particularly important because it is robustly expressed in DRG nociceptors, where it regulates action potential (AP) duration. Furthermore, Kv3.4 dysfunction is implicated in the pathophysiology of neuropathic pain in multiple pain models. We hypothesized that, through their ability to modulate AP repolarization, Kv3.4 channels in DRG nociceptors help to regulate nociceptive synaptic transmission. To test this hypothesis, we investigated Kv3.4 immunoreactivity (IR) in the rat cervical superficial dorsal horn (sDH) in both sexes and implemented an intact spinal cord preparation to investigate glutamatergic synaptic currents from second order neurons in the sDH under conditions that selectively inhibit the Kv3.4 current. We found presynaptic Kv3.4 IR in peptidergic and nonpeptidergic nociceptive fibers of the sDH. The Kv3.4 channel is hypersensitive to 4-aminopyridine and tetraethylammonium (TEA). Accordingly, 50 μm 4-aminopyridine and 500 μm TEA significantly prolong the AP, slow the maximum rate of repolarization in small-diameter DRG neurons, and potentiate monosynaptic excitatory postsynaptic currents (EPSCs) in dorsal horn laminae I and II through a presynaptic mechanism. In contrast, highly specific inhibitors of BK, Kv7, and Kv1 channels are less effective modulators of the AP and have little to no effect on EPSCs. The results strongly suggest that presynaptic Kv3.4 channels are major regulators of nociceptive synaptic transmission in the spinal cord.SIGNIFICANCE STATEMENT Intractable neuropathic pain can result from disease or traumatic injury and many studies have been conducted to determine the underlying pathophysiological changes. Voltage-gated ion channels, including the K+ channel Kv3.4, are dysregulated in multiple pain models. Kv3.4 channels are ubiquitously expressed in the dorsal root ganglion (DRG), where they are major regulators of DRG excitability. However, little is known about the ionic mechanisms that regulate nociceptive synaptic transmission at the level of the first synapse in the spinal cord, which is critical to pain transmission in both intact and pathological states. Here, we show that Kv3.4 channels have a significant impact on glutamatergic synaptic transmission in the dorsal horn, further illuminating its potential as a molecular pain therapeutic target.por
dc.description.sponsorshipThis work was supported by the Vickie and Jack Farber Foundation (M.C.), the Dean's Transformational Science Award (M.C.), the National Institutes of Health (Grant NS079855 to M.C. and Grant NS079702 to A.C.L.), the Dubbs Fellowship Fund (T.M.), Sigma Xi (GIAR Grant G20141015648241 to T.M.), Autifony Therapeutics, Ltd. (M.C.), and the Luso-American Development Foundation (V.P.). We thank Drs. Matthew Dalva, Melanie Elliott, Ethan Goldberg, David Ritter, and Benjamin Zemel, and members of the Covarrubias laboratory for helpful comments and feedback on previous versions of this manuscript; members of the Dalva laboratory for sharing reagents; and Dr. Bruce Bean for providing helpful tips regarding the effects of Kv channel inhibitors on the AP in the DRG.por
dc.language.isoengpor
dc.publisherSociety for Neurosciencepor
dc.rightsopenAccess-
dc.subjectKv channelpor
dc.subjectpain transductionpor
dc.subjectspinal cordpor
dc.subjectsynaptic transmissionpor
dc.titleRegulation of Nociceptive Glutamatergic Signaling by Presynaptic Kv3.4 Channels in the Rat Spinal Dorsal Hornpor
dc.typearticlepor
dc.peerreviewedyespor
dc.relation.publisherversionhttp://www.jneurosci.org/content/early/2018/03/14/jneurosci.3212-17.2018por
oaire.citationStartPage3729por
oaire.citationEndPage3740por
oaire.citationIssue15por
oaire.citationVolume38por
dc.identifier.eissn1529-2401-
dc.identifier.doi10.1523/JNEUROSCI.3212-17.2018por
dc.identifier.pmid29540546por
dc.subject.fosCiências Médicas::Medicina Básicapor
dc.description.publicationversioninfo:eu-repo/semantics/publishedVersionpor
dc.subject.wosScience & Technologypor
sdum.journalJournal of Neurosciencepor
Aparece nas coleções:ICVS - Artigos em revistas internacionais / Papers in international journals


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