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Neuroscience ; 159(2): 559-69, 2009 Mar 17.
Article in English | MEDLINE | ID: mdl-19162133

ABSTRACT

The tetrodotoxin-resistant (TTX-R) voltage-gated Na(+) channels Na(v)1.8 and Na(v)1.9 are expressed by a subset of primary sensory neurons and have been implicated in various pain states. Although recent studies suggest involvement of TTX-R Na(+) channels in sensory synaptic transmission and spinal pain processing, it remains unknown whether TTX-R Na(+) channels are expressed and function presynaptically. We examined expression of TTX-R channels at sensory synapses formed between rat dorsal root ganglion (DRG) and spinal cord (SC) neurons in a DRG/SC co-culture system. Immunostaining showed extensive labeling of presynaptic axonal boutons with Na(v)1.8- and Na(v)1.9-specific antibodies. Measurements using the fluorescent Na(+) indicator SBFI demonstrated action potential-induced presynaptic Na(+) entry that was resistant to tetrodotoxin (TTX) but was blocked by lidocaine. Furthermore, presynaptic [Ca(2+)](i) elevation in response to a single action potential was not affected by TTX in TTX-resistant DRG neurons. Finally, glutamatergic synaptic transmission was not inhibited by TTX in more than 50% of synaptic pairs examined; subsequent treatment with lidocaine completely blocked these TTX-resistant excitatory postsynaptic currents. Taken together, these results provide evidence for presynaptic expression of functional TTX-R Na(+) channels that may be important for shaping presynaptic action potentials and regulating transmitter release at the first sensory synapse.


Subject(s)
Ganglia, Spinal/cytology , Presynaptic Terminals/metabolism , Sensory Receptor Cells/cytology , Sodium Channel Blockers/pharmacology , Sodium Channels/metabolism , Tetrodotoxin/pharmacology , Action Potentials/drug effects , Action Potentials/physiology , Anesthetics, Local/pharmacology , Animals , Animals, Newborn , Benzofurans/metabolism , Biophysics , Calcium/metabolism , Cells, Cultured , Coculture Techniques , Disks Large Homolog 4 Protein , Electric Stimulation , Ethers, Cyclic/metabolism , Extracellular Fluid/drug effects , Extracellular Fluid/metabolism , Intracellular Signaling Peptides and Proteins/metabolism , Ion Channel Gating/drug effects , Lidocaine/pharmacology , Membrane Proteins/metabolism , NAV1.8 Voltage-Gated Sodium Channel , NAV1.9 Voltage-Gated Sodium Channel , Nerve Tissue Proteins/metabolism , Neuropeptides/metabolism , Patch-Clamp Techniques/methods , Rats , Rats, Sprague-Dawley , Sensory Receptor Cells/drug effects , Sodium/metabolism , Sodium Channels/drug effects , Spinal Cord/cytology , Synapses/drug effects , Synapses/physiology
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