cAMP and cGMP Contribute to Sensory Neuron Hyperexcitability and Hyperalgesia in Rats With Dorsal Root Ganglia Compression
Open Access
- 1 January 2006
- journal article
- Published by American Physiological Society in Journal of Neurophysiology
- Vol. 95 (1), 479-492
- https://doi.org/10.1152/jn.00503.2005
Abstract
Numerous studies have implicated the cAMP-protein kinase A (PKA) pathway in producing hyperexcitability of dorsal root ganglia (DRG) sensory neurons under conditions associated with pain. Evidence is presented for roles of both the cAMP-PKA and cGMP-protein kinase G (PKG) pathways in maintaining neuronal hyperexcitability and behavioral hyperalgesia in a neuropathic pain model: chronic compression of the DRG (CCD treatment). Lumbar DRGs were compressed by a steel rod inserted into the intervertebral foramen. Thermal hyperalgesia was revealed by shortened latencies of foot withdrawal to radiant heat. Intracellular recordings were obtained in vitro from lumbar ganglia after in vivo DRG compression. Activators of the cAMP-PKA pathway, 8-Br-cAMP and Sp-cAMPS, and of the cGMP-PKG pathway, 8-Br-cGMP and Sp-cGMPS, increased the hyperexcitability of DRG neurons already produced by CCD treatment, as shown by further decreases in action potential threshold and increased repetitive discharge during depolarization. The adenylate cyclase inhibitor, SQ22536, the PKA antagonist, Rp-cAMPS, the guanylate cyclase inhibitor, ODQ, and the PKG inhibitor, Rp-8-pCPT-cGMPS, reduced the hyperexcitability of CCD DRG neurons. In vivo application of PKA and PKG antagonists transiently depressed behavioral hyperalgesia induced by CCD treatment. Unexpectedly, application of these agonists and antagonists to ganglia of naïve, uninjured animals had little effect on electrophysiological properties of DRG neurons and no effect on foot withdrawal, suggesting that sensitizing actions of these pathways in the DRG are enabled by prior injury or stress. The only effect observed in uncompressed ganglia was modest depolarization of DRG neurons by PKA and PKG agonists. CCD treatment also depolarized DRG neurons, but CCD-induced depolarization was not affected by agonists or antagonists of these pathways.Keywords
This publication has 96 references indexed in Scilit:
- Multiple Interacting Sites of Ectopic Spike Electrogenesis in Primary Sensory NeuronsJournal of Neuroscience, 2005
- Burst Discharge In Primary Sensory Neurons: Triggered By Subthreshold Oscillations, Maintained By Depolarizing AfterpotentialsJournal of the Peripheral Nervous System, 2002
- Different peripheral mechanisms mediate enhanced nociception in metabolic/toxic and traumatic painful peripheral neuropathies in the ratNeuroscience, 2002
- Axotomy- and Autotomy-Induced Changes in the Excitability of Rat Dorsal Root Ganglion NeuronsJournal of Neurophysiology, 2001
- Axotomy- and Autotomy-Induced Changes in Ca2+and K+ Channel Currents of Rat Dorsal Root Ganglion NeuronsJournal of Neurophysiology, 2001
- Voltage-Gated Calcium Currents in Axotomized Adult Rat Cutaneous Afferent NeuronsJournal of Neurophysiology, 2000
- Role of Protein Kinase A in the Maintenance of Inflammatory PainJournal of Neuroscience, 1999
- Nitric Oxide Signaling in Pain and Nociceptor Sensitization in the RatJournal of Neuroscience, 1998
- Stimulation of Cyclic GMP Production via a Nitrosyl Factor in Sensory Neuronal Cultures by Algesic or Inflammatory AgentsJournal of Neurochemistry, 1995
- Thresholds of action potentials evoked by synapses on the dendrites of pyramidal cells in the rat hippocampus in vitro.The Journal of Physiology, 1987