Intracellular Messengers Contributing to Persistent Nociception and Hyperalgesia Induced by L‐Glutamate and Substance P in the Rat Formalin Pain Model
- 1 August 1994
- journal article
- Published by Wiley in European Journal of Neuroscience
- Vol. 6 (8) , 1328-1334
- https://doi.org/10.1111/j.1460-9568.1994.tb00323.x
Abstract
The contribution of the intracellular messengers nitric oxide, arachidonic acid and protein kinase C to persistent nociception in response to tissue injury in rats was examined following the subcutaneous injection of formalin into the hindpaw. Formalin injury-induced nociceptive behaviours were reduced by intrathecal pretreatment with inhibitors of nitric oxide synthase (NG-nitro-L-arginine methyl ester, L-NAME), arachidonic acid (dexamethasone) or protein kinase C [protein kinase C (19-26) and 1-95-(isoquinolinesulphonyl)-2-methylpiperazine dihydrochloride, H-7]. Each of these agents affected the tonic, but not the acute, phase of the formalin response. Furthermore, none of these agents affected mechanical or thermal flexion reflex thresholds in rats not injected with formalin. Conversely, formalin-induced nociceptive responses were enhanced by stimulators of nitric oxide (sodium nitroprusside), arachidonic acid metabolism (arachidonic acid) or protein kinase C [(+/-)-1-oleoyl-2-acetyl-glycerol], and were slightly reduced by inositol trisphosphate. Mechanical flexion reflexes were also reduced by arachidonic acid, while thermal flexion reflexes were reduced after treatment with sodium nitroprusside, arachidonic acid or [(+/-)-1-oleoyl-2-acetyl-glycerol]. The enhancement of formalin nociceptive behaviours (hyperalgesia) in rats treated with L-glutamate or substance P was reversed by pretreatment with inhibitors of nitric oxide (L-NAME), arachidonic acid (dexamethasone) or protein kinase C (H-7). The results suggest that central sensitization and persistent nociception following formalin-induced tissue injury, and the hyperalgesia in the formalin test induced by L-glutamate and substance P, are dependent on the intracellular messengers nitric oxide, arachidonic acid and protein kinase C.Keywords
This publication has 41 references indexed in Scilit:
- The spinal and peripheral roles of bradykinin and prostaglandins in nociceptive processing in the ratEuropean Journal of Pharmacology, 1992
- The contribution of excitatory amino acids to central sensitization and persistent nociception after formalin-induced tissue injuryJournal of Neuroscience, 1992
- The role of NMDA receptor-operated calcium channels in persistent nociception after formalin-induced tissue injuryJournal of Neuroscience, 1992
- Contribution of protein kinase C to central sensitization and persistent pain following tissue injuryNeuroscience Letters, 1992
- Central nervous system plasticity in the tonic pain response to subcutaneous formalin injectionBrain Research, 1990
- Arachidonic acid released from striatal neurons by joint stimulation of ionotropic and metabotropic quisqualate receptorsNature, 1990
- Noxious stimulus-induced increase in spinal prostaglandin E2 is noradrenergic terminal-dependentNeuroscience Letters, 1990
- NMDA receptors activate the arachidonic acid cascade system in striatal neuronsNature, 1988
- Subcutaneous formalin-induced activity of dorsal horn neurones in the rat: differential response to an intrathecal opiate administered pre or post formalinPain, 1987
- Evidence for a role of the NMDA receptor in the frequency dependent potentiation of deep rat dorsal horn nociceptive neurones following c fibre stimulation.Neuropharmacology, 1987