Hypoactivity of the Spinal Cannabinoid System Results in NMDA-Dependent Hyperalgesia
Open Access
- 1 January 1998
- journal article
- Published by Society for Neuroscience in Journal of Neuroscience
- Vol. 18 (1) , 451-457
- https://doi.org/10.1523/jneurosci.18-01-00451.1998
Abstract
Cannabinoids, such as Δ9-THC, are capable of inhibiting nociception, i.e., pain transmission, at least in part, by interacting with spinal Gi/Go-coupled cannabinoid receptors. What is not known, however, is the antinociceptive role of endogenous spinal cannabinoids. If endogenous cannabinoids modulate basal nociceptive thresholds, then alterations in this system could be involved in the etiology of certain pain states. In this report we provide evidence for tonic modulation of basal thermal nociceptive thresholds by the spinal cannabinoid system. Administration of oligonucleotides directed against CB1cannabinoid receptor mRNA significantly reduced spinal cannabinoid binding sites and produced significant hyperalgesia when compared with a randomer oligonucleotide control. A second method used to reduce activity of the spinal cannabinoid receptor was intrathecal administration of the cannabinoid receptor antagonist SR 141716A. SR 141716A evoked thermal hyperalgesia with an ED50 of 0.0012 fmol. The SR 141716A-induced hyperalgesia was dose-dependently blocked by the administration of d-AP-5 or MK-801, two antagonists to the NMDA receptor. These results indicate that there is tonic activation of the spinal cannabinoid system under normal conditions. Furthermore, hypoactivity of the spinal cannabinoid system results in an NMDA-dependent hyperalgesia and thus may participate in the etiology of certain chronic pain states.Keywords
This publication has 24 references indexed in Scilit:
- Cannabinoid modulation of drug reward and the implications of marijuana legalizationBrain Research, 2014
- The analgesic effects of R(+)-WIN 55,212–2 mesylate, a high affinity cannabinoid agonist, in a rat model of neuropathic painPublished by Elsevier ,1997
- Characterisation of the rat cerebella CB1 receptor using SR141716A, a central cannabinoid receptor antagonistNeuroscience Letters, 1996
- Antisense oligodeoxynucleotide treatment to the brain cannabinoid receptor inhibits antinociceptionNeuroReport, 1996
- Activation of inwardly rectifying potassium channels (GIRK1) by co-expressed rat brain cannabinoid receptors in Xenopus oocytesNeuroscience Letters, 1995
- Increased transmitter release at excitatory synapses produced by direct activation of adenylate cyclase in rat hippocampal slicesJournal of Neuroscience, 1994
- Cannabinoid receptor agonists inhibit Ca current in NG108–15 neuroblastoma cells via a Pertussis toxin‐sensitive mechanismBritish Journal of Pharmacology, 1992
- Characterization and localization of cannabinoid receptors in rat brain: a quantitative in vitro autoradiographic studyJournal of Neuroscience, 1991
- Glutamate and substance P coexist in primary afferent terminals in the superficial laminae of spinal cord.Proceedings of the National Academy of Sciences, 1988
- Peripheral and spinal mechanisms of nociception.Physiological Reviews, 1987