Induction of CB1 cannabinoid receptor by inflammation in primary afferent neurons facilitates antihyperalgesic effect of peripheral CB1 agonist
- 1 September 2006
- journal article
- research article
- Published by Wolters Kluwer Health in PAIN®
- Vol. 124 (1) , 175-183
- https://doi.org/10.1016/j.pain.2006.04.001
Abstract
Cannabinoids act on various regions in the nervous system to modulate neuronal activity including nociception. Here, we investigated CB1 receptor expression in primary afferent neurons in the dorsal root ganglion (DRG) and the efficacy of a local (intraplantar) application of the selective CB1 agonist, 2-arachidonyl-2-chloroethylamide (ACEA), on inflammatory thermal hyperalgesia. In situ hybridization showed normal CB1 mRNA expression in 28% of DRG neurons. Peripheral inflammation by CFA (complete Freund's adjuvant) significantly increased the ratio of CB1 mRNA-positive neurons to 43%, primarily with increase in NF200-negative C-fiber nociceptors. Furthermore, CB1 and TRPV1 (transient potential receptor vanilloid subtype-1) co-localization was increased from 41% before inflammation to 67% two days after inflammation. Inflammation also increased CB1 immunoreactivity in DRG neurons and in nerve fibers of the hindpaw dermis, indicating increased CB1 transport from the cell body to the peripheral nerve. The intraplantar application of ACEA attenuated CFA-induced thermal hyperalgesia. The antinociceptive properties of ACEA became more prominent at 2 days after inflammation, compared with those in non-inflamed and inflamed animals at 8 h. These results suggest that CB1 expression in primary afferent neurons is increased by inflammation and that the subsequent increase in CB1 transport to peripheral axons contributes to the increased antihyperalgesic efficacy of locally administered CB1 agonist.Keywords
This publication has 46 references indexed in Scilit:
- NGF and GDNF differentially regulate TRPV1 expression that contributes to development of inflammatory thermal hyperalgesiaEuropean Journal of Neuroscience, 2004
- Anandamide regulates neuropeptide release from capsaicin‐sensitive primary sensory neurons by activating both the cannabinoid 1 receptor and the vanilloid receptor 1 in vitroEuropean Journal of Neuroscience, 2003
- Localisation of cannabinoid receptor 1 in rat dorsal root ganglion using in situ hybridisation and immunohistochemistryNeuroscience, 2003
- Local inflammation increases vanilloid receptor 1 expression within distinct subgroups of DRG neuronsBrain Research, 2002
- Cannabinoid 1 receptors are expressed by nerve growth factor- and glial cell-derived neurotrophic factor-responsive primary sensory neuronesNeuroscience, 2001
- Peripheral capsaicin receptors increase in the inflamed rat hindpaw: a possible mechanism for peripheral sensitizationNeuroscience Letters, 2001
- Are cannabinoids an effective and safe treatment option in the management of pain? A qualitative systematic reviewBMJ, 2001
- Cannabinoid 1 receptors are expressed in nociceptive primary sensory neuronsNeuroscience, 2000
- Diversity of Expression of the Sensory Neuron-Specific TTX-Resistant Voltage-Gated Sodium Ion Channels SNS and SNS2Molecular and Cellular Neuroscience, 2000
- Control of pain initiation by endogenous cannabinoidsNature, 1998