Endocannabinoids (EC), particularly anandamide (AEA), released constitutively in pain pathways might be accountable for the inhibitory effect on nociceptors. Pathogenesis of neuropathic pain may reflect complex remodeling of the dorsal root ganglia (DRGs) and spinal cord EC system. Multiple pathways involved both in the biosynthesis and degradation of AEA have been suggested. We investigated the local synthesis and degradation features of AEA in DRGs and spinal cord during the development and maintenance of pain in a model of chronic constriction injury (CCI). All AEA synthesis and degradation enzymes are present on the mRNA level in DRGs and lumbar spinal cord of intact as well as CCI-treated animals. Deregulation of EC system components w...
Peripheral cannabinoid receptors exert a powerful inhibitory control over pain initiation, but the e...
Peripheral cannabinoid receptors exert a powerful inhibitory control over pain initiation, but the e...
Peripheral cannabinoid receptors exert a powerful inhibitory control over pain initiation, but the e...
Copyright © 2014 Natalia Malek et al. This is an open access article distributed under the Creative ...
The analgesic effects of cannabinoid ligands, mediated by CB1 receptors are well established. Howeve...
The analgesic effects of cannabinoid ligands, mediated by CB1 receptors are well established. Howeve...
Neuropathic pain elevates spinal anandamide (AEA) levels in a way further increased when URB597, an ...
Recent studies have shown that activation of the cannabinoid CB1 receptor by synthetic agonists, and...
Neuropathic pain elevates spinal anandamide (AEA) levels in a way further increased when URB597, an ...
Enhancement of the endocannabinoid (EC) system is analgesic in many models of acute and chronic pain...
The endogenous ligand N-arachydonoylethanolamine (anandamide) is an important modulator of nocicept...
Peripheral cannabinoid receptors exert a powerful inhibitory control over pain initiation, but the e...
Peripheral cannabinoid receptors exert a powerful inhibitory control over pain initiation, but the e...
Peripheral cannabinoid receptors exert a powerful inhibitory control over pain initiation, but the e...
Peripheral cannabinoid receptors exert a powerful inhibitory control over pain initiation, but the e...
Peripheral cannabinoid receptors exert a powerful inhibitory control over pain initiation, but the e...
Peripheral cannabinoid receptors exert a powerful inhibitory control over pain initiation, but the e...
Peripheral cannabinoid receptors exert a powerful inhibitory control over pain initiation, but the e...
Copyright © 2014 Natalia Malek et al. This is an open access article distributed under the Creative ...
The analgesic effects of cannabinoid ligands, mediated by CB1 receptors are well established. Howeve...
The analgesic effects of cannabinoid ligands, mediated by CB1 receptors are well established. Howeve...
Neuropathic pain elevates spinal anandamide (AEA) levels in a way further increased when URB597, an ...
Recent studies have shown that activation of the cannabinoid CB1 receptor by synthetic agonists, and...
Neuropathic pain elevates spinal anandamide (AEA) levels in a way further increased when URB597, an ...
Enhancement of the endocannabinoid (EC) system is analgesic in many models of acute and chronic pain...
The endogenous ligand N-arachydonoylethanolamine (anandamide) is an important modulator of nocicept...
Peripheral cannabinoid receptors exert a powerful inhibitory control over pain initiation, but the e...
Peripheral cannabinoid receptors exert a powerful inhibitory control over pain initiation, but the e...
Peripheral cannabinoid receptors exert a powerful inhibitory control over pain initiation, but the e...
Peripheral cannabinoid receptors exert a powerful inhibitory control over pain initiation, but the e...
Peripheral cannabinoid receptors exert a powerful inhibitory control over pain initiation, but the e...
Peripheral cannabinoid receptors exert a powerful inhibitory control over pain initiation, but the e...
Peripheral cannabinoid receptors exert a powerful inhibitory control over pain initiation, but the e...