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Published on: July 29, 2014
Constitutive Desensitization of Opioid Receptors in Peripheral Sensory Neurons
Laura C Sullivan1, Teresa S Chavera1, Raehannah J Jamshidi1
1Department of Pharmacology, University of Texas Health Science Center at San Antonio, San Antonio, Texas.
Abstract:
Opioid receptors expressed by peripheral pain-sensing neurons are functionally inactive for antinociceptive signaling under most basal conditions; however, tissue damage or exposure to inflammatory mediators (e.g., bradykinin) converts these receptors from a nonresponsive state to a functionally competent state. Here we tested the hypothesis that the basal, nonresponsive state of the mu- and delta-opioid receptors (MOR and DOR, respectively) is the result of constitutive receptor activity that activates desensitization mechanisms, resulting in MOR and DOR receptor systems that are constitutively desensitized. Consistent with our previous findings, under basal conditions, neither the MOR agonist [d-Ala2,N-MePhe4,Gly-ol5]-enkephalin nor the DOR agonist [d-Pen2,5]-enkephalin, inhibited prostaglandin E2 (PGE2)-stimulated cAMP accumulation in peripheral sensory neurons in culture (ex vivo) or inhibited PGE2-stimulated thermal allodynia in the rat hind paw in vivo. Prolonged treatment with naloxone induced MOR and DOR responsiveness both in vivo and ex vivo to a similar magnitude as that produced by bradykinin. Also similar to bradykinin, the effect of naloxone persisted for 60 minutes after washout of the ligand. By contrast, prolonged treatment with 6β-naltrexol, did not induce functional competence of MOR or DOR but blocked the effect of naloxone. Treatment with siRNA for β-arrestin-2, but not β-arrestin-1, also induced MOR and DOR functional competence in cultured peripheral sensory neurons. These data suggest that the lack of responsiveness of MOR and DOR to agonist for antinociceptive signaling in peripheral sensory neurons is due to constitutive desensitization that is likely mediated by β-arrestin-2.
Insights
Peripheral opioid receptors (MOR and DOR) are unresponsive to agonists due to constitutive desensitization. Naloxone treatment, but not 6β-naltrexol, reverses this, suggesting β-arrestin-2 mediates this desensitization.
Area of Science:
- Neuroscience
- Pharmacology
- Pain Research
Background:
- Peripheral opioid receptors, specifically mu-opioid receptors (MOR) and delta-opioid receptors (DOR), are crucial for pain signaling.
- Under basal conditions, these receptors on peripheral pain-sensing neurons are functionally inactive for antinociception.
- Inflammatory mediators can convert these receptors to a responsive state.
Purpose of the Study:
- To test the hypothesis that basal unresponsiveness of MOR and DOR is due to constitutive desensitization.
- To investigate the mechanisms underlying this constitutive desensitization.
Main Methods:
- Ex vivo and in vivo experiments using cultured peripheral sensory neurons and rat hind paw models.
- Assays measuring prostaglandin E2 (PGE2)-stimulated cAMP accumulation and thermal allodynia.
- Treatment with opioid receptor agonists, naloxone, 6β-naltrexol, and siRNA for β-arrestin-1 and β-arrestin-2.
Main Results:
- Neither MOR nor DOR agonists inhibited PGE2-stimulated cAMP accumulation or thermal allodynia under basal conditions.
- Prolonged naloxone treatment induced MOR and DOR responsiveness, similar to bradykinin, which persisted after washout.
- 6β-naltrexol blocked naloxone's effect, while siRNA for β-arrestin-2, but not β-arrestin-1, induced receptor functional competence.
Conclusions:
- The lack of agonist responsiveness in peripheral MOR and DOR is attributed to constitutive desensitization.
- This desensitization is likely mediated by β-arrestin-2.
- Targeting β-arrestin-2 may offer novel strategies for pain management by restoring peripheral opioid efficacy.
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