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Published on: July 29, 2014
Interactions between cannabinoid and opioid receptors in a mouse model of diabetic neuropathy
Elaine F Toniolo1,2,3,4, Achla Gupta3, Adriano C Franciosi1,2,4
1Department of Pharmacology, University of Sao Paulo, Sao Paulo, Brazil.
Abstract:
Diabetic neuropathy, often associated with diabetes mellitus, is a painful condition with no known effective treatment except glycemic control. Studies with neuropathic pain models report alterations in cannabinoid and opioid receptor expression levels; receptors whose activation induces analgesia. We examined whether interactions between CB1R and opioid receptors could be targeted for the treatment of diabetic neuropathy. For this, we generated antibodies that selectively recognize native CB1R-MOR and CB1R-DOR heteromers using a subtractive immunization strategy. We assessed the levels of CB1R, MOR, DOR, and interacting complexes using a model of streptozotocin-induced diabetic neuropathy and detected increased levels of CB1R, MOR, DOR, and CB1R-MOR complexes compared with those in controls. An examination of G-protein signaling revealed that activity induced by the MOR, but not the DOR agonist, was potentiated by low nanomolar doses of CB1R ligands, including antagonists, suggesting an allosteric modulation of MOR signaling by CB1R ligands within CB1R-MOR complexes. Because the peptide endocannabinoid, hemopressin, caused a significant potentiation of MOR activity, we examined its effect on mechanical allodynia and found that it blocked allodynia in wild-type mice and mice with diabetic neuropathy lacking DOR (but have CB1R-MOR complexes). However, hemopressin does not alter the levels of CB1R-MOR complexes in diabetic mice lacking DOR but increases the levels of CB1R-DOR complexes in diabetic mice lacking MOR. Together, these results suggest the involvement of CB1R-MOR and CB1R-DOR complexes in diabetic neuropathy and that hemopressin could be developed as a potential therapeutic for the treatment of this painful condition.
Insights
New research explores targeting cannabinoid and opioid receptor interactions for diabetic neuropathy pain relief. Hemopressin shows promise as a potential therapeutic by modulating these receptor complexes.
Area of Science:
- Neuroscience
- Pharmacology
- Immunology
Background:
- Diabetic neuropathy causes significant pain with limited treatment options beyond glycemic control.
- Altered cannabinoid receptor 1 (CB1R) and opioid receptor expression is observed in neuropathic pain models.
- Investigating receptor heteromers offers a novel therapeutic avenue for neuropathic pain.
Purpose of the Study:
- To investigate the therapeutic potential of targeting cannabinoid and opioid receptor heteromers in diabetic neuropathy.
- To characterize the role of CB1R-MOR and CB1R-DOR heteromers in a mouse model of diabetic neuropathy.
Main Methods:
- Generated specific antibodies for CB1R-MOR and CB1R-DOR heteromers.
- Assessed receptor and heteromer levels in streptozotocin-induced diabetic neuropathy mice.
- Examined G-protein signaling and the effects of ligands and hemopressin on allodynia and receptor complexes.
Main Results:
- Increased levels of CB1R, MOR, DOR, and CB1R-MOR complexes were found in diabetic neuropathy mice.
- CB1R ligands allosterically modulated MOR signaling within CB1R-MOR complexes.
- Hemopressin blocked mechanical allodynia in diabetic neuropathy mice and modulated heteromer levels depending on receptor presence.
Conclusions:
- CB1R-MOR and CB1R-DOR heteromeric complexes are implicated in the pathophysiology of diabetic neuropathy.
- The peptide endocannabinoid hemopressin demonstrates potential as a therapeutic agent for diabetic neuropathy pain.
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