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Mu Opioid Receptor Activation Is Required for NMDA Receptor Antagonist Effects on Stress-Induced Maladaptive Behavior
Cory B Langreck1, Briana Chen2, Victor M Luna3
1Doctoral Program in Pharmacology and Molecular Signaling, Department of Molecular Pharmacology and Therapeutics, Columbia University Irving Medical Center, New York, New York; Division of Molecular Therapeutics, Research Foundation for Mental Hygiene, Inc., New York State Psychiatric Institute, New York, New York; Department of Molecular Pharmacology and Therapeutics, Columbia University Irving Medical Center, New York, New York.
Background:
Contradictory evidence has emerged regarding the role of the mu opioid receptor (MOR) in the antidepressant actions of (R,S)-ketamine.
Methods:
Here, we used the long-acting MOR-selective antagonist methocinnamox (MCAM) to determine the contribution of MOR to the actions of (R,S)-ketamine and the more selective NMDA receptor (NMDAR) antagonist fluoroethylnormemantine (FENM) against stress-induced maladaptive behaviors. (R,S)-ketamine enantiomers and metabolites and FENM were assessed for their ability to directly activate MOR in cell signaling assays. (R,S)-ketamine and FENM were tested in various behavioral paradigms with vehicle or MCAM pretreatment. Patch clamp electrophysiology was used to determine the effects of MOR antagonism on ventral hippocampal CA3 glutamatergic activity after (R,S)-ketamine administration.
Results:
(R,S)-ketamine and its enantiomers showed weak partial agonism of MOR, whereas the potency and efficacy of FENM were negligible. The antinociceptive effect of (R,S)-ketamine was both more potent and more sensitive to blockade by MCAM than that of FENM. When given either before or after stress, both (R,S)-ketamine and FENM reduced behavioral despair. MCAM prevented the effects of both NMDAR antagonists given before or after stress, despite their differences in direct MOR activity and antinociception.
Conclusions:
MOR activation is required for the efficacy of both (R,S)-ketamine and FENM against stress-induced maladaptive behavior, suggesting that these compounds function through an indirect effect of NMDAR antagonism on endogenous opioid signaling.
Insights
The mu opioid receptor (MOR) is essential for the antidepressant effects of (R,S)-ketamine and fluoroethylnormemantine (FENM). Antagonizing MOR blocks the therapeutic actions of these N-methyl-D-aspartate receptor (NMDAR) antagonists against stress behaviors.
Area of Science:
- Neuroscience
- Pharmacology
- Behavioral Science
Background:
- Conflicting data exists on the mu opioid receptor's (MOR) role in the antidepressant effects of (R,S)-ketamine.
- Investigating the MOR's contribution to antidepressant actions is crucial for understanding ketamine's therapeutic mechanisms.
Purpose of the Study:
- To elucidate the involvement of the MOR in the antidepressant actions of (R,S)-ketamine and fluoroethylnormemantine (FENM).
- To assess the direct MOR activity of (R,S)-ketamine and FENM.
- To determine the impact of MOR antagonism on NMDAR antagonist efficacy in stress-induced behaviors.
Main Methods:
- Utilized methocinnamox (MCAM), a long-acting MOR-selective antagonist.
- Assessed direct MOR activation by (R,S)-ketamine and FENM in cell signaling assays.
- Employed behavioral paradigms and patch clamp electrophysiology to evaluate drug effects and MOR antagonism.
Main Results:
- (R,S)-ketamine exhibited weak partial agonism of MOR; FENM's MOR activity was negligible.
- (R,S)-ketamine's antinociceptive effect was more sensitive to MOR blockade by MCAM than FENM's.
- MCAM pretreatment blocked the behavioral despair-reducing effects of both (R,S)-ketamine and FENM.
Conclusions:
- MOR activation is a prerequisite for the efficacy of both (R,S)-ketamine and FENM in mitigating stress-induced maladaptive behaviors.
- These findings suggest that NMDAR antagonists may exert their therapeutic effects via an indirect influence on endogenous opioid signaling pathways.
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