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Published on: July 29, 2014
Dopaminergic and Opioid Systems Interact to Produce Peripheral Antinociception in Mice
Bárbara F G Queiroz1, Walace C P Barra1, Flávia C S Fonseca1
1Laboratory of Pain and Analgesia, Department of Pharmacology, Institute of Biological Sciences, Federal University of Minas Gerais, 31270901 Belo Horizonte, Minas Gerais, Brazil.
Background:
The overall pain experience results from the balance between the nociceptive pathway and the body's endogenous modulation of nociception. The interaction of these systems reduces nociception. Therefore, this study aimed to evaluate how the opioid and dopaminergic systems collaborate to inhibit pain at the peripheral level.
Methods:
Swiss mice (30-40 g) had their pain sensitivity increased through paw administration of the prostaglandin E2 (2 μg). They then received opioid and dopaminergic receptor antagonists and agonists, along with an inhibitor of endogenous opioid peptide degradation and a dopamine (DA) reuptake inhibitor. The nociceptive threshold was measured using the paw withdrawal test. Groups were compared using one-way analysis of variance (ANOVA), with p < 0.05 considered significant.
Results:
The nonselective opioid receptor antagonist naloxone (50 μg/paw) and the selective κ nor-BNI (200 μg/paw; nor-Binaltorphimine) and δ naltrindole (60 μg/paw) receptor antagonists reversed the antinociception caused by peripheral administration of DA (80 ng/paw), but not the μ-opioid receptor antagonist CTOP (20 μg/paw; D-Phe-Cys-Tyr-D-Trp-Orn-Thr-Pen-Thr-NH2). The antinociception induced by a submaximal dose of DA (5 ng/paw) was enhanced by bestatin (400 μg/paw), an inhibitor of endogenous opioid peptide degradation. Conversely, peripheral antinociception from submaximal doses of the μ-, δ-, and κ-opioid agonists DAMGO (0.25 μg/paw; [D-Ala2, N-Me-Phe4, Gly5-ol]-Enkephalin), SNC 80 (5 μg/paw; (+)-4-[(αR)-α-((2S,5R)-4-Allyl-2,5-dimethyl-1-piperazinyl)-3-methoxybenzyl]-N,N-diethylbenzamide), and bremazocine (200 ng/paw) was increased by the DA reuptake inhibitor GBR 12783 (16 μg/paw; 1-(2-Diphenylmethoxyethyl)-4-(3-phenyl-2-propenyl)-piperazine). Furthermore, the antinociception from these agonists' maximum doses was reversed by dopaminergic D2 (remoxipride, 4 μg/paw) and D3 (U99194, 16 μg/paw; 2,3-Dihydro-5,6-dimethoxy-N, N-dipropyl-1H-inden-2-amine) receptor antagonists, but not by the D4 (L-745, 870, 16 μg/paw; 3-(4-[4-Chlorophenyl]piperazin-1-yl)-methyl-1H-pyrrolo[2,3-b]pyridine trihydrochloride) receptor antagonist.
Conclusions:
Overall, the data suggest that opioid-mediated antinociception depends on the activation of the dopaminergic system. This demonstrates that pain modulation can be enhanced through the interaction of these systems. Controlling pain at a peripheral level by activating endogenous pathways could be a promising approach to pain management.
Insights
Opioid pain relief relies on dopamine system activation. Enhancing pain modulation via these interacting systems offers a promising peripheral pain management strategy.
Area of Science:
- Neuroscience
- Pharmacology
- Pain Research
Background:
- Pain perception involves a balance between nociception and endogenous pain modulation.
- Understanding the interplay between opioid and dopaminergic systems is crucial for pain management.
Purpose of the Study:
- To investigate the collaborative role of opioid and dopaminergic systems in peripheral pain inhibition.
- To explore how these systems interact to modulate nociception.
Main Methods:
- Pain sensitivity was induced in mice using prostaglandin E2.
- Mice received opioid/dopaminergic receptor agonists/antagonists, an opioid peptide degradation inhibitor, and a dopamine reuptake inhibitor.
- Paw withdrawal test measured nociceptive thresholds, analyzed via ANOVA.
Main Results:
- Opioid receptor antagonists reversed dopamine-induced antinociception, except for the μ-opioid antagonist.
- Dopamine enhanced antinociception from opioid agonists, and dopamine reuptake inhibition boosted opioid agonist effects.
- Dopaminergic D2 and D3 receptor antagonists, but not D4, reversed opioid agonist-induced antinociception.
Conclusions:
- Opioid-mediated antinociception is dependent on dopaminergic system activation.
- Interactions between opioid and dopaminergic systems can enhance pain modulation.
- Targeting peripheral endogenous pathways presents a potential strategy for pain management.
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