Opiate anti-nociception is attenuated following lesion of large dopamine neurons of the periaqueductal grey: critical role for D1 (not D2) dopamine receptors
- 1 July 2004
- journal article
- research article
- Published by Wolters Kluwer Health in Pain
- Vol. 110 (1) , 205-214
- https://doi.org/10.1016/j.pain.2004.03.036
Abstract
The periaqueductal grey (PAG) area is involved in pain modulation as well as in opiate-induced anti-nociceptive effects. The PAG possess dopamine neurons, and it is likely that this dopaminergic network participates in anti-nociception. The objective was to further study the morphology of the PAG dopaminergic network, along with its role in nociception and opiate-induced analgesia in rats, following either dopamine depletion with the toxin 6-hydroxydopamine or local injection of dopaminergic antagonists. Nociceptive responses were studied through the tail-immersion (spinal reflex) and the hot-plate tests (integrated supraspinal response), establishing a cut-off time to further minimize animal suffering. Heroin and morphine were employed as opiates. Histological data indicated that the dopaminergic network of the PAG is composed of two types of neurons: small rounded cells, and large multipolar neurons. Following dopamine depletion of the PAG, large neurons (not small ones) were selectively affected by the toxin (61.9% dopamine cell loss, 80.7% reduction of in vitro dopaminergic peak), and opiate-induced analgesia in the hot-plate test (not the tail-immersion test) was reliably attenuated in lesioned rats (P < 0.01). After infusions of dopaminergic ligands into the PAG, D(1) (not D(2)) receptor antagonism attenuated opiate-induced analgesia in a dose-dependent manner in the hot-plate test. The present study provides evidence that large neurons of the dopaminergic network of the PAG participate in supraspinal (not spinal) nociceptive responses after opiates through the involvement of D(1) dopamine receptors. This dopaminergic system should be included as another network within the PAG involved in opiate-induced anti-nociception.Keywords
This publication has 44 references indexed in Scilit:
- Adrenergic hyperactivity and metanephrine excess in the nucleus accumbens after prefrontocortical dopamine depletion.Journal of Neurophysiology, 2001
- Endogenous Opioid Peptides Acting at μ-Opioid Receptors in the Dorsal Horn Contribute to Midbrain Modulation of Spinal Nociceptive NeuronsJournal of Neurophysiology, 1998
- Effects of morphine and naloxone on behaviour in the hot plate test: an ethopharmacological study in the ratPsychopharmacology, 1994
- Structure of the rat's behaviour in the hot plate testBehavioural Brain Research, 1993
- The effect of [met]enkephalin on the periaqueductal gray neurons of the rat: An in vitro studyNeuroscience, 1990
- Suppression of the jaw-opening reflex by periaqueductal gray stimulation is decreased by paramedian brainstem lesionsBrain Research, 1987
- Morphine microinjected into the periaqueductal gray has differential effects on 3 classes of medullary neuronsBrain Research, 1986
- Endogenous Pain Control Systems: Brainstem Spinal Pathways and Endorphin CircuitryAnnual Review of Neuroscience, 1984
- The sites of origin brain stem neurotensin and serotonin projections to the rodent nucleus raphe magnusJournal of Neuroscience, 1982
- Analgesia induced by microinjection of morphine into, and electrical stimulation of, the nucleus reticularis paragigantocellularis of rat medulla oblongataNeuropharmacology, 1978