Differential Effects of Cocaine on Firing Rate and Pattern of Dopamine Neurons: Role of α1 Receptors and Comparison with l-Dopa and Apomorphine
- 1 April 2006
- journal article
- research article
- Published by Elsevier in The Journal of Pharmacology and Experimental Therapeutics
- Vol. 317 (1) , 196-201
- https://doi.org/10.1124/jpet.105.094045
Abstract
Psychostimulants, including cocaine, have two opposing effects on dopamine (DA) neurons: a DA-mediated inhibition and a non-DA-mediated excitation. The latter, expressed as an increase in both firing rate and a slow oscillation (SO) in firing pattern, has been shown to require forebrain inputs to DA neurons and activation of adrenergic α1 receptors. However, since the effect was observed when the DA-mediated inhibition was blocked by a D2 antagonist, it is uncertain whether the underlying mechanism also plays a role in cocaine's effects in normal animals where D2-like receptors are not blocked. This study showed that under such conditions, cocaine decreased firing rate and bursting without significantly inhibiting the SO in DA neurons recorded in the ventral tegmental area. Different from cocaine, l-dopa and apomorphine, two nonpsychostimulant DA agonists known to lack the α1-mediated excitatory effect, consistently inhibited all three measures of DA cell activity. Blockade of α1 receptors by prazosin did not enhance cocaine's ability to inhibit firing rate and bursting, but it did enable cocaine to inhibit the SO. These results suggest that in control rats where D2-like receptors are not blocked, α1 receptors play an important role in cocaine's effect on the SO but not in its effect on firing rate and bursting of DA neurons. The maintained SO after cocaine injection may reflect continued modulation of DA neurons by forebrain inputs, regulate the pattern of DA release, and provide a temporal structure for selection of synaptic inputs to DA neurons.Keywords
This publication has 28 references indexed in Scilit:
- Dopaminergic modulation of limbic and cortical drive of nucleus accumbens in goal-directed behaviorNature Neuroscience, 2005
- Neuronal Oscillations in Cortical NetworksScience, 2004
- Afferent modulation of dopamine neuron firing differentially regulates tonic and phasic dopamine transmissionNature Neuroscience, 2003
- Critical role of α1‐adrenergic receptors in acute and sensitized locomotor effects of D‐amphetamine, cocaine, and GBR 12783: Influence of preexposure conditions and pharmacological characteristicsSynapse, 2001
- Dynamic predictions: Oscillations and synchrony in top–down processingNature Reviews Neuroscience, 2001
- Importance of the Noradrenaline–Dopamine Coupling in the Locomotor Activating Effects of d-AmphetamineJournal of Neuroscience, 1998
- Prazosin attenuates the effects of cocaine on motor activity but not on schedule-controlled behavior in the ratPharmacology Biochemistry and Behavior, 1992
- Electrophysiological effects of cocaine in the mesoaccumbens dopamine system: studies in the ventral tegmental areaJournal of Neuroscience, 1988
- d-Amphetamine-induced depression of central dopamine neurons: Evidence for mediation by both autoreceptors and a striato-nigral feedback pathwayNaunyn-Schmiedebergs Archiv für experimentelle Pathologie und Pharmakologie, 1978
- d-Amphetamine-Induced Inhibition of Central Dopaminergic Neurons: Mediation by a Striato-Nigral Feedback PathwayScience, 1976