D1 and D2 dopamine receptor modulation of sodium and potassium currents in rat neostriatal neurons.
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Summary
The potassium and sodium currents in acutely isolated neostriatal neurons are modulated by activation of both D1- and D2-class receptors and the amplification of mRNA in individual neurons supports this conclusion and has shown that striatonigral neurons express not only D1 and D1 receptors, but D3 receptors as well.
- Type
- review
- Published
- 1993-01-01
- Cited by
- 134
- References
- 53
- OpenAlex
- https://openalex.org/W1008413412
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:33831977
Keywords
Neuroscience, Dopamine, Striatum, Medium spiny neuron, Dopaminergic
References
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- Hyperpolarizing and depolarizing actions of dopamine via D-1 and D-2 receptors on nucleus accumbens neurons.
- Molecular cloning and characterization of a novel dopamine receptor (D3) as a target for neuroleptics
- Intracellular studies on the dopamine-induced firing inhibition of neostriatal neurons in vitro: evidence for D1 receptor involvement.
- Cloning, molecular characterization, and chromosomal assignment of a gene encoding a second D1 dopamine receptor subtype: differential expression pattern in rat brain compared with the D1A receptor.
- Excitatory and inhibitory effects of dopamine on neuronal activity of the caudate nucleus neurons in vitro.
- Is stimulation of both D1 and D2 receptors necessary for the expression of dopamine-mediated behaviors?
- Intrinsic membrane properties of neostriatal neurons can account for their low level of spontaneous activity.
- Dopamine receptor interactions: some implications for the treatment of Parkinson's disease.
- Cloning and expression of a rat D2 dopamine receptor cDNA
- Muscarinic regulation of cyclic AMP metabolism in rat neostriatal cultures.
- Functional modulation of brain sodium channels by cAMP-dependent phosphorylation.
- The immunocytochemical localization of enkephalin in the central nervous system of the rat
- Iontophoretically applied dopamine depolarizes and hyperpolarizes the membrane of cat caudate neurons.
- Analysis of gene expression in single live neurons.
- D1 and D2 dopamine receptor-regulated gene expression of striatonigral and striatopallidal neurons.
- The action of dopamine on rat caudate neurones intracellularly recorded.
Cited by
- The regulation of forebrain dopamine transmission: relevance to the pathophysiology and psychopathology of schizophrenia.
- Dopaminergic modulation of neuronal excitability in the striatum and nucleus accumbens.
- GTPγS increases Nav1.8 current in small-diameter dorsal root ganglia neurons
- Brain Oscillations, Medium Spiny Neurons, and Dopamine
- Neurochemistry of Parkinson's disease.
- Dopamine in the CNS I
- Caractérisation des sous-unités principales et auxiliaires des canaux sodium dépendant du potentiel exprimées dans le système nerveux central de l'insecte periplaneta americana
- Dopaminergic regulation of limbic-striatal interplay.
- The role of dopamine in modulating the structure and function of striatal circuits
- Dopamine Selectively Inhibits the Direct Cortical Pathway to the CA1 Hippocampal Region
- Modulation of Hippocampal and Amygdalar-Evoked Activity of Nucleus Accumbens Neurons by Dopamine: Cellular Mechanisms of Input Selection
- Turning off cortical ensembles stops striatal Up states and elicits phase perturbations in cortical and striatal slow oscillations in rat in vivo
- A network model of basal ganglia for understanding the roles of dopamine and serotonin in reward-punishment-risk based decision making
- Dopaminergic modulation of axonal potassium channels and action potential waveform in pyramidal neurons of prefrontal cortex
- Dopamine receptor pharmacology.
- Distinct roles of presynaptic dopamine receptors in the differential modulation of the intrinsic synapses of medium-spiny neurons in the nucleus accumbens
- Cooperative Activation of Dopamine D1 and D2 Receptors Increases Spike Firing of Nucleus Accumbens Neurons via G-Protein βγ Subunits
- D1/D5 Dopamine Receptor Activation Differentially Modulates Rapidly Inactivating and Persistent Sodium Currents in Prefrontal Cortex Pyramidal Neurons
- Dopamine Modulates the Responsivity of Mediodorsal Thalamic Cells Recorded In Vitro
- Dopamine receptor signaling and current and future antipsychotic drugs
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