Dopamine receptor signaling in the medial orbital frontal cortex and the acquisition and expression of fructose-conditioned flavor preferences in rats.

PubWeight™: 0.76‹?›

🔗 View Article (PMID 25446441)

Published in Brain Res on November 20, 2014

Authors

Danielle C Malkusz1, Ira Yenko2, Francis M Rotella1, Theodore Banakos2, Kerstin Olsson2, Trisha Dindyal2, Vishal Vig2, Richard J Bodnar3

Author Affiliations

1: Behavioral and Cognitive Neuroscience Cluster, Psychology Doctoral Program, The Graduate Center, City University of New York, New York, NY, United States.
2: Department of Psychology, Queens College, City University of New York, New York, NY, United States.
3: Behavioral and Cognitive Neuroscience Cluster, Psychology Doctoral Program, The Graduate Center, City University of New York, New York, NY, United States; Department of Psychology, Queens College, City University of New York, New York, NY, United States. Electronic address: richard.bodnar@qc.cuny.edu.

Articles cited by this

Emotion and motivation: the role of the amygdala, ventral striatum, and prefrontal cortex. Neurosci Biobehav Rev (2002) 8.78

The projections of the ventral tegmental area and adjacent regions: a combined fluorescent retrograde tracer and immunofluorescence study in the rat. Brain Res Bull (1983) 5.23

Topographical organization of the efferent projections of the medial prefrontal cortex in the rat: an anterograde tract-tracing study with Phaseolus vulgaris leucoagglutinin. J Comp Neurol (1989) 4.96

The patterns of afferent innervation of the core and shell in the "accumbens" part of the rat ventral striatum: immunohistochemical detection of retrogradely transported fluoro-gold. J Comp Neurol (1993) 3.61

The organization of the projection from the cerebral cortex to the striatum in the rat. Neuroscience (1989) 3.57

Contrasting roles of basolateral amygdala and orbitofrontal cortex in impulsive choice. J Neurosci (2004) 3.48

Oral sucrose stimulation increases accumbens dopamine in the rat. Am J Physiol Regul Integr Comp Physiol (2003) 2.76

Topographical organization and relationship with ventral striatal compartments of prefrontal corticostriatal projections in the rat. J Comp Neurol (1992) 2.56

Dissociable aspects of performance on the 5-choice serial reaction time task following lesions of the dorsal anterior cingulate, infralimbic and orbitofrontal cortex in the rat: differential effects on selectivity, impulsivity and compulsivity. Behav Brain Res (2003) 2.50

The nucleus accumbens as part of a basal ganglia action selection circuit. Psychopharmacology (Berl) (2006) 2.14

Organization of amygdaloid projections to the prefrontal cortex and associated striatum in the rat. Neuroscience (1991) 1.99

Differential Expression of Motivational Stimulus Properties by Dopamine in Nucleus Accumbens Shell versus Core and Prefrontal Cortex. J Neurosci (2002) 1.81

Double dissociation between serotonergic and dopaminergic modulation of medial prefrontal and orbitofrontal cortex during a test of impulsive choice. Cereb Cortex (2005) 1.80

Distribution of dopaminergic receptors in the primate cerebral cortex: quantitative autoradiographic analysis using [3H]raclopride, [3H]spiperone and [3H]SCH23390. Neuroscience (1991) 1.74

D1 and D2 receptor gene expression in the rat frontal cortex: cellular localization in different classes of efferent neurons. Eur J Neurosci (1995) 1.62

Convergence and interaction of hippocampal and amygdalar projections within the prefrontal cortex in the rat. J Neurosci (2003) 1.56

Appetitive instrumental learning requires coincident activation of NMDA and dopamine D1 receptors within the medial prefrontal cortex. J Neurosci (2002) 1.55

Dorsomedial prefrontal cortex contribution to behavioral and nucleus accumbens neuronal responses to incentive cues. J Neurosci (2008) 1.44

A neural systems analysis of the potentiation of feeding by conditioned stimuli. Physiol Behav (2005) 1.43

Conditioned flavor avoidance, preference, and indifference produced by intragastric infusions of galactose, glucose, and fructose in rats. Physiol Behav (1999) 1.36

Intragastric glucose but not fructose conditions robust flavor preferences in rats. Am J Physiol (1993) 1.33

Projections of the medial orbital and ventral orbital cortex in the rat. J Comp Neurol (2011) 1.31

Activation of dopamine D1-like receptors in nucleus accumbens is critical for the acquisition, but not the expression, of nutrient-conditioned flavor preferences in rats. Eur J Neurosci (2008) 1.31

Medial prefrontal cortex is necessary for an appetitive contextual conditioned stimulus to promote eating in sated rats. J Neurosci (2007) 1.27

Cytoarchitectonic and chemoarchitectonic characterization of the prefrontal cortical areas in the mouse. Brain Struct Funct (2010) 1.26

Glucose- and fructose-conditioned flavor preferences in rats: taste versus postingestive conditioning. Physiol Behav (1994) 1.24

Dopamine D2 receptors in the cerebral cortex: distribution and pharmacological characterization with [3H]raclopride. Proc Natl Acad Sci U S A (1989) 1.15

The effect of orbital prefrontal cortex lesions on performance on a progressive ratio schedule: implications for models of inter-temporal choice. Behav Brain Res (2005) 1.15

Role of dopamine D1 and D2 receptors in the nucleus accumbens shell on the acquisition and expression of fructose-conditioned flavor-flavor preferences in rats. Behav Brain Res (2008) 1.14

Dopamine D1 and D2 antagonists reduce the acquisition and expression of flavor-preferences conditioned by fructose in rats. Pharmacol Biochem Behav (2003) 1.14

Rapid sampling of extracellular dopamine in the rat prefrontal cortex during food consumption, handling and exposure to novelty. Brain Res (1996) 1.14

D1 but not D2 dopamine receptor antagonism blocks the acquisition of a flavor preference conditioned by intragastric carbohydrate infusions. Pharmacol Biochem Behav (2001) 1.13

Dopamine D1-like receptor antagonism in amygdala impairs the acquisition of glucose-conditioned flavor preference in rats. Eur J Neurosci (2009) 1.09

Pharmacology of flavor preference conditioning in sham-feeding rats: effects of dopamine receptor antagonists. Pharmacol Biochem Behav (2000) 1.06

Dopamine alters AMPA receptor synaptic expression and subunit composition in dopamine neurons of the ventral tegmental area cultured with prefrontal cortex neurons. J Neurosci (2007) 1.05

Role of D(1) and D(2) dopamine receptors in the acquisition and expression of flavor-preference conditioning in sham-feeding rats. Pharmacol Biochem Behav (2000) 1.03

Dopamine D1 receptors co-distribute with N-methyl-D-aspartic acid type-1 subunits and modulate synaptically-evoked N-methyl-D-aspartic acid currents in rat basolateral amygdala. Neuroscience (2006) 1.01

NMDA receptor in conditioned flavor-taste preference learning: blockade by MK-801 and enhancement by D-cycloserine. Pharmacol Biochem Behav (2007) 1.00

How food preferences are learned: laboratory animal models. Proc Nutr Soc (1995) 0.98

Acquisition of glucose-conditioned flavor preference requires the activation of dopamine D1-like receptors within the medial prefrontal cortex in rats. Neurobiol Learn Mem (2010) 0.97

Pimozide decreases the positive reinforcing effect of sham fed sucrose in the rat. Pharmacol Biochem Behav (1985) 0.97

Raclopride reduces sucrose preference in rats. Pharmacol Biochem Behav (1995) 0.96

Dopaminergic involvement in medial prefrontal cortex and core of the nucleus accumbens in the regulation of ethanol self-administration: a dual-site microinjection study in the rat. Physiol Behav (2003) 0.95

Role of amygdala dopamine D1 and D2 receptors in the acquisition and expression of fructose-conditioned flavor preferences in rats. Behav Brain Res (2009) 0.94

Feeding can enhance dopamine turnover in the prefrontal cortex. Brain Res Bull (1990) 0.94

Dopamine in the prefrontal cortex regulates rats behavioral flexibility to changing reward value. Behav Brain Res (2008) 0.93

Central amygdalar and dorsal striatal NMDA receptor involvement in instrumental learning and spontaneous behavior. Behav Neurosci (2004) 0.93

The effects of pimozide on the consumption of a palatable saccharin-glucose solution in the rat. Pharmacol Biochem Behav (1981) 0.92

Spatial and intracellular relationships between the alpha7 nicotinic acetylcholine receptor and the vesicular acetylcholine transporter in the prefrontal cortex of rat and mouse. Neuroscience (2009) 0.92

Prefrontal cortical projections to the cholinergic neurons in the basal forebrain. J Comp Neurol (1991) 0.91

Effects of dopamine receptor antagonists on sucrose consumption and preference. Psychopharmacology (Berl) (1989) 0.90

Attenuated dopamine efflux in the rat nucleus accumbens during successive negative contrast. Behav Neurosci (2004) 0.90

Dopamine and acetylcholine elevation on lever-press acquisition in rat prefrontal cortex. Neurosci Lett (1998) 0.84

Dopamine signaling in the medial prefrontal cortex and amygdala is required for the acquisition of fructose-conditioned flavor preferences in rats. Behav Brain Res (2012) 0.84

Acetylcholine α7 nicotinic and dopamine D2 receptors are targeted to many of the same postsynaptic dendrites and astrocytes in the rodent prefrontal cortex. Synapse (2011) 0.80

Glucose-conditioned flavor preference learning requires co-activation of NMDA and dopamine D1-like receptors within the amygdala. Neurobiol Learn Mem (2013) 0.79

Feeding or exposure to food odors increases extracellular DOPAC levels (as measured by in vivo voltammetry) in the prefrontal cortex of food-deprived rats. Neurosci Lett (1989) 0.78

Critical role of NMDA but not opioid receptors in the acquisition of fat-conditioned flavor preferences in rats. Neurobiol Learn Mem (2012) 0.78

Effect of dopamine D1 and D2 receptor antagonism in the lateral hypothalamus on the expression and acquisition of fructose-conditioned flavor preference in rats. Brain Res (2013) 0.77

Roles of NMDA and dopamine D1 and D2 receptors in the acquisition and expression of flavor preferences conditioned by oral glucose in rats. Neurobiol Learn Mem (2014) 0.77