Hedonic hotspot in rat olfactory tubercle: map for mu-opioid, orexin, and muscimol enhancement of sucrose 'liking'.
Murata, K.; Berridge, K. C.
Show abstract
Pleasure plays a crucial role in positive reinforcement and motivation. Brain regions able to amplify positive hedonic reactions to sweetness, known as hedonic hotspots, are distributed within the mesocorticolimbic reward systems. The olfactory tubercle (OT), a part of the ventral striatum that receives olfactory input, contains distinct functional domains: the anteromedial domain mediates approach motivation toward odors associated with food, whereas the lateral domain mediates avoidance motivation away from odors associated with danger. However, it has remained unclear whether the OT modulates hedonic reactions to pleasant sensations. In this study, we made pharmacological microinjections in OT of in rats to examine whether these OT subregions can modulate hedonic reactions, as assessed by the taste reactivity test. Sweet oral infusions of sucrose solution were delivered into the mouth via an intraoral cannula, and the rats orofacial and somatic hedonic reactions were recorded and analyzed. We compared three pharmacological agents: mu-opioid receptor agonist DAMGO, orexin-A peptide, and GABAA receptor agonist muscimol. Microinjection of any of these drugs into the anteromedial OT subregion enhanced hedonic liking reactions to sucrose. Furthermore, DAMGO injection into the anteromedial OT subregion recruited distant Fos expression in other hedonic hotspots, including in the caudal ventral pallidum and the rostromedial orbitofrontal cortex. By contrast, the same microinjections into the anterolateral OT subregion failed to enhance liking reactions and, DAMGO oppositely increased aversive disgust reactions. These findings suggest that the anteromedial OT contains a hedonic hotspot, whereas the anterolateral OT may contain a suppressive opioid hedonic coldspot. Thus, OT subregions may help causally modulate hedonic reactions to sweetness and flavor perception.
Matching journals
The top 8 journals account for 50% of the predicted probability mass.
Similar papers in this journal
Similar papers in this journal
- Behavioral and slice electrophysiological assessment of DREADD ligand, deschloroclozapine (DCZ), in rats. 93%
- Oxytocin via oxytocin receptor excites neurons in the endopiriform nucleus of juvenile mice 92%
- Nicotine and Opioid Polysubstance Abuse: Enhancement of opioid self-administration by systemic nicotine and modulation of opioid-associated memories by insular nicotine 92%
Similar papers in this journal
- Adolescent Alcohol Exposure Promotes Mechanical Allodynia and Alters Synaptic Function at Inputs from the Basolateral Amgydala to the Prelimbic Cortex 94%
- The Paraventricular Thalamus is a Critical Mediator of Top-down Control of Cue-motivated Behavior in Rats 94%
- Alcohol Drinking Alters Stress Response to Predator Odor via Extended Amygdala Kappa Opioid Receptor Signaling in Male Mice 93%
Similar papers in this journal
- On the early-life origins of vulnerability to opioid addiction 93%
- Sex-specific GABAergic microcircuits that switch vulnerability into resilience to stress and reverse the effects of chronic stress exposure 93%
- The serotonin 1B receptor is required for some of the behavioral effects of psilocybin in mice 93%
Similar papers in this journal
"Similar papers" are the closest papers from that journal in the model's embedding space. They show what the match is built on, but the ranking comes mostly from a classifier over the whole training set, not from these examples alone.