Alcohol use disorders have an enormous societal and fiscal impact in the United States. Moreover, alcohol is the third leading cause of preventable death (Mokdad et al., 2004). Elucidating the neuronal circuitry that contributes to the rewarding properties of alcohol may provide insight into therapeutic mechanisms for treating alcohol use disorders. The central nucleus of the amygdala (CeA) has been shown to play a role in regulating various aspects of alcohol drinking behavior, however, the CeA is a heterogeneous nucleus where different genetically defined populations may contribute to ethanol related behaviors in different ways. This proposal aims to assess the causal role of CeA-neurotensin (NTS) neurons in mediating ethanol intoxication and self-administration using cutting edge tools. I will perform immunohistochemical, behavioral and electrophysiological experiments. In particular I will investigate the projection to the parabrachial nuclei (PBN) in the hindbrain, a region that is thought to play a major role in stress and anxiety. Through this research I plan to show that CeA-NTS neurons that project to the PBN are activated in response to alcohol and associated cues and mediate some of the rewarding properties of alcohol. These experiments will uncover new neuronal circuitry and mechanisms that may contribute to alcohol use disorders and allow for future targets for the treatment of this pathology.

Public Health Relevance

Alcohol use disorders are chronically relapsing diseases. The goal of this project is to uncover specific neuronal pathways and mechanisms that contribute to increased alcohol drinking and reward. Once these pathways and mechanisms are identified, treatment strategies can be developed to medically address this debilitating disease.

Agency
National Institute of Health (NIH)
Institute
National Institute on Alcohol Abuse and Alcoholism (NIAAA)
Type
Research Scientist Development Award - Research & Training (K01)
Project #
1K01AA023555-01
Application #
8805406
Study Section
Health Services Research Review Subcommittee (AA)
Program Officer
Liu, Qi-Ying
Project Start
2015-05-01
Project End
2020-04-30
Budget Start
2015-05-01
Budget End
2016-04-30
Support Year
1
Fiscal Year
2015
Total Cost
$135,039
Indirect Cost
$10,003
Name
University of North Carolina Chapel Hill
Department
Psychiatry
Type
Schools of Medicine
DUNS #
608195277
City
Chapel Hill
State
NC
Country
United States
Zip Code
27599
Mazzone, C M; Pati, D; Michaelides, M et al. (2018) Acute engagement of Gq-mediated signaling in the bed nucleus of the stria terminalis induces anxiety-like behavior. Mol Psychiatry 23:143-153
Radke, Anna K; Jury, Nicholas J; Kocharian, Adrina et al. (2017) Chronic EtOH effects on putative measures of compulsive behavior in mice. Addict Biol 22:423-434
McCall, Jordan G; Siuda, Edward R; Bhatti, Dionnet L et al. (2017) Locus coeruleus to basolateral amygdala noradrenergic projections promote anxiety-like behavior. Elife 6:
Jaramillo, Anel A; Agan, Verda E; Makhijani, Viren H et al. (2017) Functional role for suppression of the insular-striatal circuit in modulating interoceptive effects of alcohol. Addict Biol :
McHenry, Jenna A; Otis, James M; Rossi, Mark A et al. (2017) Hormonal gain control of a medial preoptic area social reward circuit. Nat Neurosci 20:449-458
Li, Chia; Sugam, Jonathan A; Lowery-Gionta, Emily G et al. (2016) Mu Opioid Receptor Modulation of Dopamine Neurons in the Periaqueductal Gray/Dorsal Raphe: A Role in Regulation of Pain. Neuropsychopharmacology 41:2122-32
Marcinkiewcz, Catherine A; Mazzone, Christopher M; D'Agostino, Giuseppe et al. (2016) Serotonin engages an anxiety and fear-promoting circuit in the extended amygdala. Nature 537:97-101
Sciolino, Natale R; Plummer, Nicholas W; Chen, Yu-Wei et al. (2016) Recombinase-Dependent Mouse Lines for Chemogenetic Activation of Genetically Defined Cell Types. Cell Rep 15:2563-73