Title | Extended Amygdala to Ventral Tegmental Area Corticotropin-Releasing Factor Circuit Controls Binge Ethanol Intake |
Publication Type | Journal Article |
Year of Publication | 2017 |
Authors | Rinker JA, S Marshall A, Mazzone CM, Lowery-Gionta EG, Gulati V, Pleil KE, Kash TL, Navarro M, Thiele TE |
Journal | Biol Psychiatry |
Volume | 81 |
Issue | 11 |
Pagination | 930-940 |
Date Published | 2017 Jun 01 |
ISSN | 1873-2402 |
Keywords | Acenaphthenes, Animals, Binge Drinking, Clozapine, Corticotropin-Releasing Hormone, CRF Receptor, Type 1, Designer Drugs, Male, Mice, Mice, Transgenic, Neural Pathways, Pyrimidines, Pyrroles, Receptors, Corticotropin-Releasing Hormone, Septal Nuclei, Urocortins, Ventral Tegmental Area |
Abstract | BACKGROUND: Corticotropin-releasing factor (CRF) signaling at the CRF1 receptor (CRF1R) in the ventral tegmental area (VTA) can modulate ethanol consumption in rodents. However, the effects of binge-like ethanol drinking on this system have not been thoroughly characterized, and little is known about the role of CRF2R or the CRF neurocircuitry involved. METHODS: The effects of binge-like ethanol consumption on the VTA CRF system were assessed following drinking-in-the-dark procedures. Intra-VTA infusions of selective CRF1R and/or CRF2R compounds were employed to assess the contributions of these receptors in modulating binge-like ethanol consumption (n = 89). To determine the potential role of CRF projections from the bed nucleus of the stria terminalis (BNST) to the VTA, CRF neurons in this circuit were chemogenetically inhibited (n = 32). Binge-induced changes in VTA CRF system protein and messenger RNA were also assessed (n = 58). RESULTS: Intra-VTA antagonism of CRF1R and activation of CRF2R resulted in decreased ethanol intake, which was eliminated by simultaneous blockade of both receptors. Chemogenetic inhibition of local CRF neurons in the VTA did not alter binge-like ethanol drinking, but inhibition of VTA-projecting CRF neurons from the BNST significantly reduced intake. CONCLUSIONS: We provide novel evidence that 1) blunted binge-like ethanol consumption stemming from CRF1R blockade requires intact CRF2R signaling, and CRF2R activation reduces binge-like drinking; 2) inhibiting VTA-projecting BNST CRF neurons attenuates binge-like drinking; and 3) binge-like ethanol drinking alters protein and messenger RNA associated with the VTA-CRF system. These data suggest that ethanol-induced activation of BNST-to-VTA CRF projections is critical in driving binge-like ethanol intake. |
DOI | 10.1016/j.biopsych.2016.02.029 |
Alternate Journal | Biol Psychiatry |
PubMed ID | 27113502 |
PubMed Central ID | PMC5010800 |
Grant List | P60 AA011605 / AA / NIAAA NIH HHS / United States U24 AA025475 / AA / NIAAA NIH HHS / United States R01 AA022048 / AA / NIAAA NIH HHS / United States R37 AA013573 / AA / NIAAA NIH HHS / United States K12 GM000678 / GM / NIGMS NIH HHS / United States K99 AA023559 / AA / NIAAA NIH HHS / United States F32 AA021611 / AA / NIAAA NIH HHS / United States F32 AA022549 / AA / NIAAA NIH HHS / United States R21 AA022044 / AA / NIAAA NIH HHS / United States R01 AA015148 / AA / NIAAA NIH HHS / United States F32 AA021043 / AA / NIAAA NIH HHS / United States F31 AA017818 / AA / NIAAA NIH HHS / United States F31 AA023440 / AA / NIAAA NIH HHS / United States R01 AA013573 / AA / NIAAA NIH HHS / United States |