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Timing Eclipses Amount: The Critical Importance of Intermittency in Alcohol Exposure Effects

Overview
Specialty Psychiatry
Date 2020 Feb 15
PMID 32056231
Citations 20
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Abstract

Frequency and duration of ethanol (EtOH) exposures influence the consequences of those experiences, with evidence building from basic science studies in rats and mice that intermittent alcohol access (IAA) typically produces a greater escalation of EtOH intake than more continuous alcohol access (CAA). IAA also better simulates human use patterns where alcohol levels typically clear from the body between periods of use. A variety of mechanisms have been proposed to contribute to the enhanced intake of EtOH induced by IAA, including a possible attenuation in the aversive effects of EtOH, although further studies are needed to address this and other possibilities. Neural differences include indications of an IAA-associated increase in NR2B receptors that is not evident with CAA; although little studied, alterations in other neural and neurotransmitter systems are evident as well. Many gaps in understanding of IAA/CAA effects remain. Further work is needed to characterize neural mechanisms underlying these effects, consequences of IAA/CAA on EtOH effects beyond intake, and the impact of stress and environmental variables on these differences. IAA/CAA studies to date have also largely been limited to males and to adult animals, and hence, more studies examining IAA/CAA across sex and age are needed. Such additional work is essential to determine unique contributors to IAA-induced elevations in EtOH intake that may provide important insights for the development of new prevention/intervention strategies for heavy alcohol use and abuse.

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References
1.
Hwa L, Holly E, DeBold J, Miczek K . Social stress-escalated intermittent alcohol drinking: modulation by CRF-R1 in the ventral tegmental area and accumbal dopamine in mice. Psychopharmacology (Berl). 2015; 233(4):681-90. PMC: 4729595. DOI: 10.1007/s00213-015-4144-2. View

2.
de Guglielmo G, Kallupi M, Cole M, George O . Voluntary induction and maintenance of alcohol dependence in rats using alcohol vapor self-administration. Psychopharmacology (Berl). 2017; 234(13):2009-2018. PMC: 5658208. DOI: 10.1007/s00213-017-4608-7. View

3.
Hwa L, Shimamoto A, Kayyali T, Norman K, Valentino R, DeBold J . Dissociation of μ-opioid receptor and CRF-R1 antagonist effects on escalated ethanol consumption and mPFC serotonin in C57BL/6J mice. Addict Biol. 2014; 21(1):111-24. PMC: 4377124. DOI: 10.1111/adb.12189. View

4.
Pinel J, Huang E . Effects of periodic withdrawal on ethanol and saccharin selection in rats. Physiol Behav. 1976; 16(6):693-8. DOI: 10.1016/0031-9384(76)90238-9. View

5.
Chan C, Harris J . Extinction of Pavlovian conditioning: The influence of trial number and reinforcement history. Behav Processes. 2017; 141(Pt 1):19-25. DOI: 10.1016/j.beproc.2017.04.017. View