Literature DB >> 30176547

Environmental enrichment reverses increased addiction risk caused by prenatal ethanol exposure.

Ruixiang Wang1, Kathryn A Hausknecht2, Ying-Ling Shen3, Samir Haj-Dahmane2, Paul Vezina4, Roh-Yu Shen5.   

Abstract

Prenatal ethanol exposure (PE) leads to multiple cognitive and behavioral deficits including increased drug addiction risk. Previous studies have shown that rearing environment plays a significant role in impacting addiction risk. In the present study, we investigated if environmental enrichment during development could be effective in lowering the PE-induced increase in addiction risk. To simulate heavy drinking during pregnancy in humans, pregnant Sprague-Dawley rats received ethanol (6 g/kg/day) or vehicle through intragastric gavage on gestation days 8-20. After weaning, the offspring were reared in either an enriched environment (EE) including neonatal handling and complex housing or an impoverished environment (IE) consisting of barren, single housing. Adult male offspring were then tested for locomotion, performance on the elevated plus maze, and amphetamine self-administration under a progressive ratio reinforcement schedule. Overall, EE rats, compared to IE rats, showed reduced locomotor activity in a novel environment and lower levels of anxiety, irrespective of prenatal treatments. Prenatal ethanol exposure increased amphetamine self-administration at both doses tested (0.02 and 0.05 mg/kg/infusion) and in each case EE, relative to IE, reversed this effect. These findings suggest that postnatal environmental complexity plays a determining role in addiction risk after PE.
Copyright © 2018 Elsevier B.V. All rights reserved.

Entities:  

Keywords:  Addiction risk; Environmental enrichment; Impoverished environment; Neonatal handling; Psychostimulant; Self-administration

Mesh:

Substances:

Year:  2018        PMID: 30176547      PMCID: PMC6178821          DOI: 10.1016/j.drugalcdep.2018.07.013

Source DB:  PubMed          Journal:  Drug Alcohol Depend        ISSN: 0376-8716            Impact factor:   4.492


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