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Moderate Prenatal Alcohol Exposure and Quantification of Social Behavior in Adult Rats
Published on: December 14, 2014
Prenatal alcohol exposure and adolescent stress - unmasking persistent attentional deficits in rats
Wendy L Comeau1, Catharine A Winstanley, Joanne Weinberg
1Department of Cellular and Physiological Sciences, University of British Columbia, 2350 Health Sciences Mall, Vancouver, BC, V6T 1Z3, Canada.
Insights
Prenatal alcohol exposure (PAE) and adolescent stress worsen attention and executive function. These combined factors create unique behavioral issues, highlighting developmental neurobiological vulnerabilities.
Area of Science:
- Neuroscience
- Developmental Psychology
- Toxicology
Background:
- Prenatal alcohol exposure (PAE) is linked to cognitive deficits.
- Adverse home environments and stress can exacerbate these deficits, impacting executive functions like attention.
- Understanding the combined effects of PAE and adolescent stress is crucial for identifying developmental vulnerabilities.
Purpose of the Study:
- To investigate the long-term cognitive effects of prenatal alcohol exposure (PAE) in rats.
- To examine the impact of adolescent chronic mild stress (CMS) on cognitive function.
- To determine the interactive effects of PAE and adolescent CMS on attentional processes and executive function.
Main Methods:
- Male offspring from control, pair-fed, and PAE dams were exposed to chronic mild stress (CMS) or no stress during adolescence.
- Adult rats were trained on a non-match to sample task (T-maze) and a five-choice serial reaction time task.
- Cognitive performance was assessed under various challenge conditions, including altered attention demands and d-amphetamine administration.
Main Results:
- PAE offspring exhibited reduced body weight and persistent attentional deficits, particularly with shorter stimulus durations.
- Adolescent CMS increased corticosterone levels and disrupted cognitive performance in adulthood.
- CMS exacerbated PAE-related attentional disturbances and also impaired cognitive function in control and pair-fed groups.
Conclusions:
- Both PAE and adolescent CMS independently impair cognitive and attentional processes.
- The interaction between PAE and adolescent CMS leads to unique behavioral profiles, suggesting distinct neurobiological vulnerabilities.
- These findings underscore the critical impact of early-life exposures and adolescent stress on long-term executive function.
Abstract:
Prenatal alcohol exposure (PAE) can produce a myriad of deficits. Unfortunately, affected individuals may also be exposed to the stress of an adverse home environment, contributing to deficits of attentional processes that are the hallmark of optimal executive function. Male offspring of ad-libitum-fed Control (Con), Pairfed (PF), and PAE dams were randomly assigned to either a 5-day period of variable chronic mild stress (CMS) or no CMS in adolescence. In adulthood, rats were trained in a non-match to sample task (T-maze), followed by extensive assessment in the five-choice serial reaction time task. Once rats acquired the five-choice serial reaction time task (stable accuracy), they were tested in three challenge conditions: (i) increased sustained attention, (ii) selective attention and, (iii) varying doses of d-amphetamine, an indirect dopamine and norepinephrine agonist. At birth and throughout the study, PAE offspring showed reduced body weight. Moreover, although PAE animals were similar to Con animals in task acquisition, they were progressively less proficient with transitions to shorter stimulus durations (decreased accuracy and increased omissions). Five days of adolescent CMS increased basal corticosterone levels in adolescence and disrupted cognitive performance in adulthood. Further, CMS augmented PAE-related disturbances in acquisition and, to a lesser extent, also disrupted attentional processes in Con and PF animals. Following task acquisition, challenges unmasked persistent attentional difficulties resulting from both PAE and adolescent CMS. In conclusion, PAE, adolescent CMS, and their interaction produced unique behavioural profiles that suggest vulnerability in select neurobiological processes at different stages of development.
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