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Moderate Prenatal Alcohol Exposure and Quantification of Social Behavior in Adult Rats
Published on: December 14, 2014
Perinatal exposure to polychlorinated biphenyls alters social behaviors in rats
Banafsheh Jolous-Jamshidi1, Howard C Cromwell, Ashley M McFarland
1Department of Biological Sciences, Bowling Green State University, Bowling Green, OH 43403-0208, USA.
Insights
Perinatal polychlorinated biphenyls (PCBs) exposure impairs social recognition and investigation in rats. This neurodevelopmental toxicity affects social behaviors and hypothalamic function, potentially mirroring deficits seen in autism spectrum disorder.
Area of Science:
- Neuroscience
- Developmental Toxicology
- Endocrinology
Background:
- Perinatal exposure to polychlorinated biphenyls (PCBs) alters neural and hormonal systems, impacting motor and sensory development.
- The effects of PCBs on developing emotional and motivational systems, crucial for social interactions and learning, are less understood.
Purpose of the Study:
- To investigate the impact of perinatal PCB exposure on social recognition in juveniles and social investigation in adults.
- To examine associated alterations in neural and hormonal systems involved in social functions.
Main Methods:
- A habituation-dishabituation paradigm assessed juvenile social recognition.
- A social port paradigm monitored adult social investigation.
- Areal measurements of the periventricular nucleus (PVN) of the hypothalamus were correlated with behavioral and hormonal data.
Main Results:
- PCB-exposed juveniles showed impaired social recognition, with persistent conspecific-directed exploration.
- Adult PCB exposure blunted the isolation-induced enhancement of social investigation, but not in pair-housed animals.
- A significant decrease in PVN area was observed in perinatally PCB-exposed juvenile rats.
Conclusions:
- Perinatal PCB exposure disrupts social recognition and investigation, suggesting impaired context- or experience-dependent social modulation.
- Reduced PVN area and potential shifts in hypothalamic hormone regulation may underlie these social behavioral deficits.
- These findings highlight PCB-induced social-context deficits, potentially relevant to understanding social disorders like autism.
Abstract:
Perinatal exposure to polychlorinated biphenyls (PCBs) leads to significant alterations of neural and hormonal systems. These alterations have been shown to impair motor and sensory development. Less is known about the influence of PCB exposure on developing emotional and motivational systems involved in social interactions and social learning. The present study examined the impact of perinatal PCB exposure (mixture of congeners 47 and 77) on social recognition in juvenile animals, conspecific-directed investigation in adults and on neural and hormonal systems involved in social functions. We used a standard habituation-dishabituation paradigm to evaluate juvenile recognition and a social port paradigm to monitor adult social investigation. Areal measures of the periventricular nucleus (PVN) of the hypothalamus were obtained to provide correlations with related hormone and brain systems. PCB exposed rats were significantly impaired in social recognition as indicated by persistent conspecific-directed exploration by juvenile animals regardless of social experience. As adults, PCB exposure led to a dampening of the isolation-induced enhancement of social investigation. There was not a concomitant alteration of social investigation in pair-housed PCB exposed animals at this stage of development. Interestingly, PVN area was significantly decreased in juvenile animals exposed to PCB during the perinatal period. Shifts in hypothalamic regulation of hormones involved in social behavior and stress could be involved in the behavioral changes observed. Overall, the results suggest that PCB exposure impairs context or experience-dependent modulation of social approach and investigation. These types of social-context deficits are similar to behavioral deficits observed in social disorders such as autism and other pervasive developmental disorders.
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