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Published on: June 10, 2013
Chronic maternal stress affects growth, behaviour and hypothalamo-pituitary-adrenal function in juvenile offspring
Jeff Emack1, Alice Kostaki, Claire-Dominique Walker
1CIHR program in Maternal Adversity Vulnerability and Neurodevelopment (MAVAN), University of Toronto, 1 King's College Circle, Toronto, Ontario, Canada.
Insights
Chronic maternal stress during pregnancy impacts offspring growth, behavior, and stress response. Male guinea pigs showed greater vulnerability to these effects, including reduced body weight and activity.
Area of Science:
- Reproductive biology
- Developmental neuroscience
- Endocrinology
Background:
- Maternal stress during pregnancy is associated with adverse behavioral and emotional development in children.
- Prenatal stress in animal models affects hypothalamo-pituitary-adrenal (HPA) axis function and behavior.
- Limited research exists on the effects of chronic maternal stress during pregnancy and nursing.
Purpose of the Study:
- To investigate the impact of chronic maternal stress (CMS) during the latter half of pregnancy and nursing on guinea pig offspring.
- To assess effects on growth, locomotor behavior, and HPA axis function in juvenile offspring.
Main Methods:
- Pregnant guinea pigs were subjected to variable stressors every other day from mid-gestation until weaning (postnatal day 25).
- Salivary cortisol levels were measured in mothers and offspring.
- Offspring growth, locomotor activity (open-field test), and adrenocortical response to novelty were assessed.
Main Results:
- CMS mothers exhibited higher basal salivary cortisol during late pregnancy.
- Male offspring of CMS mothers had lower body weight and reduced locomotor activity compared to controls.
- Both male and female offspring showed increased basal salivary cortisol but a blunted response to novelty at weaning.
- Females did not exhibit significant changes in body weight or activity.
Conclusions:
- Chronic maternal stress alters offspring growth, locomotor activity, and stress-induced HPA axis responses.
- Male offspring appear more susceptible to the detrimental effects of chronic maternal stress than females.
Abstract:
Maternal stress during pregnancy, particularly that combined with low socioeconomic status (SES), has been linked to an increased risk for impaired behavioural and emotional development and affective disorders in children. In animal models, acute periods of prenatal stress have profound effects on hypothalamo-pituitary-adrenal (HPA) function and behaviour. However, few studies have determined the impact of chronic exposure to stress in animal models. The objective of this study was to determine the effects of chronic maternal stress (CMS) during the 2nd half of pregnancy and nursing on growth, locomotor behaviour and HPA axis function in juvenile guinea pig offspring. Pregnant guinea pigs were exposed to a random combination of variable stressors every other day over the 2nd half of gestation and from postnatal day (pnd) 1 until weaning (pnd25). CMS mothers displayed increased basal salivary cortisol levels in the later stages of pregnancy compared to control mothers (p<0.05). The male offspring of CMS mothers had a lower bodyweight, which was maintained to weaning (p<0.01). In open-field testing, CMS male offspring showed a decrease in activity compared to controls (p<0.05). There was no effect of CMS on bodyweight or activity in female offspring. In contrast, both male and female offspring born to CMS mothers displayed increased (p<0.05) basal salivary cortisol at pnd25, but a blunted adrenocortical response to exposure to the novel open-field enclosure. In conclusion, CMS leads to modification of growth trajectory, locomotor activity and adrenocortical responses to stress in juvenile offspring. Further, males appear considerably more vulnerable to these effects than females.
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