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Prenatal maternal psychopathology and stress and offspring HPA axis function at 6 years
N M Molenaar1, H Tiemeier2, E F C van Rossum3
1The Department of Psychiatry, Erasmus Medical Center, Rotterdam, The Netherlands.
Insights
Maternal psychopathology and stress during pregnancy are linked to altered offspring hair cortisone levels, indicating long-term hypothalamic-pituitary-adrenal (HPA) axis activity changes. These findings highlight the lasting impact of the intrauterine environment on child health.
Area of Science:
- Reproductive Medicine
- Developmental Psychology
- Endocrinology
Background:
- Intrauterine exposures, including maternal mental health and stress, can significantly impact offspring's physical and mental well-being.
- Dysregulation of the hypothalamic-pituitary-adrenal (HPA) axis is a proposed mechanism linking maternal factors to offspring health outcomes.
Purpose of the Study:
- To investigate the association between perinatal maternal psychopathology and stress and offspring HPA axis activity at age 6.
- To measure offspring HPA axis activity using hair cortisol and cortisone concentrations.
Main Methods:
- Prospective, population-based cohort study (Generation R Study) with 2546 mother-child pairs.
- Maternal psychopathology and stress assessed via questionnaires in mid- and late pregnancy.
- Child hair samples collected at age 6 for cortisol and cortisone analysis; linear regression used for associations.
Main Results:
- Maternal psychopathology was linked to higher offspring hair cortisone levels (adjusted B=0.24, p<0.01).
- Intrauterine stress exposure was also associated with elevated child hair cortisone (adjusted B=0.54, p<0.01).
- Associations differed by child sex: maternal psychopathology linked to hair cortisone in boys, maternal stress in girls.
Conclusions:
- Maternal psychopathology and stress during pregnancy are associated with long-term HPA axis activity in offspring, specifically hair cortisone levels.
- This novel finding suggests a psychophysiological pathway influencing offspring health.
- Further research is needed to determine if these HPA axis alterations contribute to offspring morbidity linked to maternal prenatal factors.
Objective:
Intrauterine exposures such as maternal psychopathology and stress are known to influence the physical and mental health of the offspring. One of the proposed pathways underlying these associations is dysregulated hypothalamic-pituitary-adrenal (HPA) axis activity in the offspring. This study examined the relation of perinatal maternal symptoms of psychopathology and stress with offspring HPA axis activity at 6 years as measured by hair cortisol and cortisone concentrations.
Methods:
The study was part of the population-based Generation R Study, a prospective population-based cohort from fetal life onwards. 2546 children and their mothers formed the study population. Perinatal maternal psychopathology and stress were assessed by questionnaires in the second and third trimester. Principal components for both psychopathology and stress were created to reduce the number of explanatory variables. Child hair samples for cortisol and cortisone measurements were collected at the age of 6. Linear regression analysis, adjusted for covariates, was used to examine associations between maternal psychopathology and stress and child hair cortisol and cortisone levels.
Results:
The maternal psychopathology principal component was associated with higher child hair cortisone (adjusted B = 0.24, 95%CI 0.08;0.40, p-value < 0.01). Effect estimates of the individual dimensions ranged from 0.97 (95%CI 0.21;1.73, p-value = 0.01) for interpersonal sensitivity to 1.67 (95%CI 0.86;2.47, p-value < 0.01) for paranoid ideation. In addition, children exposed to intrauterine stress, as measured by the principal component, had higher hair cortisone levels (adjusted B = 0.54, 95%CI 0.21;0.88, p-value < 0.01). Exposure to maternal psychopathology and stress was not associated with offspring hair cortisol. Stratification by child sex resulted in associations between maternal symptoms of psychopathology during pregnancy and child hair cortisone levels in boys and associations between maternal symptoms of stress during pregnancy and child hair cortisone levels in girls.
Conclusion:
Our results suggest that maternal psychopathology and stress during pregnancy are associated with long-term HPA axis activity of the offspring. The association of maternal psychopathology and stress during pregnancy with offspring hair cortisone levels is a novel finding. Future studies should examine whether these psychophysiological differences between exposed and non-exposed children underlie offspring morbidity associated with maternal psychopathology and stress during pregnancy.
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