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Using a Murine Model of Psychosocial Stress in Pregnancy as a Translationally Relevant Paradigm for Psychiatric Disorders in Mothers and Infants
Published on: June 13, 2021
Sex-specific programming of offspring emotionality after stress early in pregnancy
Bridget R Mueller1, Tracy L Bale
1Department of Animal Biology, School of Veterinary Medicine, University of Pennsylvania, Philadelphia, Pennsylvania 19104, USA.
Insights
Early prenatal stress in males can lead to neurodevelopmental disorders. This stress impacts placental function and fetal development, suggesting a critical window for intervention in pregnancy.
Area of Science:
- Neurobiology
- Developmental Psychology
- Epigenetics
Background:
- Prenatal stress is linked to neurodevelopmental disorders like autism and schizophrenia.
- The critical timing of prenatal stress exposure for disease predisposition is not fully understood.
Purpose of the Study:
- To identify the critical gestational window for prenatal stress-induced neurodevelopmental vulnerability.
- To investigate the underlying mechanisms, including placental function and epigenetic changes, in male offspring.
Main Methods:
- Offspring behavioral responses were assessed after prenatal stress exposure during early, mid, and late gestation.
- Central corticotropin-releasing factor (CRF) and glucocorticoid receptor (GR) expression, HPA axis responsivity, and gene methylation were analyzed.
- Sex-specific placental gene expression (PPARalpha, IGFBP-1, HIF3alpha, GLUT4) and epigenetic machinery were examined.
Main Results:
- Male offspring exposed to early prenatal stress showed maladaptive stress responses, anhedonia, and heightened SSRI sensitivity.
- Long-term alterations in central CRF and GR expression, increased HPA axis responsivity, and altered gene methylation were observed.
- Early prenatal stress induced sex-specific placental changes, increasing PPARalpha, IGFBP-1, HIF3alpha, and GLUT4 expression in males but not females.
Conclusions:
- Stress during early gestation primes male offspring for neurodevelopmental disorders.
- Sex-specific placental responsivity and epigenetic programming are key mechanisms mediating this vulnerability.
- These findings highlight the critical role of early pregnancy in fetal programming and susceptibility to maternal stress.
Abstract:
Prenatal stress is associated with an increased vulnerability to neurodevelopmental disorders, including autism and schizophrenia. To determine the critical time window when fetal antecedents may induce a disease predisposition, we examined behavioral responses in offspring exposed to stress during early, mid, and late gestation. We found that male offspring exposed to stress early in gestation displayed maladaptive behavioral stress responsivity, anhedonia, and an increased sensitivity to selective serotonin reuptake inhibitor treatment. Long-term alterations in central corticotropin-releasing factor (CRF) and glucocorticoid receptor (GR) expression, as well as increased hypothalamic-pituitary-adrenal (HPA) axis responsivity, were present in these mice and likely contributed to an elevated stress sensitivity. Changes in CRF and GR gene methylation correlated with altered gene expression, providing important evidence of epigenetic programming during early prenatal stress. In addition, we found the core mechanism underlying male vulnerability may involve sex-specific placenta responsivity, where stress early in pregnancy significantly increased expression of PPARalpha (peroxisome proliferator-activated receptor alpha), IGFBP-1 (insulin-like growth factor binding protein 1), HIF3alpha (hypoxia-inducible factor 3a), and GLUT4 (glucose transporter 4) in male placentas but not females. Examination of placental epigenetic machinery revealed basal sex differences, providing further evidence that sex-specific programming begins very early in pregnancy, and may contribute to the timing and vulnerability of the developing fetus to maternal perturbations. Overall, these results indicate that stress experience early in pregnancy may contribute to male neurodevelopmental disorders through impacts on placental function and fetal development.

