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Isolation of Leukocytes from the Human Maternal-fetal Interface
Published on: May 21, 2015
Long-Term Associations Between Prenatal Maternal Cortisol and Child Neuroendocrine-Immune Regulation
Jenna L Riis1,2, Douglas A Granger3,4,5,6, Han Woo7
1School of Social Ecology, University of California, Irvine, Irvine, CA, USA. jriis@uci.edu.
Insights
Prenatal maternal stress (cortisol) influences children's neuroendocrine-immune (NEI) system development, particularly in females and later in pregnancy. This impacts long-term health risks.
Area of Science:
- Developmental origins of health and disease
- Neuroendocrine-immune (NEI) system development
- Lifespan health and disease risk
Background:
- Understanding the developmental origins of neuroendocrine-immune (NEI) functioning is crucial for elucidating health and disease mechanisms across the lifespan.
- Prenatal maternal hypothalamic-pituitary-adrenal (HPA) activity may influence child NEI development.
- Investigating the consistency of this moderating effect throughout gestation is important.
Purpose of the Study:
- To examine whether prenatal maternal HPA activity moderates child NEI relations.
- To explore the consistency of this moderating effect across gestation.
Main Methods:
- Pregnant women provided saliva samples across five prenatal visits (24–38 weeks gestation).
- Children (n=45) provided saliva samples at age 5 and underwent behavioral assessments.
- Prenatal maternal and child saliva samples were analyzed for cortisol and cytokines (IL-1β, IL-6, IL-8, TNFα).
- Multilevel mixed-effects models were used to analyze the moderation of child NEI relations by prenatal maternal cortisol.
Main Results:
- Prenatal maternal cortisol did not moderate child NEI relations in males.
- In females, higher average prenatal maternal cortisol was associated with stronger cortisol-cytokine relations at age five.
- Maternal cortisol exhibited more significant moderation effects on child NEI relations from later gestation (≥30 weeks).
Conclusions:
- Prenatal maternal HPA activity appears to moderate child NEI functioning.
- Further research with larger, diverse samples is needed to confirm these findings.
- Understanding NEI development has implications for conditions like depression and cardiovascular disease.
Background:
Advancing understanding of the developmental origins of neuroendocrine-immune (NEI) functioning is key to elucidating the biological mechanisms involved in health and disease risk across the lifespan. This study examined whether prenatal maternal hypothalamic-pituitary-adrenal (HPA) activity moderates child NEI relations and explored the consistency of this moderating effect across gestation.
Methods:
Pregnant women participated in five prenatal study visits from 24 to 38 weeks gestation. At each visit, women provided a saliva sample. In a 5-year follow-up study, children (nfemale = 25, nmale=20) provided four saliva samples and participated in behavioral assessments and challenge tasks. Prenatal maternal saliva samples were assayed for cortisol. Child saliva samples were assayed for cortisol and cytokines (IL-1β, IL-6, IL-8, TNFα) as indices of HPA and inflammatory activity. Multilevel mixed-effects models examined the moderation of child NEI relations by prenatal maternal cortisol.
Results:
Among males, average prenatal maternal cortisol did not moderate child NEI relations. Among females, average prenatal maternal cortisol moderated some child NEI relations with higher prenatal cortisol associated with more positive cortisol-cytokine relations at age five. When examined by gestational time point, there were more significant NEI moderation effects by maternal cortisol from later gestation (≥ 30 weeks) than earlier.
Conclusions:
The findings suggest prenatal maternal HPA activity may moderate child NEI functioning. Additional research conducted with more heterogeneous and larger samples is needed to fully understand these relations. Furthering our knowledge of NEI development has important research and clinical implications, particularly for understanding and addressing conditions with inflammatory pathophysiologies, such as depression and cardiovascular disease.
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