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Published on: July 12, 2024
The Interaction between Psychological Stress and Iron Status on Early-Life Neurodevelopmental Outcomes
Brie M Reid1,2, Michael K Georgieff3
1Department of Psychiatry and Human Behavior, Warren Alpert Medical School, Brown University, Providence, RI 02912, USA.
Insights
Poor iron status and psychological distress significantly impact infant neurodevelopment. Understanding their combined effects is crucial for early interventions and long-term cognitive health.
Area of Science:
- Neuroscience
- Developmental Psychology
- Nutritional Science
Background:
- Iron deficiency and psychological stress are common and often co-occur during pregnancy and early life.
- Both factors independently affect neurocognitive development, but their combined impact is understudied.
- Early life stress and iron deficiency have long-term implications for cognitive function.
Purpose of the Study:
- To review evidence linking psychological stress and iron status in early development.
- To explore hypothesized mechanisms connecting stress, iron metabolism, and neurocognition.
- To highlight the need for research on the combined effects of stress and iron deficiency on child development.
Main Methods:
- Narrative review of animal and human studies.
- Examination of studies on psychological stress and iron status.
- Analysis of overlapping impacts on neurocognitive development.
Main Results:
- Psychological stress activates the HPA axis and increases proinflammatory cytokines, potentially disrupting iron metabolism via hepcidin.
- Evidence suggests a connection between stress, altered iron status, and neurodevelopmental alterations.
- Combined effects of prenatal stress and iron deficiency on long-term cognition require further investigation.
Conclusions:
- Studying psychological stress's influence on iron metabolism is vital for understanding neurocognitive development in at-risk children.
- Iron may mediate the relationship between early stress and offspring neurodevelopment.
- Future research should focus on dual-exposure studies for targeted interventions.
Abstract:
This review presents evidence from animal and human studies demonstrating the possible connection and significant impact of poor iron status and psychological distress on neurocognitive development during pregnancy and the neonatal period, with implications for long-term cognition. Stress and iron deficiency are independently prevalent and thus are frequently comorbid. While iron deficiency and early-life stress independently contribute to long-term neurodevelopmental alterations, their combined effects remain underexplored. Psychological stress responses may engage similar pathways as infectious stress, which alters fundamental iron metabolism processes and cause functional tissue-level iron deficiency. Psychological stress, analogous to but to a lesser degree than infectious stress, activates the hypothalamic-pituitary-adrenocortical (HPA) axis and increases proinflammatory cytokines. Chronic or severe stress is associated with dysregulated HPA axis functioning and a proinflammatory state. This dysregulation may disrupt iron absorption and utilization, likely mediated by the IL-6 activation of hepcidin, a molecule that impedes iron absorption and redistributes total body iron. This narrative review highlights suggestive studies investigating the relationship between psychological stress and iron status and outlines hypothesized mechanistic pathways connecting psychological stress exposure and iron metabolism. We examine findings regarding the overlapping impacts of early stress exposure to iron deficiency and children's neurocognitive development. We propose that studying the influence of psychological stress on iron metabolism is crucial for comprehending neurocognitive development in children exposed to prenatal and early postnatal stressors and for children at risk of early iron insufficiency. We recommend future directions for dual-exposure studies exploring iron as a potential mediating pathway between early stress and offspring neurodevelopment, offering opportunities for targeted interventions.
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