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Perinatal iron deficiency as an early risk factor for schizophrenia
Andrea M Maxwell1, Raghavendra B Rao2,3
1Medical Scientist Training Program, University of Minnesota, Minneapolis, MN, USA.
Insights
Perinatal iron deficiency (ID) may be a key factor in schizophrenia development. This review explores how early-life ID impacts brain development and increases schizophrenia risk.
Area of Science:
- Neuroscience
- Psychiatry
- Developmental Biology
Background:
- Schizophrenia risk is linked to intrauterine environmental factors.
- Micronutrient deficiencies during development affect brain growth.
- Iron deficiency (ID) is prevalent and critical for brain development.
Purpose of the Study:
- To review perinatal ID as a mechanism for schizophrenia risk.
- To examine neural aberrations linked to perinatal ID and schizophrenia.
- To explore the link between maternal ID and schizophrenia risk.
Main Methods:
- Narrative review of existing scientific literature.
- Analysis of neural aberrations associated with perinatal ID.
- Examination of epidemiological and cohort studies.
Main Results:
- Perinatal ID is associated with disruptions in dopaminergic neurotransmission, learning, and sensorimotor gating.
- Maternal ID during pregnancy is linked to increased schizophrenia risk in offspring.
- Potential confounding factors for perinatal brain ID and schizophrenia risk are considered.
Conclusions:
- Perinatal iron deficiency is a potential common mechanism in the fetal programming of schizophrenia.
- Understanding this link is crucial for schizophrenia etiology research.
- Further investigation can inform prevention and intervention strategies.
Abstract:
Growing evidence indicates that a suboptimal intrauterine environment confers risk for schizophrenia. The developmental model of schizophrenia posits that aberrant brain growth during early brain development and adolescence may interact to contribute to this psychiatric disease in adulthood. Although a variety of factors may perturb the environment of the developing fetus and predispose for schizophrenia later, a common mechanism has yet to be elucidated. Micronutrient deficiencies during the perinatal period are known to induce potent effects on brain development by altering neurodevelopmental processes. Iron is an important candidate nutrient to consider because of its role in energy metabolism, monoamine synthesis, synaptogenesis, myelination, and the high prevalence of iron deficiency (ID) in the mother-infant dyad. Understanding the current state of science regarding perinatal ID as an early risk factor for schizophrenia is imperative to inform empirical work investigating the etiology of schizophrenia and develop prevention and intervention programs. In this narrative review, we focus on perinatal ID as a common mechanism underlying the fetal programming of schizophrenia. First, we review the neural aberrations associated with perinatal ID that indicate risk for schizophrenia in adulthood, including disruptions in dopaminergic neurotransmission, hippocampal-dependent learning and memory, and sensorimotor gating. Second, we review the pathophysiology of perinatal ID as a function of maternal ID during pregnancy and use epidemiological and cohort studies to link perinatal ID with risk of schizophrenia. Finally, we review potential confounding phenotypes, including nonanemic causes of perinatal brain ID and future risk of schizophrenia.
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