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Iron deficiency during the first 1000 days of life: are we doing enough to protect the developing brain?
Elaine K McCarthy1,2, Deirdre M Murray2,3, Mairead E Kiely1,2
1Cork Centre for Vitamin D and Nutrition Research, School of Food and Nutritional Sciences, University College Cork, Cork, Ireland.
Insights
Iron deficiency in early life causes irreversible neurological deficits. Prevention strategies focusing on maternal health and timely interventions are crucial for infant brain development.
Area of Science:
- Neurology
- Public Health
- Nutritional Science
Background:
- Iron is vital for cellular function, particularly brain development in early life.
- Iron deficiency during the first 1000 days can lead to permanent cognitive and motor impairments.
- Pregnant women, infants, and young children are highly susceptible to iron deficiency due to increased needs and insufficient intake.
Purpose of the Study:
- To highlight the critical role of iron in early neurological development.
- To identify risk factors for maternal-fetal iron deficiency beyond inadequate dietary intake.
- To emphasize the need for improved prevention and screening strategies for early-life iron deficiency.
Main Methods:
- Review of existing literature on iron metabolism and deficiency in pregnancy and early childhood.
- Analysis of risk factors including maternal obesity and caesarean delivery.
- Assessment of current prevention and intervention strategies.
Main Results:
- Inadequate iron supply during gestation can result from factors like maternal obesity and caesarean birth, increasing infant deficiency risk.
- Early-life iron deficiency has profound, lasting negative impacts on neurological development and long-term health outcomes.
- Existing strategies to combat early-life iron deficiency are insufficient or inappropriate.
Conclusions:
- Maternal health and nutritional status before and during pregnancy are key to preventing infant iron deficiency.
- Delayed cord clamping and enhanced screening during pregnancy and early life are recommended interventions.
- Urgent development and implementation of effective strategies are needed to mitigate the risks of early-life iron deficiency.
Abstract:
Iron is essential for the functioning of all cells and organs, most critically for the developing brain in the fundamental neuronal processes of myelination, energy and neurotransmitter metabolism. Iron deficiency, especially in the first 1000 days of life, can result in long-lasting, irreversible deficits in cognition, motor function and behaviour. Pregnant women, infants and young children are most vulnerable to iron deficiency, due to their high requirements to support growth and development, coupled with a frequently inadequate dietary supply. An unrecognised problem is that even if iron intake is adequate, common pregnancy-related and lifestyle factors can affect maternal-fetal iron supply in utero, resulting in an increased risk of deficiency for the mother and her fetus. Although preterm birth, gestational diabetes mellitus and intrauterine growth restriction are known risk factors, more recent evidence suggests that maternal obesity and delivery by caesarean section further increase the risk of iron deficiency in the newborn infant, which can persist into early childhood. Despite the considerable threat that early-life iron deficiency poses to long-term neurological development, life chances and a country's overall social and economic progress, strategies to tackle the issue are non-existent, too limited or totally inappropriate. Prevention strategies, focused on improving the health and nutritional status of women of reproductive age are required. Delayed cord clamping should be considered a priority. Better screening strategies to enable the early detection of iron deficiency during pregnancy and early-life should be prioritised, with intervention strategies to protect maternal health and the developing brain.
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