A 13-month-old infant is seen routinely in the office of a family physician for immunizations and periodic health examinations. The child's growth is entirely normal but, in taking a developmental history, the physician notes that the child is described as being generally irritable and is reluctant to explore her environment away from her caregiver's side. She was weaned from the breast at 8–9 months of age and went directly to whole cow's milk, as is recommended by the Canadian Paediatric Society. Her current diet consists primarily of jars of fruit and vegetables, with an occasional jar of a meat or poultry meal. She drinks at least 4 8-oz bottles of whole milk daily. On physical examination, the only abnormal finding is slightly pale conjunctiva. The physician suspects a diagnosis of iron deficiency anemia. Blood tests are ordered to confirm the diagnosis.
Iron deficiency anemia is a leading cause of infant morbidity and mortality worldwide. Numerous studies have demonstrated that even moderate anemia (hemoglobin < 100 g/L) is associated with depressed mental and motor development in children that may not be reversible.,, Because of the possible irreversibility of this condition, primary prevention is a more appropriate goal than screening and treatment. In Canada, 4%–5% of non-Aboriginal preschool children suffer from iron deficiency anemia, compared with a prevalence of between 14% and 24% in First Nations and Inuit infants and children.,, In developing countries, however, the prevalence of anemia reaches and in some countries exceeds 50% in one-year-old children. Because of the well-documented sequelae of anemia, there is a continuing need to develop strategies and educate caregivers about the prevention and management of iron deficiency anemia.
Factors that increase the risk of anemia The environmental conditions that are usually found when the prevalence of iron deficiency anemia is high are outlined in
The recommended dietary allowance (RDA) for iron during childhood and adolescence is shown in
The adverse effects of anemia Even moderate anemia (hemoglobin < 100 g/L) has been consistently shown to be associated with depressed mental and motor development in children (
The study of cognitive function and iron status has been expanded to older children and adolescents. In a randomized controlled trial, adolescent girls with depleted iron stores who received iron supplements improved their scores on a test of memory and verbal learning compared with the placebo-treated group. Another large study in preadolescents and adolescents described an association between iron status and standardized mathematics scores. Those with iron deficiency anemia or iron deficiency without anemia were 2.3 and 2.4 times more likely to have low mathematics scores than those with no iron deficiency. The authors of this report suggested that screening for iron deficiency may be warranted for all children and adolescents.
Interventions to prevent anemia There are 3 interventions that if implemented successfully are likely to prevent anemia. These include dietary diversification to foods with more bioavailable iron; fortification of foods targeted to full-term infants and children; and supplementation of the individual. Dietary diversification involves promotion of a diet with a wider variety of naturally iron-containing foods, especially red meat, poultry and fish (
Two types of fortification strategies have been implemented successfully in Canada. These are the fortification of staple foods, such as flour, and the fortification of specific foods, such as infant formula, infant cereals and most breakfast cereals (
The third approach is through supplementation of individuals or communities at risk. This approach would be implemented for the treatment of individuals with anemia or in situations where at-risk communities of infants and young children do not have ready access to targeted iron-fortified foods (e.g., geographically isolated Aboriginal communities). When a soluble form of iron (such as ferrous sulfate or fumarate) is ingested in the proper dose, this intervention is efficacious. However, adherence to long-term ingestion of oral iron drops is often poor because of the unpleasant metallic taste of drops; drops can stain a baby's teeth unless wiped off immediately after use; and if the dose is high, the infant may complain of abdominal discomfort. In recently completed studies in anemic infants, it has been demonstrated that the impact of iron drops on anemia is equally effective if the drops are provided once daily versus the traditional 3 times daily, without additional "side effects." Daily dosing may improve compliance with this intervention.