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Estimating the burden of iron deficiency among African children
John Muthii Muriuki1,2, Alexander J Mentzer3,4, Emily L Webb5
1Centre for Geographic Medicine Research-Coast, KEMRI-Wellcome Trust Research Programme, Kenya Medical Research Institute (KEMRI), Kilifi, Kenya. jmuriuki@kemri-wellcome.org.
Insights
Iron deficiency is underestimated in African children due to inflammation and malaria. Transferrin saturation may offer a more accurate assessment of iron status in these populations.
Area of Science:
- Pediatric Nutrition
- Public Health
- Biomarker Analysis
Background:
- Iron deficiency (ID) poses a significant public health challenge in African children.
- Inflammation and infections like malaria can inaccurately affect iron status measurements.
- Accurate ID prevalence data is crucial for effective nutritional interventions.
Purpose of the Study:
- To assess different approaches for predicting iron status in African children.
- To estimate the true burden of iron deficiency in this population.
- To evaluate the utility of various iron biomarkers for ID prediction.
Main Methods:
- Assayed iron and inflammatory biomarkers in 4853 children (0-8 years) across five African countries.
- Defined ID using WHO guidelines and compared with a regression-corrected gold standard accounting for inflammation and malaria.
- Investigated other iron biomarkers against the regression-corrected estimate.
Main Results:
- WHO-defined ID prevalence was 34%, versus 52% using the regression-corrected estimate.
- ID prevalence was highest at 1 year and in male infants, increasing with age.
- Transferrin saturation <11% most accurately predicted ID based on the gold standard.
Conclusions:
- WHO guidelines underestimate iron deficiency in African children, particularly in malaria-endemic areas.
- Transferrin saturation may provide a more accurate measure for assessing ID prevalence.
- Further research is needed to refine ID measurement in sub-Saharan Africa.
Background:
Iron deficiency (ID) is a major public health burden in African children and accurate prevalence estimates are important for effective nutritional interventions. However, ID may be incorrectly estimated in Africa because most measures of iron status are altered by inflammation and infections such as malaria. Through the current study, we have assessed different approaches to the prediction of iron status and estimated the burden of ID in African children.
Methods:
We assayed iron and inflammatory biomarkers in 4853 children aged 0-8 years from Kenya, Uganda, Burkina Faso, South Africa, and The Gambia. We described iron status and its relationship with age, sex, inflammation, and malaria parasitemia. We defined ID using the WHO guideline (ferritin < 12 microg/L or < 30 microg/L in the presence of inflammation in children < 5 years old or < 15 microg/L in children ≥ 5 years old). We compared this with a recently proposed gold standard, which uses regression-correction for ferritin levels based on the relationship between ferritin levels, inflammatory markers, and malaria. We further investigated the utility of other iron biomarkers in predicting ID using the inflammation and malaria regression-corrected estimate as a gold standard.
Results:
The prevalence of ID was highest at 1 year of age and in male infants. Inflammation and malaria parasitemia were associated with all iron biomarkers, although transferrin saturation was least affected. Overall prevalence of WHO-defined ID was 34% compared to 52% using the inflammation and malaria regression-corrected estimate. This unidentified burden of ID increased with age and was highest in countries with high prevalence of inflammation and malaria, where up to a quarter of iron-deficient children were misclassified as iron replete. Transferrin saturation < 11% most closely predicted the prevalence of ID according to the regression-correction gold standard.
Conclusions:
The prevalence of ID is underestimated in African children when defined using the WHO guidelines, especially in malaria-endemic populations, and the use of transferrin saturation may provide a more accurate approach. Further research is needed to identify the most accurate measures for determining the prevalence of ID in sub-Saharan Africa.
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