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Published on: May 10, 2022
A novel diagnostic approach to differentiate iron overload from inflammation in children using transferrin saturation
Gustavo F Gonzales1, Julio Aguilar2, Sandra Yucra3
1Facultad de Ciencias de la Salud, Universidad San Ignacio de Loyola, Lima, Peru.
Insights
The TSAT*SF index accurately assesses iron status in children, even with inflammation or high altitude exposure. This index is crucial for diagnosing iron deficiency and overload in pediatric populations.
Area of Science:
- Pediatric Hematology
- Nutritional Biochemistry
- Environmental Pediatrics
Background:
- Iron homeostasis is complex and influenced by altitude and inflammation.
- Assessing iron status in children requires reliable indices, especially in diverse environmental conditions.
- Existing indices may be confounded by inflammation or high altitude (HA) exposure.
Purpose of the Study:
- To evaluate the TSAT*SF and SF/TSAT indices in children at different altitudes, with and without inflammation.
- To examine the correlation of these indices with markers of iron homeostasis, inflammation, and nutritional status.
- To determine the diagnostic performance of TSAT*SF for iron deficiency and inflammation.
Main Methods:
- Cross-sectional, multicenter study of 238 children (6–72 months).
- Assessment of TSAT*SF and SF/TSAT indices alongside serum hepcidin, total body iron (TBI), hematological, nutritional, and inflammatory markers.
- Multivariate analysis and ROC curve analysis to evaluate index performance.
Main Results:
- TSAT*SF was unaffected by inflammation, correlating with iron status but not inflammation.
- SF/TSAT correlated with both iron status and inflammation.
- Elevated TSAT*SF was linked to higher hemoglobin, TBI, and erythrocytosis, and impaired growth.
- TSAT*SF showed better diagnostic performance for iron deficiency than inflammation.
Conclusions:
- The TSAT*SF index reliably identifies tissue iron overload independently of inflammation.
- TSAT*SF can improve iron status assessment in pediatric populations at high altitude and with systemic inflammation.
- Elevated TSAT*SF indicates potential iron overload and is associated with erythrocytosis and impaired growth, highlighting its clinical significance.
Abstract:
ObjectiveTo evaluate the TSAT*SF and SF/TSAT indices in children living at different altitudes, with and without inflammation, and to examine their correlations with markers of iron homeostasis.MethodsA cross-sectional, multicenter study included 238 children aged 6 to 72 months. We assessed TSAT*SF and SF/TSAT indices in relation to serum hepcidin, total body iron (TBI), hematological and nutritional parameters, and inflammatory markers.ResultsChildren with elevated inflammatory markers resided at high altitude (HA) and exhibited increased hemoglobin (Hb), hematocrit, and a higher prevalence of erythrocytosis, alongside lower rates of anemia. Log-transformed values of SF, TBI, hepcidin, SF/TSAT ratio, and log(SF/TSAT) were significantly elevated in the inflammation group. In contrast, TSAT*SF values were unaffected by inflammation, showing no significant differences between groups. Among children with normal C-reactive protein (CRP ≤10 mg/L), TSAT*SF > 900 was associated with higher Hb, serum iron, hepcidin, TBI, and TSAT, as well as reduced height-for-age and weight-for-age Z-scores. Across the full sample, CRP positively correlated with ferritin, hepcidin, TBI, neutrophils, and unadjusted Hb, and negatively with serum iron and lymphocytes. CRP showed no correlation with TSAT*SF but was positively associated with the SF/TSAT ratio. Multivariate analysis revealed that the TSAT*SF index correlated with iron status but not inflammation, whereas the SF/TSAT index correlated with both iron status and inflammation. The SF*TSAT ratio demonstrated differential performance, showing a higher area under the ROC curve for the diagnosis of iron deficiency compared to inflammation (0.75 vs 0.98, p < 0.05), whereas the log-transformed SF/TSAT ratio did not exhibit this distinction.ConclusionThe TSAT*SF index effectively identifies tissue iron overload independently of inflammation. Its use may improve iron status assessment in pediatric populations exposed to HA and systemic inflammation. Elevated TSAT*SF was linked to erythrocytosis and impaired growth, underscoring its diagnostic and public health significance.
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