Characterization of acquired anemia in children by iron metabolism parameters

Yael Ben-David1, Ariel Koren2,3, Raul Colodner4

  • 1Pediatric Department B, Emek Medical Center, Afula, Israel.

Scientific Reports
|February 18, 2022
PubMed

Insights

This study shows that hepcidin levels, a key iron regulator, differ significantly in children with anemia from various causes, aiding in diagnosis. Understanding these biochemical profiles helps physicians effectively treat pediatric anemia.

Area of Science:

  • Pediatric Hematology
  • Iron Metabolism
  • Biochemistry

Background:

  • Inflammatory conditions are linked to anemia of chronic disease and acute infections.
  • Hepcidin plays a crucial role in iron metabolism during inflammation.
  • Differentiating anemia causes in children requires understanding specific biochemical markers.

Purpose of the Study:

  • To investigate the biochemical characteristics of anemia in pediatric patients with different underlying causes.
  • To assess the role of hepcidin and other biomarkers in distinguishing between various types of anemia in children.
  • To establish etiology-specific biochemical profiles for improved anemia diagnosis and management in pediatric populations.

Main Methods:

  • A cohort of 38 pediatric patients with anemia was studied, divided into four groups: inflammatory bowel disease (IBD), iron deficiency anemia (IDA), celiac disease (CD), and acute infection (AI).
  • Comprehensive laboratory analyses were performed at diagnosis, including complete blood count, iron studies (serum iron, transferrin, ferritin), vitamin B12, folic acid, C-reactive protein (CRP), erythropoietin, hepcidin, and soluble transferrin receptor (sTfR).

Main Results:

  • Iron deficiency anemia patients exhibited the lowest hemoglobin, MCV, iron, ferritin, and hepcidin levels, alongside elevated transferrin and sTfR.
  • Patients with acute infection presented with the highest ferritin, CRP, and hepcidin values.
  • Hepcidin levels demonstrated strong positive correlations with both CRP (r=0.83) and ferritin (r=0.85).

Conclusions:

  • Distinct biochemical profiles are associated with different causes of anemia in children.
  • Hepcidin levels, in conjunction with other biomarkers like CRP and ferritin, are valuable in differentiating anemia etiologies.
  • Identifying these specific profiles can guide physicians in the accurate diagnosis and targeted treatment of pediatric anemia.

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