Mass Spectrometry–Based Hepcidin Measurements in Serum and Urine: Analytical Aspects and Clinical Implications
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Open Access
- 1 April 2007
- journal article
- Published by Oxford University Press (OUP) in Clinical Chemistry
- Vol. 53 (4) , 620-628
- https://doi.org/10.1373/clinchem.2006.079186
Abstract
Background: Discovery of the central role of hepcidin in body iron regulation has shed new light on the pathophysiology of iron disorders. Information is lacking on newer analytical approaches to measure hepcidin in serum and urine. Recent reports on the measurement of urine and serum hepcidin by surface-enhanced laser-desorption/ionization time-of-flight mass spectrometry (SELDI-TOF MS) necessitate analytical and clinical evaluation of MS-based methodologies. Methods: We used SELDI-TOF MS, immunocapture, and tandem MS to identify and characterize hepcidin in serum and urine. In addition to diagnostic application, we investigated analytical reproducibility and biological and preanalytical variation for both serum and urine on Normal Phase 20 and Immobilized Metal Affinity Capture 30 ProteinChip arrays. We obtained samples from healthy controls and patients with documented iron-deficiency anemia, inflammation-induced anemia, thalassemia major, and hereditary hemochromatosis. Results: Proteomic techniques showed that hepcidin-20, -22, and -25 isoforms are present in urine. Hepcidin-25 in serum had the same amino acid sequence as hepcidin-25 in urine, whereas hepcidin-22 was not detected in serum. The interarray CV was 15% to 27%, and interspot CV was 11% to 13%. Preliminary studies showed that hepcidin-25 differentiated disorders of iron metabolism. Urine hepcidin is more affected by multiple freeze-thaw cycles and storage conditions, but less influenced by diurnal variation, than is serum hepcidin. Conclusion: SELDI-TOF MS can be used to measure hepcidin in both serum and urine, but serum requires a standardized sampling protocol.Keywords
This publication has 29 references indexed in Scilit:
- Detection of serum hepcidin in renal failure and inflammation by using ProteinChip SystemBlood, 2006
- In Vivo Evidence for Nitric Oxide–Mediated Calcium-Activated Potassium-Channel Activation During Human EndotoxemiaCirculation, 2006
- Hereditary Hemochromatosis: Genetic Complexity and New Diagnostic ApproachesClinical Chemistry, 2006
- Novel urine hepcidin assay by mass spectrometryBlood, 2005
- Hepcidin in iron metabolismCurrent Opinion in Hematology, 2004
- Hepcidin, a putative mediator of anemia of inflammation, is a type II acute-phase proteinBlood, 2003
- Severe iron deficiency anemia in transgenic mice expressing liver hepcidinProceedings of the National Academy of Sciences, 2002
- A New Mouse Liver-specific Gene, Encoding a Protein Homologous to Human Antimicrobial Peptide Hepcidin, Is Overexpressed during Iron OverloadJournal of Biological Chemistry, 2001
- Hepcidin, a Urinary Antimicrobial Peptide Synthesized in the LiverJournal of Biological Chemistry, 2001
- LEAP‐1, a novel highly disulfide‐bonded human peptide, exhibits antimicrobial activityFEBS Letters, 2000