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Branched-chain amino acids are linked with iron metabolism

Dietmar Enko, Thomas Moro, Sandra Holasek, Andreas Baranyi, W. Schnedl, Sieglinde Zelzer, Harald Mangge, Markus Herrmann, Andreas Meinitzer

2020Annals of Translational Medicine33 citationsDOIOpen Access PDF

Abstract

BACKGROUND: The branched-chain amino acids (BCAAs) valine, leucine and isoleucine are reported to influence erythropoiesis and the human iron status. Large study cohorts encompassing biomarkers of iron metabolism and BCAAs are still lacking. METHODS: We investigated potential interactions between blood concentrations of all three BCAAs valine, leucine and isoleucine and biomarkers of iron metabolism [i.e., hemoglobin (Hb), mean corpuscular volume (MCV), mean corpuscular hemoglobin (MCH), iron, transferrin, ferritin, transferrin saturation, soluble transferrin receptor (sTfR)] in 430 outpatients referred for a medical health check-up. Linear regression models were performed to assess possible associations between variables. RESULTS: All three BCAAs were positively correlated with Hb, ferritin and the sTfR (r-values: 0.145-0.382; P values: <0.001-0.003). The strongest correlation was observed between valine and Hb (r=0.382; P value <0.001). Linear regression models showed a statistically significant influence of all three BCAAs on Hb and ferritin (β-coefficients: 0.173-0.351; all P values: <0.001). Seventeen patients with anemia (4%) were found with significantly lower serum BCAA concentrations compared to 413 non-anemic individuals (P<0.05). CONCLUSIONS: These data indicate a pathophysiological link between the three BCAAs valine, leucine and isoleucine and the human iron indicators Hb and ferritin. Further studies are needed to clarify the exact causal mechanisms of these findings.

Topics & Concepts

ValineMean corpuscular volumeIsoleucineFerritinHemoglobinLeucineInternal medicineAnemiaEndocrinologyMean corpuscular hemoglobin concentrationTransferrin saturationChemistryTransferrinSerum ironBiochemistryMedicineAmino acidIron deficiencyIron Metabolism and DisordersMuscle metabolism and nutritionErythropoietin and Anemia Treatment