Related Experiment Video
Updated: Mar 15, 2026

A Precision Medicine Tool for Measurement and Monitoring of Hemoglobin S in Sickle Cell Disease Patients Receiving Transfusion Therapy
C282Y Homozygosity Increases Erythrocyte Turnover and Decreases HbA1c-A Population-Based Study
Rebekka Hillingsø1,2, Alisa Devedzic Kjaergaard3, Morten Kranker Larsen4
1Faculty of Health and Medical Sciences, University of Copenhagen, 2200 Copenhagen, Denmark.
Abstract:
Individuals with C282Y/C282Y in the hemochromatosis HFE gene have increased iron levels, which catalyze the formation of reactive oxygen species, and an increased risk of diabetes. These individuals may have disproportionately lower hemoglobin A1c (HbA1c) due to increased erythrocyte turnover, decreased erythrocyte counts, and/or an increased mean corpuscular hemoglobin concentration (MCHC). In the Copenhagen General Population Study (N = 103,734) and the Danish General Suburban Population Study (GESUS, N = 20,003), we investigated the association between C282Y/C282Y (N = 399) and other HFE genotypes with erythrocyte count, MCHC, mean corpuscular volume (MCV), red cell distribution width (RDW), and high-sensitivity C-reactive protein (hsCRP). In GESUS, we additionally investigated the association with oxidative stress (by 8-oxo-7,8-dihydroguanosine and 8-oxo-7,8-dihydro-2'-deoxyguanosine), reticulocyte count, reticulocyte hemoglobin, reticulocyte percentage as a proxy for erythrocyte turnover, and HbA1c in linear regressions adjusted for age, sex, cohort, and blood donation. We investigated the mediation between HFE genotype and HbA1c. Compared to non-carriers, individuals with C282Y/C282Y had increased p-iron, transferrin saturation, ferritin, hsCRP, oxidative stress, reticulocyte counts, reticulocyte percentage (1.24% vs. 1.06%, p = 1.7 × 10-5) as a proxy for erythrocyte turnover, MCHC (344 vs. 340 g/L, p = 1.7 × 10-12), MCH, MCV, reticulocyte hemoglobin, p-glucose (5.6 vs. 5.4, p = 0.007), bilirubin, and LDH and decreased RDW, erythrocyte counts (4.49 × 1012/L vs. 4.61 × 1012/L, p = 6.1 × 10-11), estimated erythrocyte survival, and HbA1c (36 vs. 38 mmol/mol, p = 0.01). The associations were similar, although attenuated, for other HFE genotypes. The association between the HFE genotype and decreased HbA1c was partially mediated by increased transferrin saturation, MCHC, MCV, and decreased erythrocyte count, but not by hsCRP, reticulocyte count, oxidative stress, or blood donation. In conclusion, while C282Y/C282Y and other HFE genotypes increased erythrocyte turnover, the disproportionately decreased HbA1c level was explained by fewer but larger erythrocytes filled with more hemoglobin and removed earlier from circulation, thus diluting the relative concentration of intracellular glucose per hemoglobin molecule.
More Related Videos
08:23Characterization of Sickling During Controlled Automated Deoxygenation with Oxygen Gradient Ektacytometry
Published on: November 5, 2019
05:23Continuous Manual Exchange Transfusion for Patients with Sickle Cell Disease: An Efficient Method to Avoid Iron Overload
Published on: March 14, 2017
Related Concept Videos
Multiple Allele Traits
Disorders of Erythrocytes
Erythrocyte disorders can be broadly categorized into two main types: anemic and polycythemic conditions.
A low oxygen-carrying capacity of the blood due to the loss, lower production, or destruction of erythrocytes is termed anemia. Hemorrhagic anemia, for example, occurs when bleeding from an external wound or internal ulcer reduces erythrocyte counts.
On the other...
Factors Affecting Erythropoiesis
Several factors influence the erythrocyte production rate, with tissue oxygen level being among the most critical. Intense exercise or high altitudes can cause tissue hypoxia, which triggers the kidneys to release more erythropoietin (EPO) into the bloodstream.
EPO then...
Genetic Lingo
Diabetes Mellitus: Type 2 and Gestational
Lifecycle of Erythrocytes
The resident phagocytic macrophages deal with these damaged cells by engulfing them and separating their globin and heme groups....