TY - JOUR
T1 - Genetically predicted iron status and cardiovascular function and structure
T2 - a Mendelian randomization study
AU - Quezada-Pinedo, Hugo G.
AU - Cajachagua-Torres, Kim N.
AU - Ahanchi, Noushin Sadat
AU - Khatami, Farnaz
AU - Muka, Taulant
AU - Huicho, Luis
AU - Kavousi, Maryam
AU - Eisenga, Michele F.
AU - Trajanoska, Katerina
N1 - Publisher Copyright:
© The Author(s) 2025. Published by Oxford University Press on behalf of the European Society of Cardiology.
PY - 2026/2/1
Y1 - 2026/2/1
N2 - Aims Iron levels imbalances are linked to cardiovascular outcomes. We aimed to assess the association between genetically predicted lifelong higher iron levels and cardiovascular outcomes, employing a two-sample Mendelian randomization (MR) approach to account for confounding biases. Methods and results We used a study involving 257 953 subjects across six cohort studies that identified genetic variants consistently associated with iron biomarkers, including ferritin, serum iron, total iron binding capacity (TIBC), and transferrin saturation (TSAT). The UK Biobank study was used to investigate the association between the same genetic variants and left ventricular end-diastolic volume (LVEDV), left ventricular end-systolic volume (LVESV), left ventricular ejection fraction (LVEF), left ventricular mass (LVM), and left ventricular mass-to-end-diastolic volume ratio (LVMVR). Two-sample MR approach was used in our main analysis. Heterogeneity, pleiotropy, bidirectional MR, MR-Egger, weighted median, and weighted mode were explored in the sensitivity analysis. One standard deviation (SD) increase in genetically predicted serum iron levels was associated with lower LVEDV (beta (95%CI): −0.11, (−0.19, −0.03), P-value = 0.006) and lower LVESV (−0.11 (−0.19, −0.03), P-value = 0.007). Moreover, one SD increase in genetically predicted TSAT was associated with higher LVMVR (0.09, (0.03, 0.15), P-value = 0.005). Heterogeneity, pleiotropy, and bidirectional effects were not observed. The identified associations were explained by HFE, TMPRSS6, TF, and TFR2 genes. No other associations were identified between iron biomarkers and cardiovascular outcomes. Conclusion Our study provides MR evidence that iron status may alter cardiovascular function and structure. HFE, TMPRSS6, TF and TFR2 genes play a crucial role in the identified associations.
AB - Aims Iron levels imbalances are linked to cardiovascular outcomes. We aimed to assess the association between genetically predicted lifelong higher iron levels and cardiovascular outcomes, employing a two-sample Mendelian randomization (MR) approach to account for confounding biases. Methods and results We used a study involving 257 953 subjects across six cohort studies that identified genetic variants consistently associated with iron biomarkers, including ferritin, serum iron, total iron binding capacity (TIBC), and transferrin saturation (TSAT). The UK Biobank study was used to investigate the association between the same genetic variants and left ventricular end-diastolic volume (LVEDV), left ventricular end-systolic volume (LVESV), left ventricular ejection fraction (LVEF), left ventricular mass (LVM), and left ventricular mass-to-end-diastolic volume ratio (LVMVR). Two-sample MR approach was used in our main analysis. Heterogeneity, pleiotropy, bidirectional MR, MR-Egger, weighted median, and weighted mode were explored in the sensitivity analysis. One standard deviation (SD) increase in genetically predicted serum iron levels was associated with lower LVEDV (beta (95%CI): −0.11, (−0.19, −0.03), P-value = 0.006) and lower LVESV (−0.11 (−0.19, −0.03), P-value = 0.007). Moreover, one SD increase in genetically predicted TSAT was associated with higher LVMVR (0.09, (0.03, 0.15), P-value = 0.005). Heterogeneity, pleiotropy, and bidirectional effects were not observed. The identified associations were explained by HFE, TMPRSS6, TF, and TFR2 genes. No other associations were identified between iron biomarkers and cardiovascular outcomes. Conclusion Our study provides MR evidence that iron status may alter cardiovascular function and structure. HFE, TMPRSS6, TF and TFR2 genes play a crucial role in the identified associations.
KW - Cardiovascular function and structure
KW - Genetic variants
KW - Iron status
KW - Left ventricle
KW - Mendelian randomization
UR - https://www.scopus.com/pages/publications/105030387052
U2 - 10.1093/eurjpc/zwaf498
DO - 10.1093/eurjpc/zwaf498
M3 - Artículo
C2 - 40794601
AN - SCOPUS:105030387052
SN - 2047-4873
VL - 33
SP - 394
EP - 403
JO - European Journal of Preventive Cardiology
JF - European Journal of Preventive Cardiology
IS - 3
ER -