Increasing serum iron levels and their role in the risk of infectious diseases: a Mendelian randomization approach

孟德尔随机化 优势比 医学 混淆 人口 败血症 内科学 全基因组关联研究 免疫学 单核苷酸多态性 生物 环境卫生 基因型 遗传学 基因 遗传变异
作者
Guillaume Butler‐Laporte,Yossi Farjoun,Yiheng Chen,Michael Hultström,Kevin Liang,Teruyuki Nakanishi,Chen-Yang Su,Satoshi Yoshiji,Vincenzo Forgetta,J. Brent Richards
出处
期刊:International Journal of Epidemiology [Oxford University Press]
卷期号:52 (4): 1163-1174 被引量:3
标识
DOI:10.1093/ije/dyad010
摘要

Abstract Objectives Increased iron stores have been associated with elevated risks of different infectious diseases, suggesting that iron supplementation may increase the risk of infections. However, these associations may be biased by confounding or reverse causation. This is important, since up to 19% of the population takes iron supplementation. We used Mendelian randomization (MR) to bypass these biases and estimate the causal effect of iron on infections. Methods As instrumental variables, we used genetic variants associated with iron biomarkers in two genome-wide association studies (GWASs) of European ancestry participants. For outcomes, we used GWAS results from the UK Biobank, FinnGen, the COVID-19 Host Genetics Initiative or 23andMe, for seven infection phenotypes: ‘any infections’, combined, COVID-19 hospitalization, candidiasis, pneumonia, sepsis, skin and soft tissue infection (SSTI) and urinary tract infection (UTI). Results Most of our analyses showed increasing iron (measured by its biomarkers) was associated with only modest changes in the odds of infectious outcomes, with all 95% odds ratios confidence intervals within the 0.88 to 1.26 range. However, for the three predominantly bacterial infections (sepsis, SSTI, UTI), at least one analysis showed a nominally elevated risk with increased iron stores (P <0.05). Conclusion Using MR, we did not observe an increase in risk of most infectious diseases with increases in iron stores. However for bacterial infections, higher iron stores may increase odds of infections. Hence, using genetic variation in iron pathways as a proxy for iron supplementation, iron supplements are likely safe on a population level, but we should continue the current practice of conservative iron supplementation during bacterial infections or in those at high risk of developing them.

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