Unveiling the micronutrient‐immunity puzzle in inactivated COVID‐19 vaccination: A comprehensive analysis of circulating micronutrient levels and humoral responses in healthy adults

微量营养素 接种疫苗 免疫系统 免疫学 抗体 体液免疫 免疫 生理学 医学 生物 病毒学 化学 病理 有机化学
作者
Huicui Meng,Yin Wang,Yanmei Zhai,Wanyu Luo,Yuanyuan Wang,Yunqi Hu,Sizhe Liu,Weimin Xiao,Guowu Yang,Ye Feng,Shifeng Chen,Yusheng Jie,Yao‐qing Chen
出处
期刊:Journal of Medical Virology [Wiley]
卷期号:96 (4)
标识
DOI:10.1002/jmv.29611
摘要

While micronutrients are crucial for immune function, their impact on humoral responses to inactivated COVID-19 vaccination remains unclear. We investigated the associations between seven key micronutrients and antibody responses in 44 healthy adults with two doses of an inactivated COVID-19 vaccine. Blood samples were collected pre-vaccination and 28 days post-booster. We measured circulating minerals (iron, zinc, copper, and selenium) and vitamins (A, D, and E) concentrations alongside antibody responses and assessed their associations using linear regression analyses. Our analysis revealed inverse associations between blood iron and zinc concentrations and anti-SARS-CoV-2 IgM antibody binding affinity (AUC for iron: β = -258.21, p < 0.0001; zinc: β = -17.25, p = 0.0004). Notably, antibody quality presented complex relationships. Blood selenium was positively associated (β = 18.61, p = 0.0030), while copper/selenium ratio was inversely associated (β = -1.36, p = 0.0055) with the neutralizing ability against SARS-CoV-2 virus at a 1:10 plasma dilution. There was no significant association between circulating micronutrient concentrations and anti-SARS-CoV-2 IgG binding affinity. These findings suggest that circulating iron, zinc, and selenium concentrations and copper/selenium ratio, may serve as potential biomarkers for both quantity (binding affinity) and quality (neutralization) of humoral responses after inactivated COVID-19 vaccination. Furthermore, they hint at the potential of pre-vaccination dietary interventions, such as selenium supplementation, to improve vaccine efficacy. However, larger, diverse studies are needed to validate these findings. This research advances the understanding of the impact of micronutrients on vaccine response, offering the potential for personalized vaccination strategies.
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