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June 4, 2026British Journal Of Nutrition0 citations

Micronutrient Deficiencies and Cardiovascular Disease: A Binational Analysis of NHANES and CHARLS

ZLZhenyu Lin于于春洋ZWZhongcheng Wei

Key Points

  • This research aims to analyze the associations between micronutrient deficiencies and cardiovascular disease across two populations.
  • Cross-sectional analysis of NHANES (2007-2018, n=3848) and prospective analysis of CHARLS (2011-2018, n=11391).
  • Used multivariable-adjusted logistic regression, Cox proportional hazards models, and restricted cubic splines.
  • Created a composite micronutrient deficiency score to evaluate cumulative risk.
  • In NHANES, iron deficiency associated with prevalent CVD (OR 1.49, 95% CI: 1.09-2.01).
  • Vitamin D deficiency was prevalent (33.1%) but showed no independent association with CVD.
  • In CHARLS, higher consumption of fruits/vegetables (aHR 0.81, 95% CI: 0.70-0.93) and nuts (aHR 0.82, 95% CI: 0.71-0.95) associates with reduced CVD risk.

Abstract

Abstract Micronutrient deficiencies are modifiable risk factors for cardiovascular disease (CVD), yet their relative importance and combined effects across populations require further characterization.We performed a binational analysis integrating cross-sectional data from the US National Health and Nutrition Examination Survey (NHANES, 2007-2018; n=3,848) and prospective data from the China Health and Retirement Longitudinal Study (CHARLS, 2011-2018; n=11,391). Associations of specific micronutrient biomarkers (vitamin D, folate, vitamin B12, calcium, iron) and dietary patterns with CVD were assessed using multivariable-adjusted logistic regression, Cox proportional hazards models, and restricted cubic splines. A composite micronutrient deficiency score (MDS) evaluated cumulative risk.In NHANES, iron deficiency was independently associated with prevalent CVD after full adjustment (odds ratio OR 1.49, 95% confidence interval CI: 1.09-2.01), with a population prevalence of 23.4%. Although most prevalent (33.1%), vitamin D deficiency showed no independent association. Nonlinear analyses revealed a U-shaped relationship for iron (p-nonlinearity=0.003) and an inverse association for vitamin D (p-nonlinearity<0.001). A dose-response relationship was observed for cumulative deficiencies; participants with ≥2 deficiencies had 91% higher CVD odds (OR 1.91, 95% CI: 1.20-2.99). In CHARLS, frequent consumption of fruits/vegetables (adjusted hazard ratio aHR 0.81, 95% CI: 0.70-0.93), nuts (aHR 0.82, 0.71-0.95), and fish (aHR 0.85, 0.74-0.98) was associated with reduced incident CVD risk.Iron deficiency is an underrecognized independent risk factor for CVD, and multiple concurrent deficiencies synergistically increase risk. Plant-based dietary patterns are consistently protective. Findings advocate for iron status screening in cardiovascular risk assessment and emphasize holistic nutritional approaches.

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Cite This Study

Lin et al. (2026) studied this question.

synapsesocial.com/papers/6a211852d499ed480b170e6dhttps://doi.org/10.1017/s0007114526107661
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