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February 2, 2026European Neuropsychopharmacology3 citationsOpen Access

Major depression and atherosclerotic disease: Linking shared genetics to pathways in blood, brain, heart, and atherosclerotic plaques

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EPEmma PruinMBMeike BartelsEBErnest Diez Benavente

Key Result

Major depression genetic liability increased the risk of coronary artery disease (OR 1.2; 95% CI 1.13-1.26; p=3.76×10^-22) and stroke, with shared causal variants in blood, brain, and heart.

Key Points

  • This research aims to identify the shared genetic risk between major depression and atherosclerotic diseases and their impact on gene expression in various tissues.
  • Analyzed genetic data from large-scale studies of major depression and atherosclerotic traits.
  • Utilized Two-Sample Mendelian randomization to find causal associations between traits.
  • Explored gene expression in blood, brain, heart, and atherosclerotic plaques to identify causal pathways.
  • Major depression genetic liability increases the risk of stroke (OR=1.15), ischemic stroke (OR=1.16), and CAD (OR=1.20).
  • Identified eight genomic regions containing shared causal variants linked to both major depression and various strokes.
  • Altered gene expression in 16 genes from blood, 10 from brain, and 6 from heart contributes to the etiology of major depression.

Study Design

Type

Observational (n=3,887,532)

Structured PICO

Does genetic liability to major depression increase the risk of atherosclerotic diseases?

P
Population
Data from genome-wide association studies of major depression (N = 3,887,532) and 8 atherosclerotic traits (N = 26,909-1,308,460)
I
Intervention
Genetic liability to major depression
O
Outcome
Risk of atherosclerotic diseases (stroke, CAD) and identification of shared causal variants and gene expressionhard clinical

Major depression and atherosclerotic diseases share genetic risk pathways, suggesting that depression pathophysiology may directly increase atherosclerotic risk through gene expression in blood, brain, and heart tissues.

Main Result

Effect estimate: OR 1.2 (95% CI 1.13-1.26)

p-value: p=3.76 × 10^-22

Abstract

The increased risk of atherosclerotic diseases (stroke, coronary artery disease CAD) observed in depression may stem from shared pathophysiology. We examined whether: 1) major depression (MD) and atherosclerotic traits share genetic risk, and 2) altered gene expression in various tissues linked to shared genetics has a potential causal role in depression etiology. Data from the largest genome-wide association studies of MD (N = 3,887,532) and 8 atherosclerotic traits (N = 26,909-1,308,460) were used in Two-Sample Mendelian randomization and colocalization to detect cross-trait causal associations and genomic loci containing shared causal variants. In shared loci, summary data-based Mendelian randomization estimated the effects of gene expression on MD etiology using expression quantitative trait loci datasets from whole blood, brain and heart tissues and atherosclerotic plaques from the Athero-Express Biobank Study. MD genetic liability increased risk of any stroke (OR=1.15, p = 9.47 × 10-8), ischemic stroke (OR=1.16, p = 1.52 × 10-7), small vessel disease (OR=1.34, p = 4.76 × 10-5) and CAD (OR=1.2, 95 %CIs=1.13-1.26, p = 3.76 × 10-22). Eight genomic regions harbored potentially shared causal variants, including one on chromosome 7 linking MD with any stroke, ischemic stroke and CAD. Altered expression of 16 genes in blood, 10 in brain, and 6 in heart was found causal for MD etiology. In atherosclerotic plaques, one gene was linked to MD at nominal significance only. Major depression and atherosclerotic diseases share genetic risk potentially acting in depression pathophysiology through expression of genes in blood, brain and heart tissues. Involvement of atherosclerotic plaques in depression etiology was not supported. Identified pathways could guide the development of new treatments to prevent depression-heightened atherosclerotic risk.

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Cite This Study

Pruin et al. (2026) conducted an observational in Major depression and atherosclerotic diseases (n=3,887,532). Major depression genetic liability was evaluated on Coronary artery disease (OR 1.2, 95% CI 1.13-1.26, p=3.76 × 10^-22). Major depression genetic liability increased the risk of coronary artery disease (OR 1.2; 95% CI 1.13-1.26; p=3.76×10^-22) and stroke, with shared causal variants in blood, brain, and heart.

synapsesocial.com/papers/6980fd9dc1c9540dea80f553https://doi.org/10.1016/j.euroneuro.2026.112780
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