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Published on: September 20, 2024
Autoantibodies against the chemokine receptor 3 predict cardiovascular risk
Felix S Müller1,2,3,4, Zouhair Aherrahrou5,6, Hanna Grasshoff7
1Preventive Cardiology and Preventive Medicine, Department of Cardiology, University Medical Center of the Johannes Gutenberg-University Mainz, Langenbeckstr. 1, 55131 Mainz, Germany.
Insights
Autoantibodies against CXC-motif-chemokine receptor 3 (CXCR3) are linked to cardiovascular damage and predict mortality in individuals without autoimmune disease. These findings highlight CXCR3 autoantibodies as a novel risk factor for cardiovascular disease and atherosclerosis progression.
Area of Science:
- Cardiovascular Disease Research
- Immunology and Autoimmunity
- Atherosclerosis Pathogenesis
Background:
- Chronic inflammation and autoimmunity are established contributors to cardiovascular (CV) disease.
- Autoantibodies (aAbs) targeting CXC-motif-chemokine receptor 3 (CXCR3), a key player in atherosclerosis, have been recently identified.
- The specific role of anti-CXCR3 aAbs in predicting CV risk and disease progression remains largely undefined.
Purpose of the Study:
- To investigate the prevalence and clinical significance of anti-CXCR3 aAbs in a general population.
- To determine the association of anti-CXCR3 aAbs with CV end-organ damage and clinical outcomes.
- To explore the preclinical role of anti-CXCR3 aAbs in atherosclerosis development using an animal model.
Main Methods:
- Quantification of anti-CXCR3 aAbs using a commercial ELISA in 4195 participants from the Gutenberg Health Study.
- Regression analyses to identify determinants of anti-CXCR3 aAbs and their association with all-cause mortality, cardiac death, heart failure, and major adverse cardiac events.
- Preclinical validation through immunization and passive transfer of aAbs in CXCR3-immunized ApoE(-/-) mice.
Main Results:
- Elevated anti-CXCR3 aAbs concentrations correlated with increased intima-media thickness, left ventricular mass, and N-terminal pro-B-type natriuretic peptide, independent of traditional CV risk factors.
- Anti-CXCR3 aAbs above the 75th percentile predicted all-cause death (HR 1.25) and cardiac mortality (HR 2.51), with a trend towards higher risk for major adverse cardiac events and incident heart failure.
- Proteomic analysis revealed a molecular signature associated with immune cell activation and T helper cell 1 response; immunized mice showed increased atherosclerosis.
Conclusions:
- In individuals without autoimmune disease, anti-CXCR3 aAbs are prevalent and associated with CV end-organ damage.
- Anti-CXCR3 aAbs serve as an independent predictor of all-cause mortality, cardiac morbidity, and mortality.
- These findings suggest anti-CXCR3 aAbs accelerate experimental atherosclerosis, indicating a novel pathogenic role in CV disease.
Background And Aims:
Chronic inflammation and autoimmunity contribute to cardiovascular (CV) disease. Recently, autoantibodies (aAbs) against the CXC-motif-chemokine receptor 3 (CXCR3), a G protein-coupled receptor with a key role in atherosclerosis, have been identified. The role of anti-CXCR3 aAbs for CV risk and disease is unclear.
Methods:
Anti-CXCR3 aAbs were quantified by a commercially available enzyme-linked immunosorbent assay in 5000 participants (availability: 97.1%) of the population-based Gutenberg Health Study with extensive clinical phenotyping. Regression analyses were carried out to identify determinants of anti-CXCR3 aAbs and relevance for clinical outcome (i.e. all-cause mortality, cardiac death, heart failure, and major adverse cardiac events comprising incident coronary artery disease, myocardial infarction, and cardiac death). Last, immunization with CXCR3 and passive transfer of aAbs were performed in ApoE(-/-) mice for preclinical validation.
Results:
The analysis sample included 4195 individuals (48% female, mean age 55.5 ± 11 years) after exclusion of individuals with autoimmune disease, immunomodulatory medication, acute infection, and history of cancer. Independent of age, sex, renal function, and traditional CV risk factors, increasing concentrations of anti-CXCR3 aAbs translated into higher intima-media thickness, left ventricular mass, and N-terminal pro-B-type natriuretic peptide. Adjusted for age and sex, anti-CXCR3 aAbs above the 75th percentile predicted all-cause death [hazard ratio (HR) (95% confidence interval) 1.25 (1.02, 1.52), P = .029], driven by excess cardiac mortality [HR 2.51 (1.21, 5.22), P = .014]. A trend towards a higher risk for major adverse cardiac events [HR 1.42 (1.0, 2.0), P = .05] along with increased risk of incident heart failure [HR per standard deviation increase of anti-CXCR3 aAbs: 1.26 (1.02, 1.56), P = .03] may contribute to this observation. Targeted proteomics revealed a molecular signature of anti-CXCR3 aAbs reflecting immune cell activation and cytokine-cytokine receptor interactions associated with an ongoing T helper cell 1 response. Finally, ApoE(-/-) mice immunized against CXCR3 displayed increased anti-CXCR3 aAbs and exhibited a higher burden of atherosclerosis compared to non-immunized controls, correlating with concentrations of anti-CXCR3 aAbs in the passive transfer model.
Conclusions:
In individuals free of autoimmune disease, anti-CXCR3 aAbs were abundant, related to CV end-organ damage, and predicted all-cause death as well as cardiac morbidity and mortality in conjunction with the acceleration of experimental atherosclerosis.
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