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Author Spotlight: Advancing the Analysis of Plasma Extracellular Vesicle Proteome for Cardiovascular Biomarker Studies
Published on: January 31, 2025
Biobank-Scale Plasma Proteomics Identifies Novel Biomarkers in Hypertrophic Cardiomyopathy
Jonathan H Chan1,2, Christopher Grace1,2, Mohsen Mazidi3
1Division of Cardiovascular Medicine, Radcliffe Department of Medicine (J.H.C., C.G., S.N., H.W., A.G.), University of Oxford, United Kingdom.
Insights
This study identified novel plasma protein biomarkers, angiopoietin-2 and latent transforming growth factor-beta binding protein 2, for hypertrophic cardiomyopathy (HCM). These proteins aid in risk stratification and understanding HCM, improving patient outcomes.
Area of Science:
- Cardiovascular proteomics
- Biomarker discovery
- Genetic epidemiology
Background:
- Hypertrophic cardiomyopathy (HCM) presents diverse clinical phenotypes and risks, necessitating improved biomarkers for risk stratification.
- Previous research identified some plasma proteins in HCM, but large-scale proteomic analyses were lacking.
Purpose of the Study:
- To conduct a large-scale proteomic analysis to identify novel plasma protein biomarkers associated with HCM.
- To evaluate the diagnostic and prognostic utility of identified biomarkers for HCM and its adverse outcomes.
Main Methods:
- A case-control study analyzed 2922 plasma proteins in nearly 50,000 UK Biobank participants, including 100 HCM cases.
- External validation was performed using Icelandic and All of Us datasets; Mendelian randomization assessed causality.
Main Results:
- Novel associations were found between angiopoietin-2 (ANGPT2) and latent transforming growth factor-beta binding protein 2 (LTBP2) and HCM.
- These biomarkers demonstrated prognostic utility for heart failure outcomes in HCM patients.
- Established biomarkers like NT-proBNP and troponins were confirmed; Mendelian randomization supported causality for HCM impacting NT-proBNP and troponin T.
Conclusions:
- Biobank-scale plasma proteomics identified ANGPT2 and LTBP2 as novel biomarkers for HCM.
- These findings suggest potential for improved risk prediction and offer insights into HCM pathobiology.
Background:
Hypertrophic cardiomyopathy (HCM) is characterized by substantial heterogeneity in both clinical phenotype and risk of adverse outcomes, including heart failure and sudden cardiac death. This highlights the need for robust biomarkers for risk stratification, and while previous studies have identified the role of select plasma proteins, comprehensive large-scale proteomic analyses have been limited in HCM.
Methods:
We performed a case-control analysis of 2922 plasma proteins in 49 588 UK Biobank participants (100 HCM cases) to identify proteins associated with HCM. External replication analyses were performed in the deCODE Genetics Icelandic study (51 cases/38 904 controls) and All of Us (546 cases/41 049 controls) data sets. Associations with adverse clinical outcomes and cardiac endophenotypes of disease severity were further identified, and causal relationships were evaluated using Mendelian randomization. Relative biomarker importance was also assessed by joint modeling via machine learning.
Results:
We identified novel associations of ANGPT2 (angiopoietin-2) and LTBP2 (latent transforming growth factor-beta binding protein 2) with HCM, with both also showing prognostic utility for heart failure-related outcomes in HCM cases. We also confirmed the associations of established biomarkers (eg, NT-proBNP [N-terminal pro-B-type natriuretic peptide], troponins I and T) with HCM cases, cardiac imaging markers of disease severity, and adverse outcomes. Mendelian randomization analyses supported a causal effect of HCM on increasing NT-proBNP and troponin T levels.
Conclusions:
This biobank-scale plasma proteomic study in HCM identified ANGPT2 and LTBP2 as novel HCM biomarkers with potential diagnostic and prognostic utility. These findings highlight the potential for plasma proteomics to improve risk prediction and provide insight into HCM pathobiology.
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