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Plasma Proteomic Assessment of Calcific Aortic Valve Disease in Older Adults
Anna E Bortnick1,2, Thomas R Austin3, Emily Hamerton4,5
1Department of Medicine, Divisions of Cardiology and Geriatrics Montefiore Medical Center and Albert Einstein College of Medicine Bronx NY.
Insights
Researchers identified three proteins linked to calcific aortic valve disease (CAVD) in older adults. Plasma kallikrein B1 (KLKB1) showed a potential causal link, suggesting future therapeutic targets for CAVD.
Area of Science:
- Cardiovascular research
- Proteomics
- Aging and disease
Background:
- Calcific aortic valve disease (CAVD) and severe aortic stenosis (AS) are common in aging populations.
- Current preventive therapies for CAVD are lacking.
- Understanding the molecular basis of aortic valve calcification (AVC) is crucial for developing new treatments.
Purpose of the Study:
- To identify circulating proteins associated with AVC and incident AS in older adults.
- To validate identified proteins in an independent cohort.
- To investigate potential causal relationships using Mendelian randomization.
Main Methods:
- Large-scale plasma proteomics using the SomaLogic platform in the Cardiovascular Health Study (CHS) cohort.
- Validation of significant proteins in the Age, Gene/Environment Susceptibility-Reykjavik Study (AGES-RS) cohort.
- Two-sample Mendelian randomization analysis to assess causality.
Main Results:
- Six proteins were significantly associated with AVC in CHS; CXCL-12, KLKB1, and leptin replicated in AGES-RS.
- CXCL6 showed a significant positive association with incident AS.
- Mendelian randomization supported a causal relationship between higher KLKB1 and lower AVC.
Conclusions:
- Three circulating proteins were newly associated with CAVD, with KLKB1 showing a potential causal link.
- Further research is needed to explore KLKB1 as a therapeutic target for CAVD.
Background:
Calcific aortic valve disease (CAVD), and ensuing severe aortic stenosis (AS), is the foremost valvular disorder of aging, yet preventive therapies are lacking. A better understanding of the molecular underpinnings of aortic valve calcification (AVC) is necessary to develop pharmacologic interventions.
Methods And Results:
We undertook large-scale plasma proteomics in a cohort study of adults ≥65 years old, the CHS (Cardiovascular Health Study), to identify individual proteins associated with echocardiographic AVC and incident moderate/severe AS. Proteomics measurements were performed with the aptamer-based SomaLogic platform of ~5000 proteins. Significant proteins were validated in a second cohort, the AGES-RS (Age, Gene/Environment Susceptibility-Reykjavik Study), which assessed AVC and AS by computed tomography. The potential causal associations of replicated proteins were tested in 2-sample Mendelian randomization using identified cis protein quantitative trait loci in consortia having computed tomography-quantified AVC or AS as outcomes. Six proteins showed Bonferroni-corrected significant relationships with AVC in CHS. Three of these, CXCL-12 (C-X-C chemokine ligand 12), KLKB1 (kallikrein), and leptin, replicated in AGES-RS, of which the former 2 are novel. Only 1 protein, CXCL6, which showed a near-significant association with AS in the replication cohort, was significantly (positively) associated with incident AS. Mendelian randomization analysis was conducted for KLKB1, CXCL12, and CXCL6, which supported a causal relationship for higher KLKB1 with lower AVC (beta=-0.25, P=0.009).
Conclusions:
This study of older adults newly identified and largely replicated associations of 3 circulating proteins with calcific aortic valve disease, of which the relationship of plasma KLKB1 may have a causal basis. Additional investigation is necessary to determine if KLKB1 could be harnessed for calcific aortic valve disease therapeutics.
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