ArticleJournal of translational medicine2018
Plasma proteomic analysis reveals altered protein abundances in cardiovascular disease.
Article in Journal of translational medicine, 2018. The graph could read no effect estimate from its abstract, so it casts no vote on the map. Cited by 21 papers.
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Who cites it
21 citing papers in PubMed, 71 citations in OpenAlex.
- Plasma proteomics improves risk prediction in heart failure and reveals unique biology in chronic chagas cardiomyopathy.PLoS neglected tropical diseases · 2026Article
- Multiomics: the intersection of personalized nutrition in cardiometabolic diseases.Journal of translational medicine · 2026Review
- Improved sex-specific cardiovascular risk prediction with multi-omics data in people with type 2 diabetes.Cardiovascular diabetology · 2025Article
- Deciphering Acute Coronary Syndromes Pathobiology Through Proteomics.Journal of cardiovascular development and disease · 2025Review
- Multimodal Analytical Tools to Enhance Mechanistic Understanding of Aortic Valve Calcification.The American journal of pathology · 2024Review
- Searching for Atherosclerosis Biomarkers by Proteomics: A Focus on Lesion Pathogenesis and Vulnerability.International journal of molecular sciences · 2023Review
- Dietary Mg Supplementation Decreases Oxidative Stress, Inflammation, and Vascular Dysfunction in an Experimental Model of Metabolic Syndrome with Renal Failure.Antioxidants (Basel, Switzerland) · 2023Article
- The Implant Proteome-The Right Surgical Glue to Fix Titanium Implants In Situ.Journal of functional biomaterials · 2022Article
- Quantitative proteomics reveal three potential biomarkers for risk assessment of acute myocardial infarction.Bioengineered · 2022Article
- Evaluating the detection ability of a range of epistasis detection methods on simulated data for pure and impure epistatic models.PloS one · 2022Article
- Apolipoprotein Signature of HDL and LDL from Atherosclerotic Patients in Relation with Carotid Plaque Typology: A Preliminary Report.Biomedicines · 2021Article
- Mining the Biomarker Potential of the Urine Peptidome: From Amino Acids Properties to Proteases.International journal of molecular sciences · 2021Review
- Article
- Identification of Breast Cancer Subtype-Specific Biomarkers by Integrating Copy Number Alterations and Gene Expression Profiles.Medicina (Kaunas, Lithuania) · 2021Article
- Genome Wide Epistasis Study of On-Statin Cardiovascular Events with Iterative Feature Reduction and Selection.Journal of personalized medicine · 2020Article
- Big Data Approaches in Heart Failure Research.Current heart failure reports · 2020Review
- Molecular Changes in Tissue Proteome during Prostate Cancer Development: Proof-of-Principle Investigation.Diagnostics (Basel, Switzerland) · 2020Article
- Blood Viscoelasticity Measurement Using Interface Variations in Coflowing Streams under Pulsatile Blood Flows.Micromachines · 2020Article
- Plasma Proteome Profiling of Coronary Artery Disease Patients: Downregulation of Transthyretin-An Important Event.Mediators of inflammation · 2020Article
- Systems biology identifies cytosolic PLA2 as a target in vascular calcification treatment.JCI insight · 2019Article
Corrections and comments
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Authors and funding
10 authors at 5 institutions in 4 countries.
Funding
Abstract
backgroundCardiovascular disease (CVD) describes the pathological conditions of the heart and blood vessels. Despite the large number of studies on CVD and its etiology, its key modulators remain largely unknown. To this end, we performed a comprehensive proteomic analysis of blood plasma, with the scope to identify disease-associated changes after placing them in the context of existing knowledge, and generate a well characterized dataset for further use in CVD multi-omics integrative analysis.
methodsLC-MS/MS was employed to analyze plasma from 32 subjects (19 cases of various CVD phenotypes and 13 controls) in two steps: discovery (13 cases and 8 controls) and test (6 cases and 5 controls) set analysis. Following label-free quantification, the detected proteins were correlated to existing plasma proteomics datasets (plasma proteome database; PPD) and functionally annotated (Cytoscape, Ingenuity Pathway Analysis). Differential expression was defined based on identification confidence (≥ 2 peptides per protein), statistical significance (Mann-Whitney p value ≤ 0.05) and a minimum of twofold change.
resultsPeptides detected in at least 50% of samples per group were considered, resulting in a total of 3796 identified proteins (838 proteins based on ≥ 2 peptides). Pathway annotation confirmed the functional relevance of the findings (representation of complement cascade, fibrin clot formation, platelet degranulation, etc.). Correlation of the relative abundance of the proteins identified in the discovery set with their reported concentrations in the PPD was significant, confirming the validity of the quantification method. The discovery set analysis revealed 100 differentially expressed proteins between cases and controls, 39 of which were verified (≥ twofold change) in the test set. These included proteins already studied in the context of CVD (such as apolipoprotein B, alpha-2-macroglobulin), as well as novel findings (such as low density lipoprotein receptor related protein 2 [LRP2], protein SZT2) for which a mechanism of action is suggested.
conclusionsThis proteomic study provides a comprehensive dataset to be used for integrative and functional studies in the field. The observed protein changes reflect known CVD-related processes (e.g. lipid uptake, inflammation) but also novel hypotheses for further investigation including a potential pleiotropic role of LPR2 but also links of SZT2 to CVD.
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Registered trials
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