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Blood-Derived Lipid and Metabolite Biomarkers in Cardiovascular Research from Clinical Studies: A Recent Update
Dipali Kale1, Amol Fatangare1, Prasad Phapale1
1Leibniz-Institut für Analytische Wissenschaften-ISAS-e.V., 44139 Dortmund, Germany.
Insights
Lipidomics and metabolomics offer deeper insights into cardiovascular disease (CVD) than traditional tests. Recent studies highlight novel plasma biomarkers for improved CVD risk assessment and diagnosis.
Area of Science:
- Biochemistry
- Cardiovascular Medicine
- Analytical Chemistry
Background:
- Cardiovascular disease (CVD) prevention, detection, and treatment are critical global health priorities.
- Traditional blood lipid profiles are limited in predicting CVD risk, necessitating improved diagnostic approaches.
- Lipidomics and metabolomics offer molecular insights into disease pathophysiology.
Purpose of the Study:
- To review mass spectrometry (MS)-based lipidomics and metabolomics platforms for CVD research.
- To summarize recent plasma lipid and metabolite biomarkers (2018-2022) associated with CVD.
- To explore potential pathophysiological mechanisms of identified CVD biomarkers.
Main Methods:
- Overview of various MS-based platforms and workflows in lipidomics and metabolomics.
- Comprehensive literature review of recent studies (2018-2022) identifying CVD biomarkers in human plasma/serum.
- Analysis of potential pathophysiological roles of candidate biomarkers.
Main Results:
- Identification of specific lipids and metabolites as promising CVD biomarkers.
- Recent advancements in MS-based techniques enhance the scope of lipidomic and metabolomic analyses.
- Emerging biomarkers show potential for improved CVD risk stratification and diagnosis.
Conclusions:
- Lipidomics and metabolomics provide a more comprehensive understanding of CVD pathogenesis than traditional methods.
- Identified plasma biomarkers hold promise for enhancing CVD risk assessment, diagnosis, and treatment strategies.
- Further research into these biomarkers and pathways is crucial for mechanistic insights and clinical application.
Abstract:
The primary prevention, early detection, and treatment of cardiovascular disease (CVD) have been long-standing scientific research goals worldwide. In the past decades, traditional blood lipid profiles have been routinely used in clinical practice to estimate the risk of CVDs such as atherosclerotic cardiovascular disease (ASCVD) and as treatment targets for the primary prevention of adverse cardiac events. These blood lipid panel tests often fail to fully predict all CVD risks and thus need to be improved. A comprehensive analysis of molecular species of lipids and metabolites (defined as lipidomics and metabolomics, respectively) can provide molecular insights into the pathophysiology of the disease and could serve as diagnostic and prognostic indicators of disease. Mass spectrometry (MS) and nuclear magnetic resonance (NMR)-based lipidomics and metabolomics analysis have been increasingly used to study the metabolic changes that occur during CVD pathogenesis. In this review, we provide an overview of various MS-based platforms and approaches that are commonly used in lipidomics and metabolomics workflows. This review summarizes the lipids and metabolites in human plasma/serum that have recently (from 2018 to December 2022) been identified as promising CVD biomarkers. In addition, this review describes the potential pathophysiological mechanisms associated with candidate CVD biomarkers. Future studies focused on these potential biomarkers and pathways will provide mechanistic clues of CVD pathogenesis and thus help with the risk assessment, diagnosis, and treatment of CVD.
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