Lipid Metabolite Biomarkers in Cardiovascular Disease: Discovery and Biomechanism Translation from Human Studies.
Peter McGranaghanJennifer A KirwanMariel A Garcia-RiveraBurkert PieskeFrank EdelmannFlorian BlaschkeSandeep AppunniAnshul SaxenaMuni RubensEmir VeledarTobias Daniel TrippelPublished in: Metabolites (2021)
Lipids represent a valuable target for metabolomic studies since altered lipid metabolism is known to drive the pathological changes in cardiovascular disease (CVD). Metabolomic technologies give us the ability to measure thousands of metabolites providing us with a metabolic fingerprint of individual patients. Metabolomic studies in humans have supported previous findings into the pathomechanisms of CVD, namely atherosclerosis, apoptosis, inflammation, oxidative stress, and insulin resistance. The most widely studied classes of lipid metabolite biomarkers in CVD are phospholipids, sphingolipids/ceramides, glycolipids, cholesterol esters, fatty acids, and acylcarnitines. Technological advancements have enabled novel strategies to discover individual biomarkers or panels that may aid in the diagnosis and prognosis of CVD, with sphingolipids/ceramides as the most promising class of biomarkers thus far. In this review, application of metabolomic profiling for biomarker discovery to aid in the diagnosis and prognosis of CVD as well as metabolic abnormalities in CVD will be discussed with particular emphasis on lipid metabolites.
Keyphrases
- fatty acid
- cardiovascular disease
- oxidative stress
- insulin resistance
- small molecule
- end stage renal disease
- type diabetes
- case control
- ms ms
- endothelial cells
- newly diagnosed
- ejection fraction
- adipose tissue
- chronic kidney disease
- prognostic factors
- patient reported outcomes
- cell death
- diabetic rats
- high fat diet
- cardiovascular events
- cardiovascular risk factors
- induced pluripotent stem cells
- single cell
- heat shock