Key result
Plasma lipidomic profiling identified 135 lipid species, notably deoxyceramides and triacylglycerols, that were significantly associated with increased epicardial fat volume in Mexican Americans.
Why the study?
Epicardial adipose tissue volume is linked to coronary artery disease, but knowledge regarding the influence of plasma lipids on epicardial fat volume remains scarce.
Are specific plasma lipidomic species associated with CMRI-derived epicardial fat volume in Mexican American individuals?
Cross-Sectional (n=200)
No
Are specific plasma lipidomic species associated with CMRI-derived epicardial fat volume in Mexican American individuals?
Effect estimate: Beta 0.40
p-value: p=1.84E-07
Elevated levels of specific circulating lipids, particularly triacylglycerols and deoxyceramides, are associated with increased epicardial fat volume, suggesting a potential lipidomic precursor to cardiovascular disease.
Should not yet change practice; hypothesis-generating for lipidomic links to epicardial fat in this population.
Introduction: Cardiovascular disease (CVD) is the leading cause of mortality worldwide and is the leading cause of death in the US. Lipid dysregulation is a well-known precursor to metabolic diseases, including CVD. There is a growing body of literature that suggests MRI-derived epicardial fat volume, or epicardial adipose tissue (EAT) volume, is linked to the development of coronary artery disease. Interestingly, epicardial fat is also actively involved in lipid and energy homeostasis, with epicardial adipose tissue having a greater capacity for release and uptake of free fatty acids. However, there is a scarcity of knowledge on the influence of plasma lipids on EAT volume. Aim: The focus of this study is on the identification of novel lipidomic species associated with CMRI-derived measures of epicardial fat in Mexican American individuals. Methods: We performed lipidomic profiling on 200 Mexican American individuals. High-throughput mass spectrometry enabled rapid capture of precise lipidomic profiles, providing measures of 799 unique species from circulating plasma samples. Because of our extended pedigree design, we utilized a standard quantitative genetic linear mixed model analysis to determine whether lipids were correlated with EAT by formally testing for association between each lipid species and the CMRI epicardial fat phenotype. Results: After correction for multiple testing using the FDR approach, we identified 135 lipid species showing significant association with epicardial fat. Of those, 131 lipid species were positively correlated with EAT, where increased circulating lipid levels were correlated with increased epicardial fat. Interestingly, the top 10 lipid species associated with an increased epicardial fat volume were from the deoxyceramide (Cer(m)) and triacylglycerol (TG) families. Deoxyceramides are atypical and neurotoxic sphingolipids. Triacylglycerols are an abundant lipid class and comprise the bulk of storage fat in tissues. Pathologically elevated TG and Cer(m) levels are related to CVD risk and, in our study, to EAT volume. Conclusion: Our results indicate that specific lipid abnormalities such as enriched saturated triacylglycerols and the presence of toxic ceramides Cer(m) in plasma of our individuals could precede CVD with increased EAT volume.
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Leandro et al. (2022) conducted a cross-sectional in Epicardial fat volume (n=200). Plasma lipidomic species was evaluated on Association of lipid species with epicardial fat volume (Beta 0.40, p=1.84E-07). Plasma lipidomic profiling identified 135 lipid species, notably deoxyceramides and triacylglycerols, that were significantly associated with increased epicardial fat volume in Mexican Americans.
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