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Updated: Jul 6, 2025

Author Spotlight: Assessing the Cardiovascular Profile of Patients with Metabolic Syndrome
Published on: September 27, 2024
Burden of cardiometabolic risk factors and vascular health
Carine E Hamo1, Florencia Schlamp2, Kamelia Drenkova2
1Department of Medicine, Center for the Prevention of Cardiovascular Disease, New York University School of Medicine, New York City, NY; Leon H. Charney Division of Cardiology, Department of Medicine, Cardiovascular Research Center, New York University School of Medicine, New York City, NY.
Insights
Cardiometabolic risk factors like diabetes and hypertension alter endothelial cell gene expression, promoting inflammation and adhesion. This suggests a mechanism linking these risks to cardiovascular disease development.
Area of Science:
- Cardiovascular Research
- Molecular Biology
- Genomics
Background:
- Cardiometabolic risk factors (diabetes, obesity, hypertension) are prevalent and increase cardiovascular disease (CVD) risk.
- Endothelial dysfunction is an early event preceding CVD development.
- Understanding endothelial cell (EC) changes is crucial for elucidating CVD pathogenesis.
Purpose of the Study:
- To investigate the endothelial cell (EC) transcriptome in individuals with varying cardiometabolic risk.
- To identify specific gene expression patterns associated with cardiometabolic risk factors.
Main Methods:
- Adult participants without CVD but with varying cardiometabolic risk factors were enrolled.
- Endothelial cells were harvested from brachial veins for RNA sequencing.
- Linear regression models adjusted for age, sex, and race/ethnicity were used to analyze transcriptomic data.
Main Results:
- RNA sequencing of 18 participants revealed 588 differentially expressed transcripts (p-adj <0.05).
- Upregulated pathways included T-cell activation, leukocyte differentiation/migration, and cell-cell adhesion.
- Downregulated pathways involved EC proliferation and response to interleukin-1.
- Key upregulated genes (VCAM1, CEACAM1, ADAM17, CD99L2) showed a graded increase with higher cardiometabolic risk.
Conclusions:
- The study identified a proinflammatory and pro-adhesive EC transcriptome associated with increased cardiometabolic risk.
- These findings offer insights into potential mechanisms linking cardiometabolic risk factors to CVD development.
- Targeting EC dysfunction may represent a therapeutic strategy for CVD prevention.
Background:
Cardiometabolic risk factors diabetes, obesity, and hypertension are highly prevalent and contribute to increased cardiovascular disease (CVD). Endothelial dysfunction precedes CVD development. The current study aimed to investigate the EC transcriptome among individuals with varying degree of cardiometabolic risk.
Methods:
Adult participants without CVD and various degrees of cardiometabolic risk factor burden (hypertension, diabetes, obesity) were included. Participants underwent brachial vein EC harvesting followed by RNA sequencing. To evaluate the association between cardiometabolic comorbidity burden and outcome transcripts we performed linear regression with multivariable models, adjusting for age, sex, and race/ethnicity.
Results:
A total of 18 individuals were included in the present analysis (mean age 47 ± 14, 44% female, and 61% White adults). Endothelial cell RNA sequencing revealed 588 differentially expressed transcripts (p-adj <0.05) with excellent discrimination in unsupervised hierarchical clustering analysis. Gene ontology enrichment analysis revealed upregulated pathways associated with T-cell activation (NES = 2.22, p<0.001), leukocyte differentiation (NES= 2.16, p<0.001), leukocyte migration (NES= 2.12, p<0.001), regulation of cell-cell adhesion (NES= 1.91, p=0.006). Downregulated pathways of interest included endothelial cell proliferation (NES= -1.68, p=0.03) and response to interleukin-1 (NES= -1.61, p=0.04). Upregulated genes included VCAM1, CEACAM1, ADAM 17, and CD99L2, all with a log-2-fold change >3 and p-adj <0.05. These genes demonstrated a graded increase in mean normalized counts with increasing number of risk factors.
Conclusions:
We demonstrate a proinflammatory and pro-adhesive EC transcriptome associated with increased cardiometabolic risk factor burden offering insight into a potential mechanism linking these risk factors with the development of CVD.
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