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Updated: Mar 30, 2026

On-Chip Endothelial Inflammatory Phenotyping
Published on: July 21, 2012
Endothelial NOTCH1 is suppressed by circulating lipids and antagonizes inflammation during atherosclerosis
Anaïs Briot1, Mete Civelek2, Atsuko Seki3
1Department of Molecular, Cell, and Developmental Biology, University of California, Los Angeles, Los Angeles, CA 90095.
Insights
Reduced NOTCH1 in endothelial cells promotes atherosclerosis by increasing vascular inflammation. This study identifies NOTCH1 as a key protective factor against diet-induced atherosclerosis.
Area of Science:
- Cardiovascular Biology
- Molecular Medicine
- Endothelial Cell Biology
Background:
- Atherosclerosis involves endothelial activation and inflammatory cell recruitment.
- Intrinsic pathways counteracting these events in endothelial cells are less understood.
Purpose of the Study:
- To identify intrinsic pathways that antagonize endothelial cell activation.
- To investigate the role of NOTCH1 in endothelial cell activation and atherosclerosis.
Main Methods:
- NOTCH1 expression and signaling in human aortic endothelial cells (HAECs) were analyzed under inflammatory conditions (oxidized lipids, cytokines).
- NOTCH1 function was assessed using siRNA knockdown and genetic manipulation in mice.
- Association with genetic variants and high-density lipoprotein was explored.
Main Results:
- NOTCH1 acts as an antagonist of endothelial cell activation.
- High-fat diet and inflammatory stimuli (Ox-PAPC, TNF, IL1β) reduced NOTCH1 levels in HAECs via STAT3.
- Reduced NOTCH1 increased inflammatory molecules and monocyte binding; increased NOTCH1 reversed some inflammatory effects.
- Endothelial NOTCH1 heterozygous mice exhibited increased diet-induced atherosclerosis.
Conclusions:
- Endothelial NOTCH1 reduction is a predisposing factor for vascular inflammation and atherosclerosis initiation.
- NOTCH1 signaling is a potential therapeutic target for preventing atherosclerosis.
Abstract:
Although much progress has been made in identifying the mechanisms that trigger endothelial activation and inflammatory cell recruitment during atherosclerosis, less is known about the intrinsic pathways that counteract these events. Here we identified NOTCH1 as an antagonist of endothelial cell (EC) activation. NOTCH1 was constitutively expressed by adult arterial endothelium, but levels were significantly reduced by high-fat diet. Furthermore, treatment of human aortic ECs (HAECs) with inflammatory lipids (oxidized 1-palmitoyl-2-arachidonoyl-sn-glycero-3-phosphocholine [Ox-PAPC]) and proinflammatory cytokines (TNF and IL1β) decreased Notch1 expression and signaling in vitro through a mechanism that requires STAT3 activation. Reduction of NOTCH1 in HAECs by siRNA, in the absence of inflammatory lipids or cytokines, increased inflammatory molecules and binding of monocytes. Conversely, some of the effects mediated by Ox-PAPC were reversed by increased NOTCH1 signaling, suggesting a link between lipid-mediated inflammation and Notch1. Interestingly, reduction of NOTCH1 by Ox-PAPC in HAECs was associated with a genetic variant previously correlated to high-density lipoprotein in a human genome-wide association study. Finally, endothelial Notch1 heterozygous mice showed higher diet-induced atherosclerosis. Based on these findings, we propose that reduction of endothelial NOTCH1 is a predisposing factor in the onset of vascular inflammation and initiation of atherosclerosis.
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