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Updated: Nov 11, 2025

Quantitative Analysis of Cellular Composition in Advanced Atherosclerotic Lesions of Smooth Muscle Cell Lineage-Tracing Mice
Published on: February 20, 2019
c-Kit expression in smooth muscle cells reduces atherosclerosis burden in hyperlipidemic mice
Zachary M Zigmond1, Lei Song1, Laisel Martinez2
1Department of Molecular and Cellular Pharmacology, University of Miami, Miller School of Medicine, Miami, FL, 33136, USA.
Background And Aims:
Increased receptor tyrosine kinase (RTK) activity has been historically linked to atherosclerosis. Paradoxically, we recently found that global deficiency in c-Kit function increased atherosclerosis in hyperlipidemic mice. This study aimed to investigate if such unusual atheroprotective phenotype depends upon c-Kit's function in smooth muscle cells (SMC).
Methods:
We studied atherosclerosis in a SMC-specific conditional knockout mice (KitSMC) and control littermate. Tamoxifen (TAM) and vehicle treated mice were fed high fat diet for 16 weeks before atherosclerosis assessment in the whole aorta using oil red staining. Smooth muscle cells were traced within the aortic sinus of conditional c-Kit tracing mice (KitSMC eYFP) and their control littermates (KitWT eYFP) by immunofluorescent confocal microscopy. We then performed RNA sequencing on primary SMC from c-Kit deficient and control mice, and identified significantly altered genes and pathways as a result of c-Kit deficiency in SMC.
Results:
Atherosclerosis significantly increased in KitSMC mice with respect to control groups. In addition, the loss of c-Kit in SMC increased plaque size and necrotic core area in the aortic sinus of hyperlipidemic mice. Smooth muscle cells from KitSMC eYFP mice were more prone to migrate and express foam cell markers (e.g., Mac2 and MCAM) than those from control littermate animals. RNAseq analysis showed a significant upregulation in genes associated with cell proliferation, migration, lipid metabolism, and inflammation secondary to the loss of Kit function in primary SMCs.
Conclusions:
Loss of c-Kit increases SMC migration, proliferation, and expression of foam cell markers in atherosclerotic plaques from hyperlipidemic mice.
Insights
Loss of c-Kit in smooth muscle cells (SMC) surprisingly accelerates atherosclerosis development in mice. This suggests c-Kit normally protects against this cardiovascular disease by regulating SMC behavior.
Area of Science:
- Cardiovascular Biology
- Molecular Medicine
- Atherosclerosis Research
Background:
- Receptor tyrosine kinase (RTK) activity is typically linked to atherosclerosis.
- Previous studies showed global c-Kit deficiency unexpectedly worsened atherosclerosis in mice.
- The specific role of c-Kit in smooth muscle cells (SMC) regarding atherosclerosis remained unclear.
Purpose of the Study:
- To investigate the role of c-Kit specifically within SMC in the development of atherosclerosis.
- To determine if the atheroprotective effect of c-Kit deficiency observed previously was dependent on SMC function.
Main Methods:
- Generated SMC-specific conditional knockout mice (KitSMC) and controls.
- Administered high-fat diet for 16 weeks to induce hyperlipidemia and atherosclerosis.
- Assessed atherosclerosis via oil red staining and quantified plaque characteristics.
- Utilized lineage tracing (KitSMC eYFP) and immunofluorescence to track SMC.
- Performed RNA sequencing on primary SMC to identify gene expression changes.
Main Results:
- SMC-specific c-Kit deficiency significantly increased atherosclerosis in hyperlipidemic mice.
- Loss of c-Kit in SMC led to larger plaque size and increased necrotic core area.
- SMC lacking c-Kit exhibited enhanced migration and increased expression of foam cell markers (Mac2, MCAM).
- RNA sequencing revealed upregulation of genes involved in proliferation, migration, lipid metabolism, and inflammation in c-Kit deficient SMC.
Conclusions:
- Loss of c-Kit in smooth muscle cells promotes atherosclerosis.
- c-Kit deficiency in SMC enhances cell migration, proliferation, and foam cell marker expression.
- These findings highlight a novel atheroprotective role for c-Kit in SMC.
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