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Updated: Aug 8, 2026

Quantification of Atherosclerosis in Mice
Published on: June 12, 2019
Atheroma development in apolipoprotein E-null mice is not affected by partial inactivation of PTEN
Vicente Andrés1, Marisol Gascón-Irún, Pier Paolo Pandolfi
1Department of Molecular and Cellular Pathology and Therapy, Instituto de Biomedicina de Valencia (IBV-CSIC), 46010 Valencia, Spain. vandres@ibv.csic.es
Abstract:
PTEN is a dual-specificity phosphatase that has been shown to inhibit vascular smooth muscle cell (VSMC) proliferation and migration, two key events in the ethiopathogenesis of atherosclerosis. Adenovirus-mediated PTEN overexpression inhibited the formation of vascular obstructive lesions induced by mechanical injury of the vessel wall. In this study, we investigated whether PTEN protects against atheroma formation in apolipoprotein E-null mice (apoE-/-), a widely used animal model characterized by the development of hypercholesterolemia and atherosclerosis. We examined atheroma development in the aorta of apoE-/- mice with an intact Pten gene and apoE-/- mice lacking one allele of Pten (Pten(+/-)apoE-/-) that were challenged for six weeks with an atherogenic diet. Compared with apoE-/- controls, Western blot analysis of arterial cell lysates from Pten(+/-)apoE-/- mice revealed a decrease in PTEN expression. This correlated with increased phosphorylation of AKT, thus demonstrating that Pten inactivation in Pten(+/-)apoE-/- mice has functional consequences. However, the extent of atherosclerosis was undistinguishable in both groups of fat-fed mice. Likewise, the atheroma of Pten(+/-)apoE-/- and apoE-/- mice displayed similar VSMC content, cellularity and rates of proliferation and apoptosis. Thus, in spite of the cytostatic and antimigratory activities of PTEN, and in contrast to previous studies demonstrating that Pten is haplo-insufficient for tumor suppression, our results demonstrate that atherosclerosis in hypercholesterolemic mice is not aggravated by partial inactivation of Pten.
Insights
Partial inactivation of the PTEN gene did not worsen atherosclerosis in hypercholesterolemic mice. This suggests PTEN
Area of Science:
- Cardiovascular Biology
- Molecular Biology
- Genetics
Background:
- PTEN (Phosphatase and tensin homolog) inhibits vascular smooth muscle cell (VSMC) proliferation and migration.
- These processes are critical in the development of atherosclerosis.
- Previous studies showed PTEN influences tumor suppression.
Purpose of the Study:
- To investigate the role of PTEN in atheroma formation in apolipoprotein E-null (apoE-/-) mice.
- To determine if partial PTEN deficiency exacerbates atherosclerosis in a hypercholesterolemic model.
Main Methods:
- Atherosclerosis development was studied in apoE-/- mice and Pten(+/-)apoE-/- mice on an atherogenic diet for six weeks.
- PTEN expression and AKT phosphorylation were analyzed using Western blot.
- Atheroma extent, VSMC content, cellularity, proliferation, and apoptosis were assessed.
Main Results:
- Pten haplo-insufficiency in Pten(+/-)apoE-/- mice led to decreased PTEN expression and increased AKT phosphorylation.
- Despite functional PTEN inactivation, the extent of atherosclerosis was similar in both apoE-/- and Pten(+/-)apoE-/- mice.
- VSMC content, cellularity, proliferation, and apoptosis rates in atheromas were comparable between the groups.
Conclusions:
- Partial PTEN inactivation does not aggravate atherosclerosis in hypercholesterolemic mice.
- This contrasts with PTEN's known cytostatic and antimigratory functions and its role in tumor suppression.
- The findings indicate PTEN haplo-insufficiency does not impact diet-induced atherosclerosis progression.
