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Updated: Mar 25, 2026

Modeling and Evaluation of Murine Diabetic Cardiomyopathy Model
Published on: November 29, 2024
Cardiovascular manifestations of renovascular hypertension in diabetic mice
Sonu Kashyap1, Sean Engel2, Mazen Osman1
1Department of Laboratory Medicine and Pathology, Mayo Clinic , Rochester, MN , USA.
Abstract:
Purpose. Type 2 diabetes is the leading cause of end stage renal disease in the United States. Atherosclerotic renal artery stenosis is commonly observed in diabetic patients and impacts the rate of renal and cardiovascular disease progression. We sought to test the hypothesis that renovascular hypertension, induced by unilateral renal artery stenosis, exacerbates cardiac remodeling in leptin-deficient (db/db) mice, which serves as a model of human type II diabetes. Methods. We employed a murine model of renovascular hypertension through placement of a polytetrafluoroethylene cuff on the right renal artery in db/db mice. We studied 109 wild-type (non-diabetic, WT) and 95 db/db mice subjected to renal artery stenosis (RAS) or sham surgery studied at 1, 2, 4, and 6+ weeks following surgery. Cardiac remodeling was assessed by quantitative analysis of the percent of myocardial surface area occupied by interstitial fibrosis tissue, as delineated by trichrome stained slides. Aortic pathology was assessed by histologic sampling of grossly apparent structural abnormalities or by section of ascending aorta of vessels without apparent abnormalities. Results. We noted an increased mortality in db/db mice subjected to RAS. The mortality rate of db/db RAS mice was about 23.5%, whereas the mortality rate of WT RAS mice was only 1.5%. Over 60% of mortality in the db/db mice occurred in the first two weeks following RAS surgery. Necropsy showed massive intrathoracic hemorrhage associated with aortic dissection, predominantly in the ascending aorta and proximal descending aorta. Aortas from db/db RAS mice showed more smooth muscle dropout, loss of alpha smooth muscle actin expression, medial disruption, and hemorrhage than aortas from WT mice with RAS. Cardiac tissue from db/db RAS mice had more fibrosis than did cardiac tissue from WT RAS mice. Conclusions. db/db mice subjected to RAS are prone to develop fatal aortic dissection, which is not observed in WT mice with RAS. The db/db RAS model provides the basis for future studies directed towards defining basic mechanisms underlying the interaction of hypertension and diabetes on the development of aortic lesions.
Insights
Diabetic mice with renal artery stenosis experienced significantly higher mortality due to aortic dissection compared to non-diabetic mice. This highlights the dangerous interaction between diabetes and hypertension on aortic health.
Area of Science:
- Cardiovascular Research
- Nephrology
- Diabetology
Background:
- Type 2 diabetes is a primary cause of end-stage renal disease.
- Diabetic patients often have atherosclerotic renal artery stenosis, accelerating renal and cardiovascular disease.
- Leptin-deficient (db/db) mice model human type II diabetes.
Purpose of the Study:
- To test if renovascular hypertension worsens cardiac remodeling in db/db mice.
- To investigate the impact of unilateral renal artery stenosis on diabetic cardiovascular pathology.
Main Methods:
- Utilized a murine model of renovascular hypertension in db/db and wild-type (WT) mice.
- Applied renal artery stenosis (RAS) or sham surgery, studying outcomes at multiple time points.
- Assessed cardiac remodeling via interstitial fibrosis quantification and aortic pathology through histology.
Main Results:
- db/db mice with RAS showed a 23.5% mortality rate versus 1.5% in WT mice with RAS.
- Fatal aortic dissection with hemorrhage was prevalent in db/db RAS mice, not WT.
- db/db RAS aortas exhibited smooth muscle loss and medial disruption; cardiac tissue showed increased fibrosis.
Conclusions:
- db/db mice subjected to RAS are highly susceptible to fatal aortic dissection.
- This model is crucial for studying the combined effects of hypertension and diabetes on aortic disease development.

