Related Experiment Video
Updated: Feb 15, 2026

Inducing Myointimal Hyperplasia Versus Atherosclerosis in Mice: An Introduction of Two Valid Models
Published on: May 14, 2014
Novel Reversible Model of Atherosclerosis and Regression Using Oligonucleotide Regulation of the LDL Receptor
Debapriya Basu1, Yunying Hu1, Lesley-Ann Huggins1
1From the Department of Medicine, New York University Langone Health, New York (D.B., Y.H., L.-A.H., A.M., E.A.F., I.J.G.); Ionis Pharmaceuticals, Carlsbad, CA (A.E.M., M.J.G.); Division of Cardiology, Department of Medicine (T.W.), Division of Metabolism, Endocrinology and Nutrition, Department of Medicine, UW Diabetes Institute (S.B., K.E.B.), and Department of Pathology (K.E.B.), University of Washington, Seattle; and Department of Cardiology and Angiology I, Heart Center, Freiburg University, Germany (K.P., A.Z., F.W.).
Rationale:
Animal models have been used to explore factors that regulate atherosclerosis. More recently, they have been used to study the factors that promote loss of macrophages and reduction in lesion size after lowering of plasma cholesterol levels. However, current animal models of atherosclerosis regression require challenging surgeries, time-consuming breeding strategies, and methods that block liver lipoprotein secretion.
Objective:
We sought to develop a more direct or time-effective method to create and then reverse hypercholesterolemia and atherosclerosis via transient knockdown of the hepatic LDLR (low-density lipoprotein receptor) followed by its rapid restoration.
Methods And Results:
We used antisense oligonucleotides directed to LDLR mRNA to create hypercholesterolemia in wild-type C57BL/6 mice fed an atherogenic diet. This led to the development of lesions in the aortic root, aortic arch, and brachiocephalic artery. Use of a sense oligonucleotide replicating the targeted sequence region of the LDLR mRNA rapidly reduced circulating cholesterol levels because of recovery of hepatic LDLR expression. This led to a decrease in macrophages within the aortic root plaques and brachiocephalic artery, that is, regression of inflammatory cell content, after a period of 2 to 3 weeks.
Conclusions:
We have developed an inducible and reversible hepatic LDLR knockdown mouse model of atherosclerosis regression. Although cholesterol reduction decreased early en face lesions in the aortic arches, macrophage area was reduced in both early and late lesions within the aortic sinus after reversal of hypercholesterolemia. Our model circumvents many of the challenges associated with current mouse models of regression. The use of this technology will potentially expedite studies of atherosclerosis and regression without use of mice with genetic defects in lipid metabolism.
Insights
Researchers developed a new mouse model to study atherosclerosis regression. This model uses transient knockdown of the hepatic low-density lipoprotein receptor (LDLR) to reverse hypercholesterolemia and reduce lesion size, offering a faster approach.
Area of Science:
- Cardiovascular Research
- Animal Models
- Atherosclerosis Pathogenesis
Background:
- Current animal models for atherosclerosis regression are complex, requiring surgery, extensive breeding, or methods to block lipoprotein secretion.
- Investigating factors that promote macrophage loss and reduce lesion size in atherosclerosis regression is crucial.
Purpose of the Study:
- To develop a more direct and time-effective method for inducing and reversing hypercholesterolemia and atherosclerosis.
- To achieve this via transient knockdown and rapid restoration of hepatic low-density lipoprotein receptor (LDLR) expression.
Main Methods:
- Utilized antisense oligonucleotides to transiently knock down hepatic LDLR mRNA in wild-type mice on an atherogenic diet, inducing hypercholesterolemia and lesion development.
- Administered a sense oligonucleotide to restore LDLR expression, rapidly lowering cholesterol and promoting regression.
Main Results:
- Induced hypercholesterolemia and atherosclerotic lesions in the aortic root, arch, and brachiocephalic artery.
- Cholesterol reduction led to decreased macrophage content in aortic root plaques and brachiocephalic artery lesions within 2-3 weeks.
- Observed reduction in early en face lesions in aortic arches and macrophage area in both early and late lesions in the aortic sinus.
Conclusions:
- Developed an inducible and reversible hepatic LDLR knockdown mouse model for studying atherosclerosis regression.
- This model bypasses limitations of existing methods, potentially accelerating research into atherosclerosis and regression mechanisms.
- The model facilitates studies without relying on genetically modified mice with lipid metabolism defects.
Related Concept Videos
Regression Toward the Mean
Receptor-mediated Endocytosis
Multiple Regression
Farmers can use multiple regression to determine the crop yield based on more than one factor, such as water availability, fertilizer, soil properties, etc. Here, the crop yield is the response or dependent variable as it depends on the other independent variables. The analysis requires the construction of a scatter plot...
Correlation and Regression
Regression Analysis
In regression analysis, a regression equation is determined based on the line of best fit– a line that best fits the data points plotted in a graph. This line is also called the regression line. The algebraic equation for the regression line is called the regression equation. It is represented as:
The Two-State Receptor Model
The binding affinity of a drug determines its interaction with...

