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.).

Circulation Research
|January 12, 2018
PubMed
Abstract

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.

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