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A Novel Type 2 Diabetes Mouse Model of Combined Diabetic Kidney Disease and Atherosclerosis.

Citation
Bornfeldt, K. E., et al. “A Novel Type 2 Diabetes Mouse Model Of Combined Diabetic Kidney Disease And Atherosclerosis.”. The American Journal Of Pathology, pp. 343-352.
Center University of Washington
Author Karin E Bornfeldt, Farah Kramer, Anna Batorsky, Jinkuk Choi, Kelly L Hudkins, Peter Tontonoz, Charles E Alpers, Jenny E Kanter
Abstract

Diabetic kidney disease and atherosclerotic disease are major causes of morbidity and mortality associated with type 2 diabetes (T2D), and diabetic kidney disease is a major cardiovascular risk factor. The black and tan, brachyury (BTBR) mouse strain with leptin deficiency (Lep) has emerged as one of the best models of human diabetic kidney disease. However, no T2D mouse model of combined diabetic kidney disease and atherosclerosis exists. Our goal was to generate such a model. To this end, the low-density lipoprotein (LDL) receptor was targeted for degradation via inducible degrader of the LDL receptor (IDOL) overexpression, using liver-targeted adenoassociated virus serotype DJ/8 (AAV-DJ/8) in BTBR wild-type and BTBR Lep mice. Liver-targeted IDOL-AAV-DJ/8 increased plasma LDL cholesterol compared with the control enhanced green fluorescent protein AAV-DJ/8. IDOL-induced dyslipidemia caused formation of atherosclerotic lesions of an intermediate stage, which contained both macrophages and smooth muscle cells. BTBR Lep mice exhibited diabetic kidney disease. IDOL-induced dyslipidemia worsened albuminuria and glomerular macrophage accumulation but had no effect on mesangial expansion or podocyte numbers. Thus, by inducing hepatic degradation of the LDL receptor, we generated a T2D model of combined kidney disease and atherosclerosis. This model provides a new tool to study mechanisms, interactions, and treatment strategies of kidney disease and atherosclerosis in T2D.

Year of Publication
2018
Journal
The American journal of pathology
Volume
188
Issue
2
Number of Pages
343-352
Date Published
12/2018
ISSN Number
1525-2191
DOI
10.1016/j.ajpath.2017.10.012
Alternate Journal
Am. J. Pathol.
PMID
29154962
PMCID
PMC5785558
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