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Elevated apolipoprotein C3 augments diabetic kidney disease and associated atherosclerosis in type 2 diabetes
Jocelyn Cervantes, Juraj Koska, Farah Kramer, Shreeram Akilesh, Charles E. Alpers, Adam E. Mullick, Peter Reaven, Jenny E. Kanter
Jocelyn Cervantes, Juraj Koska, Farah Kramer, Shreeram Akilesh, Charles E. Alpers, Adam E. Mullick, Peter Reaven, Jenny E. Kanter
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Research Article Metabolism Nephrology

Elevated apolipoprotein C3 augments diabetic kidney disease and associated atherosclerosis in type 2 diabetes

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Abstract

Diabetes increases the risk of both cardiovascular disease and kidney disease. Notably, most of the excess cardiovascular risk in people with diabetes is in those with kidney disease. Apolipoprotein C3 (APOC3) is a key regulator of plasma triglycerides, and it has recently been suggested to play a role in both type 1 diabetes–accelerated atherosclerosis and kidney disease progression. To investigate if APOC3 plays a role in kidney disease in people with type 2 diabetes, we analyzed plasma levels of APOC3 from the Veterans Affairs Diabetes Trial. Elevated baseline APOC3 levels predicted a greater loss of renal function. To mechanistically test if APOC3 plays a role in diabetic kidney disease and associated atherosclerosis, we treated black and tan, brachyury, WT and leptin-deficient (OB; diabetic) mice, a model of type 2 diabetes, with an antisense oligonucleotide (ASO) to APOC3 or a control ASO, all in the setting of human-like dyslipidemia. Silencing APOC3 prevented diabetes-augmented albuminuria, renal glomerular hypertrophy, monocyte recruitment, and macrophage accumulation, partly driven by reduced ICAM1 expression. Furthermore, reduced levels of APOC3 suppressed atherosclerosis associated with diabetes. This suggests that targeting APOC3 might benefit both diabetes-accelerated atherosclerosis and kidney disease.

Authors

Jocelyn Cervantes, Juraj Koska, Farah Kramer, Shreeram Akilesh, Charles E. Alpers, Adam E. Mullick, Peter Reaven, Jenny E. Kanter

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Figure 2

APOB-containing lipids accumulate in the glomerulus in the setting of diabetic nephropathy.

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APOB-containing lipids accumulate in the glomerulus in the setting of di...
(A) Representative image of APOB-stained kidney sections from histopathologically healthy controls (N = 11) and pathology-verified diabetic nephropathy (N = 19). (B) Quantification of glomerular APOB staining. (C) Quantification of glomerular perilipin 2 staining. (D) Schematic of the study plan (14-week study). Briefly, WT and leptin-deficient OB mice were treated with either a control antisense oligonucleotide (cASO) or LDLR ASO. Within each group, a subset was treated with either a cASO or an ASO to APOC3. Mice were then placed on a high-fat diet for 14 weeks. (E) Plasma APOC3 levels at 14 weeks (N = 5, 7, 8, 11, 8, 11, 11). (F) Plasma TG at 14 weeks. (G) Plasma cholesterol at 14 weeks. (H) Blood glucose at 14 weeks (ad lib–fed morning glucose). Data expressed as mean ± SEM. Data were analyzed by 2-way ANOVA followed by Tukey’s multiple comparisons test. The text under the graph indicates the overall significance between cASO and LDLR ASO groups. N as indicated in D, unless otherwise noted. For data on other time points, see Supplemental Table 3.

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