Inhibition of microRNA-128-3p attenuates hypercholesterolemia in mouse model

Life Sciences(2021)

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摘要
Aims Hypercholesterolemia remains a critical risk factor for cardiovascular diseases and there is an urgent need to develop effective alternative therapeutics. Herein, we investigated the effects of miR-128-3p inhibition on serum cholesterol levels using a hypercholesterolemic mouse model. Materials and methods Five injections of anti-miR-128-3p (AM-128) treatment were given, and the cholesterol profile in serum and liver was quantified. We validated the underlying gene network using qRT-PCR, western blotting, ELISA, and dual luciferase assays. Key findings AM-128 treatment inhibits cholesterol biosynthesis by upregulating INSIG1 and downregulating HMGCR (3-hydroxy-3-methylglutaryl-CoA reductase) expression. The serum cholesterol clearance by SR-B1 (scavenger receptor class B member 1) and LDLR (low density lipoprotein receptors) was also increased. Furthermore, the catabolism of cholesterol by CYP7A1 (cytochrome P450 family 7 subfamily A member 1) was increased. Significance Our results confirmed a critical role of miR-128-3p inhibition in lowering serum cholesterol and suggest its potential therapeutic implications in reversing hypercholesterolemia.
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3′UTR,ABCB11,ABCG5,ABCG8,AM-128,AMNC,BAs,CYP7A1,FXR,HDL-cholesterol,HFD,HMGCR,INSIG1,LDL/VLDL-cholesterol,LDLR,MiRs,miR-128-3p,ND,NF-kB,RIG-1,RXRA,SR-B1,SREBPs
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