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Liraglutide ameliorates palmitate-induced insulin resistance through inhibiting the IRS-1 serine phosphorylation in mouse skeletal muscle cells.

J Endocrinol Invest · 2018

Last updated 2026-05-28

In lab tests on mouse muscle cells, the GLP-1 drug liraglutide reversed insulin resistance caused by palmitic acid. It reduced inflammation markers like IL-6, TNFα, and IL-1β, and restored normal insulin signaling by blocking IRS1 serine phosphorylation and improving key protein activity (Akt, PI3K, AS160) involved in blood sugar control.

AI summary of the abstract below.

JournalJ Endocrinol Invest, 2018
Citations28
Relative citation ratio1.43
NIH percentile63
Molecules liraglutide
Conditions studied Type 2 Diabetes

Abstract

OBJECTIVE: A reduction in insulin-stimulated glucose uptake in skeletal muscles is a characteristic of insulin resistance and type 2 diabetes mellitus (T2DM). The glucagon-like peptide (GLP)-1 agonist liraglutide can reduce blood glucose levels in individuals with T2DM. However, its effect on insulin-induced glucose metabolism in the skeletal muscle of insulin resistance is unknown. We investigated the effects and action mechanisms of liraglutide on insulin resistance (IR) in the skeletal muscle cells treatment with palmitic acid (PA). METHODS: The cell-surface GLUT4myc levels were determined by an antibody-coupled colorimetric assay. The phosphorylation levels of Akt, PI3K(p85α), AS160, IRS1, IKK, and JNK were determined by western blotting. The quantifications of mRNA levels of TNFα, IL-1β, and IL-6 were determined by real-time PCR. Analysis of variance was used for data analysis. RESULTS: PA elevated not only phosphorylation of JNK, IRS1 serines, and IKKα/β, but also the expression of IL-6, TNFα and IL-1β in C2C12-GLUT4myc cells. PA can reduce phosphorylation of IRS1 tyrosine. These effects of PA were reversed by liraglutide. In addition, liraglutide can reverse PA-decreased insulin-stimulated cell-surface GLUT4 levels, Akt, PI3K(p85α), and AS160 phosphorylation. CONCLUSIONS: Liraglutide can enhance insulin-induced GLUT4 translocation by inhibiting IRS1 serine phosphorylation in PA-treated muscle cells.

Verbatim abstract via PubMed 29374854 ↗

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