4.5 Article

DPP4-inhibitor improves neuronal insulin receptor function, brain mitochondrial function and cognitive function in rats with insulin resistance induced by high-fat diet consumption

期刊

EUROPEAN JOURNAL OF NEUROSCIENCE
卷 37, 期 5, 页码 839-849

出版社

WILEY
DOI: 10.1111/ejn.12088

关键词

brain mitochondria; cognition; fEPSP; high-fat diet; neuronal insulin resistance; vildagliptin

资金

  1. Thailand Research Fund BRG [5480003]
  2. Thailand Research Fund RTA [5580006]
  3. CHE-PhD-SW SUP Scholarship, Office of the Higher Education Commission, Ministry of Education, Thailand
  4. Faculty of Medicine Endowment Fund, Chiang Mai University

向作者/读者索取更多资源

High-fat diet (HFD) consumption has been demonstrated to cause peripheral and neuronal insulin resistance, and brain mitochondrial dysfunction in rats. Although the dipeptidyl peptidase-4 inhibitor, vildagliptin, is known to improve peripheral insulin sensitivity, its effects on neuronal insulin resistance and brain mitochondrial dysfunction caused by a HFD are unknown. We tested the hypothesis that vildagliptin prevents neuronal insulin resistance, brain mitochondrial dysfunction, learning and memory deficit caused by HFD. Male rats were divided into two groups to receive either a HFD or normal diet (ND) for 12weeks, after which rats in each group were fed with either vildagliptin (3mg/kg/day) or vehicle for 21days. The cognitive function was tested by the Morris Water Maze prior to brain removal for studying neuronal insulin receptor (IR) and brain mitochondrial function. In HFD rats, neuronal insulin resistance and brain mitochondrial dysfunction were demonstrated, with impaired learning and memory. Vildagliptin prevented neuronal insulin resistance by restoring insulin-induced long-term depression and neuronal IR phosphorylation, IRS-1 phosphorylation and Akt/PKB-ser phosphorylation. It also improved brain mitochondrial dysfunction and cognitive function. Vildagliptin effectively restored neuronal IR function, increased glucagon-like-peptide 1 levels and prevented brain mitochondrial dysfunction, thus attenuating the impaired cognitive function caused by HFD.

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