Literature DB >> 34038767

Genetic deficiency or pharmacological inhibition of soluble epoxide hydrolase ameliorates high fat diet-induced pancreatic β-cell dysfunction and loss.

Shinichiro Koike1, Ming-Fo Hsu1, Ahmed Bettaieb1, Bryan Chu1, Naoki Matsumoto2, Christophe Morisseau3, Peter J Havel4, Mark O Huising5, Bruce D Hammock3, Fawaz G Haj6.   

Abstract

Pancreatic β-cells are crucial regulators of systemic glucose homeostasis, and their dysfunction and loss are central features in type 2 diabetes. Interventions that rectify β-cell dysfunction and loss are essential to combat this deadly malady. In the current study, we sought to delineate the role of soluble epoxide hydrolase (sEH) in β-cells under diet-induced metabolic stress. The expression of sEH was upregulated in murine and macaque diabetes models and islets of diabetic human patients. We postulated that hyperglycemia-induced elevation in sEH leads to a reduction in its substrates, epoxyeicosatrienoic acids (EETs), and attenuates the function of β-cells. Genetic deficiency of sEH potentiated glucose-stimulated insulin secretion in mice, likely in a cell-autonomous manner, contributing to better systemic glucose control. Consistent with this observation, genetic and pharmacological inactivation of sEH and the treatment with EETs exhibited insulinotropic effects in isolated murine islets ex vivo. Additionally, sEH deficiency enhanced glucose sensing and metabolism with elevated ATP and cAMP concentrations. This phenotype was associated with attenuated oxidative stress and diminished β-cell death in sEH deficient islets. Moreover, pharmacological inhibition of sEH in vivo mitigated, albeit partly, high fat diet-induced β-cell loss and dedifferentiation. The current observations provide new insights into the role of sEH in β-cells and information that may be leveraged for the development of a mechanism-based intervention to rectify β-cell dysfunction and loss.
Copyright © 2021 Elsevier Inc. All rights reserved.

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Keywords:  Dedifferentiation; Epoxyeicosatrienoic acids; Oxidative stress; Pharmacological inhibition; Soluble epoxide hydrolase; Type 2 diabetes; β-Cell dysfunction

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Year:  2021        PMID: 34038767     DOI: 10.1016/j.freeradbiomed.2021.05.029

Source DB:  PubMed          Journal:  Free Radic Biol Med        ISSN: 0891-5849            Impact factor:   7.376


  2 in total

1.  The epoxy fatty acid pathway enhances cAMP in mammalian cells through multiple mechanisms.

Authors:  Naoki Matsumoto; Nalin Singh; Kin Sing Lee; Bogdan Barnych; Christophe Morisseau; Bruce D Hammock
Journal:  Prostaglandins Other Lipid Mediat       Date:  2022-06-30       Impact factor: 3.813

2.  Soluble Epoxide Hydrolase Is Associated with Postprandial Anxiety Decrease in Healthy Adult Women.

Authors:  Nhien Nguyen; Christophe Morisseau; Dongyang Li; Jun Yang; Eileen Lam; D Blake Woodside; Bruce D Hammock; Pei-An Betty Shih
Journal:  Int J Mol Sci       Date:  2022-10-05       Impact factor: 6.208

  2 in total

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