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Oxidative stress and impaired insulin secretion in cystic fibrosis pig pancreas.

Authors :
O'Malley Y
Coleman MC
Sun X
Lei J
Yao J
Pulliam CF
Kluz P
McCormick ML
Yi Y
Imai Y
Engelhardt JF
Norris AW
Spitz DR
Uc A
Source :
Advances in redox research [Adv Redox Res] 2022 Jul; Vol. 5. Date of Electronic Publication: 2022 Jun 09.
Publication Year :
2022

Abstract

Cystic fibrosis-related diabetes (CFRD) is one the most common comorbidities in cystic fibrosis (CF). Pancreatic oxidative stress has been postulated in the pathogenesis of CFRD, but no studies have been done to show an association. The main obstacle is the lack of suitable animal models and no immediate availability of pancreas tissue in humans. In the CF porcine model, we found increased pancreatic total glutathione (GSH), glutathione disulfide (GSSG), 3-nitrotyrosine- and 4-hydroxynonenal-modified proteins, and decreased copper zinc superoxide dismutase (CuZnSOD) activity, all indicative of oxidative stress. CF pig pancreas demonstrated increased DHE oxidation (as a surrogate marker of superoxide) in situ compared to non-CF and this was inhibited by a SOD-mimetic (GC4401). Catalase and glutathione peroxidase activities were not different between CF and non-CF pancreas. Isolated CF pig islets had significantly increased DHE oxidation, peroxide production, reduced insulin secretion in response to high glucose and diminished secretory index compared to non-CF islets. Acute treatment with apocynin or an SOD mimetic failed to restore insulin secretion. These results are consistent with the hypothesis that CF pig pancreas is under significant oxidative stress as a result of increased O <subscript>2</subscript> <superscript>●-</superscript> and peroxides combined with reduced antioxidant defenses against reactive oxygen species (ROS). We speculate that insulin secretory defects in CF may be due to oxidative stress.<br />Competing Interests: Declaration of Competing Interest None.

Details

Language :
English
ISSN :
2667-1379
Volume :
5
Database :
MEDLINE
Journal :
Advances in redox research
Publication Type :
Academic Journal
Accession number :
35903252
Full Text :
https://doi.org/10.1016/j.arres.2022.100040