Centaurium erythraea extract reduces redox imbalance and improves insulin expression and secretion in pancreatic β-cells exposed to oxidative and nitrosative stress

Author:

Djordjevic Milos1ORCID,Grdovic Nevena1ORCID,Mihailovic Mirjana1ORCID,Arambasic-Jovanovic Jelena1ORCID,Uskokovic Aleksandra1ORCID,Rajic Jovana1ORCID,Djordjevic Marija1,Tolic Anja1ORCID,Misic Danijela2ORCID,Siler Branislav2ORCID,Poznanovic Goran1ORCID,Vidakovic Melita1ORCID,Dinic Svetlana1ORCID

Affiliation:

1. Department of Molecular Biology, Institute for Biological Research “Siniša Stanković”, National Institute of Republic of Serbia, University of Belgrade, Belgrade, Serbia

2. Department of Plant Physiology, Institute for Biological Research “Siniša Stanković”, National Institute of Republic of Serbia, University of Belgrade, Belgrade, Serbia

Abstract

Oxidative stress is one of the major mechanisms that underlies the damage of pancreatic ?-cells and defects in insulin secretion in diabetes. As herbal preparations can alleviate oxidative stress through their redox-active secondary metabolites, in this study we investigated the cytoprotective effects of Centaurium erythraea extract (CEe) against H2O2- and SNP-induced oxidative/nitrosative stress in Rin-5F ?-cells. The antioxidant activity of CEe and its effect on cell survival and insulin expression/secretion were evaluated. The CEe increased cell viability and ameliorated the disturbance of redox homeostasis in H2O2- and SNP-treated cells by decreasing DNA damage, lipid peroxidation and protein S-glutathionylation. The CEe restored GSH homeostasis in H2O2-treated ?-cells and attenuated the SNP-induced disturbance of the GSH/ GSSG ratio. The H2O2- and SNP-induced disruption of CAT, GPx, GR, MnSOD and CuZnSOD activities was adjusted by the CEe towards control values, as well as mRNA and protein levels of GPx, MnSOD and CAT. The CEe increased insulin expression/secretion particularly in H2O2-treated ?-cells, which was in accordance with the more pronounced antioxidant effect of the CEe observed in H2O2-treated ?-cells as compared to SNP-treated cells. These findings support the beneficial effect of the CEe in preventing or slowing down ?-cell damage and dysfunction caused by oxidative/nitrosative stress during diabetes development.

Funder

Ministry of Education, Science and Technological Development of the Republic of Serbia

Publisher

National Library of Serbia

Subject

General Agricultural and Biological Sciences,General Biochemistry, Genetics and Molecular Biology

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