Ferroptosis as a Novel Determinant of β-Cell Death in Diabetic Conditions

Author:

Stancic Ana1ORCID,Saksida Tamara2ORCID,Markelic Milica3ORCID,Vucetic Milica4ORCID,Grigorov Ilijana1ORCID,Martinovic Vesna1ORCID,Gajic Dragica2ORCID,Ivanovic Andjelija1ORCID,Velickovic Ksenija3ORCID,Savic Nevena1ORCID,Otasevic Vesna1ORCID

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 Immunology, Institute for Biological Research “Siniša Stanković”, National Institute of Republic of Serbia, University of Belgrade, Belgrade, Belgrade, Serbia

3. Department of Cell and Tissue Biology, Faculty of Biology, University of Belgrade, Belgrade, Serbia

4. Medical Biology Department, Centre Scientifique de Monaco (CSM), Monaco

Abstract

The main pathological hallmark of diabetes is the loss of functional β-cells. Among several types of β-cell death in diabetes, the involvement of ferroptosis remains elusive. Therefore, we investigated the potential of diabetes-mimicking factors: high glucose (HG), proinflammatory cytokines, hydrogen peroxide (H2O2), or diabetogenic agent streptozotocin (STZ) to induce ferroptosis of β-cells in vitro. Furthermore, we tested the contribution of ferroptosis to injury of pancreatic islets in an STZ-induced in vivo diabetic model. All in vitro treatments increased loss of Rin-5F cells along with the accumulation of reactive oxygen species, lipid peroxides and iron, inactivation of NF-E2-related factor 2 (Nrf2), and decrease in glutathione peroxidase 4 expression and mitochondrial membrane potential (MMP). Ferrostatin 1 (Fer-1), ferroptosis inhibitor, diminished the above-stated effects and rescued cells from death in case of HG, STZ, and H2O2 treatments, while failed to increase MMP and to attenuate cell death after the cytokines’ treatment. Moreover, Fer-1 protected pancreatic islets from STZ-induced injury in diabetic in vivo model, since it decreased infiltration of macrophages and accumulation of lipid peroxides and increased the population of insulin-positive cells. Such results revealed differences between diabetogenic stimuli in determining the destiny of β-cells, emerging HG, H2O2, and STZ, but not cytokines, as contributing factors to ferroptosis and shed new light on an antidiabetic strategy based on Nrf2 activation. Thus, targeting ferroptosis in diabetes might be a promising new approach for preservation of the β-cell population. Our results obtained from in vivo study strongly justify this approach.

Funder

Science Fund of the Republic of Serbia

Publisher

Hindawi Limited

Subject

Cell Biology,Aging,General Medicine,Biochemistry

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