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Graphene quantum dot antioxidant and proautophagic actions protect SH-SY5Y neuroblastoma cells from oxidative stress-mediated apoptotic death.
Krunic, Matija; Ristic, Biljana; Bosnjak, Mihajlo; Paunovic, Verica; Tovilovic-Kovacevic, Gordana; Zogovic, Nevena; Mircic, Aleksandar; Markovic, Zoran; Todorovic-Markovic, Biljana; Jovanovic, Svetlana; Kleut, Duska; Mojovic, Milos; Nakarada, Dura; Markovic, Olivera; Vukovic, Irena; Harhaji-Trajkovic, Ljubica; Trajkovic, Vladimir.
Afiliação
  • Krunic M; Institute of Microbiology and Immunology, Faculty of Medicine, University of Belgrade, Dr. Subotica 1, 11000, Belgrade, Serbia.
  • Ristic B; Institute of Microbiology and Immunology, Faculty of Medicine, University of Belgrade, Dr. Subotica 1, 11000, Belgrade, Serbia.
  • Bosnjak M; Institute of Microbiology and Immunology, Faculty of Medicine, University of Belgrade, Dr. Subotica 1, 11000, Belgrade, Serbia.
  • Paunovic V; Institute of Microbiology and Immunology, Faculty of Medicine, University of Belgrade, Dr. Subotica 1, 11000, Belgrade, Serbia.
  • Tovilovic-Kovacevic G; Department of Biochemistry, Institute for Biological Research, "Sinisa Stankovic"- National Institute of the Republic of Serbia, University of Belgrade, Bulevar Despota Stefana 142, 11000, Belgrade, Serbia.
  • Zogovic N; Department of Neurophysiology, Institute for Biological Research "Sinisa Stankovic" - National Institute of the Republic of Serbia, University of Belgrade, Bulevar Despota Stefana 142, 11000, Belgrade, Serbia.
  • Mircic A; Institute of Histology and Embryology, Faculty of Medicine, University of Belgrade, Visegradska 26, 11000, Belgrade, Serbia.
  • Markovic Z; Vinca Institute of Nuclear Sciences - National Institute of the Republic of Serbia, University of Belgrade P.O. Box 522, 11000, Belgrade, Serbia.
  • Todorovic-Markovic B; Vinca Institute of Nuclear Sciences - National Institute of the Republic of Serbia, University of Belgrade P.O. Box 522, 11000, Belgrade, Serbia.
  • Jovanovic S; Vinca Institute of Nuclear Sciences - National Institute of the Republic of Serbia, University of Belgrade P.O. Box 522, 11000, Belgrade, Serbia.
  • Kleut D; Vinca Institute of Nuclear Sciences - National Institute of the Republic of Serbia, University of Belgrade P.O. Box 522, 11000, Belgrade, Serbia.
  • Mojovic M; Faculty of Physical Chemistry, University of Belgrade, Studentski Trg 12-16, 11000, Belgrade, Serbia.
  • Nakarada D; Faculty of Physical Chemistry, University of Belgrade, Studentski Trg 12-16, 11000, Belgrade, Serbia.
  • Markovic O; Department of Chemistry, Institute of Chemistry, Technology and Metallurgy, University of Belgrade, Njegoseva 12, 11000, Belgrade, Serbia.
  • Vukovic I; Institute of Microbiology and Immunology, Faculty of Medicine, University of Belgrade, Dr. Subotica 1, 11000, Belgrade, Serbia.
  • Harhaji-Trajkovic L; Department of Neurophysiology, Institute for Biological Research "Sinisa Stankovic" - National Institute of the Republic of Serbia, University of Belgrade, Bulevar Despota Stefana 142, 11000, Belgrade, Serbia. Electronic address: ljubica.harhaji@ibiss.bg.ac.rs.
  • Trajkovic V; Institute of Microbiology and Immunology, Faculty of Medicine, University of Belgrade, Dr. Subotica 1, 11000, Belgrade, Serbia. Electronic address: vladimir.trajkovic@med.bg.ac.rs.
Free Radic Biol Med ; 177: 167-180, 2021 12.
Article em En | MEDLINE | ID: mdl-34678419
We investigated the ability of graphene quantum dot (GQD) nanoparticles to protect SH-SY5Y human neuroblastoma cells from oxidative/nitrosative stress induced by iron-nitrosyl complex sodium nitroprusside (SNP). GQD reduced SNP cytotoxicity by preventing mitochondrial depolarization, caspase-2 activation, and subsequent apoptotic death. Although GQD diminished the levels of nitric oxide (NO) in SNP-exposed cells, NO scavengers displayed only a slight protective effect, suggesting that NO quenching was not the main protective mechanism of GQD. GQD also reduced SNP-triggered increase in the intracellular levels of hydroxyl radical (•OH), superoxide anion (O2•-), and lipid peroxidation. Nonselective antioxidants, •OH scavenging, and iron chelators, but not superoxide dismutase, mimicked GQD cytoprotective activity, indicating that GQD protect cells by neutralizing •OH generated in the presence of SNP-released iron. Cellular internalization of GQD was required for optimal protection, since a removal of extracellular GQD by extensive washing only partly diminished their protective effect. Moreover, GQD cooperated with SNP to induce autophagy, as confirmed by the inhibition of autophagy-limiting Akt/PRAS40/mTOR signaling and increase in autophagy gene transcription, protein levels of proautophagic beclin-1 and LC3-II, formation of autophagic vesicles, and degradation of autophagic target p62. The antioxidant activity of GQD was not involved in autophagy induction, as antioxidants N-acetylcysteine and dimethyl sulfoxide failed to stimulate autophagy in SNP-exposed cells. Pharmacological inhibitors of early (wortmannin, 3-methyladenine) or late stages of autophagy (NH4Cl) efficiently reduced the protective effect of GQD. Therefore, the ability of GQD to prevent the in vitro neurotoxicity of SNP depends on both •OH/NO scavenging and induction of cytoprotective autophagy.
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Texto completo: 1 Base de dados: MEDLINE Assunto principal: Pontos Quânticos / Grafite / Neuroblastoma Limite: Humans Idioma: En Ano de publicação: 2021 Tipo de documento: Article

Texto completo: 1 Base de dados: MEDLINE Assunto principal: Pontos Quânticos / Grafite / Neuroblastoma Limite: Humans Idioma: En Ano de publicação: 2021 Tipo de documento: Article