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  •   Ιδρυματικό Αποθετήριο Πανεπιστημίου Θεσσαλίας
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  •   Ιδρυματικό Αποθετήριο Πανεπιστημίου Θεσσαλίας
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Ιδρυματικό Αποθετήριο Πανεπιστημίου Θεσσαλίας
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Mistimed h2s upregulation, nrf2 activation and antioxidant proteins levels in renal tubular epithelial cells subjected to anoxia and reoxygenation

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Συγγραφέας
Eleftheriadis T., Pissas G., Nikolaou E., Filippidis G., Liakopoulos V., Stefanidis I.
Ημερομηνία
2020
Γλώσσα
en
DOI
10.3892/br.2020.1309
Λέξη-κλειδί
alpha tocopherol
antioxidant
caspase 3
extracellular superoxide dismutase
ferritin
glutathione reductase
hydrogen sulfide
lactate dehydrogenase
protein Bax
protein p53
reactive oxygen metabolite
transcription factor Nrf2
animal cell
anoxia
apoptosis
Article
cell death
cell viability
cytotoxicity
ferroptosis
kidney tubule cell
lipid peroxidation
mouse
necrosis assay
nonhuman
protein blood level
protein expression
reoxygenation
reperfusion injury
survival analysis
upregulation
Western blotting
Spandidos Publications
Εμφάνιση Μεταδεδομένων
Επιτομή
Ischemia-reperfusion (I-R) injury is involved in the pathogenesis of several human diseases. In the present study, the kinetics of the H2S producing enzymes-nuclear factor eryt hroid 2-like 2 (Nrf2)-antioxidant proteins axis under anoxia or reoxygenation was evaluated, as well as its effects on survival of mouse renal proximal tubular epithelial cells (RPTECs). In RPTECs subjected to anoxia and subsequent reoxygenation, reactive oxygen species (ROS) production, lipid peroxidation, ferroptotic cell death, the levels of the H2S producing enzymes and H2S, the expression of Nrf2 and its transcriptional targets superoxide dismutase-3, glutathione reductase, ferritin H and cystine-glutamate antiporter, as well as apoptosis, and the levels of p53, Bax and phosphorylated p53 were assessed. When needed, the H2S producing enzyme inhibitor amino-oxyacetate, or the ferroptosis inhibitor α-tocopherol, were used. Reoxygenation induced ferroptosis, whereas anoxia activated the p53-Bax pathway and induced apoptosis. The H2S producing enzymes-Nrf2-antioxidant proteins axis was activated only during anoxia and not during reoxygenation, when cellular viability is threatened by ROS overproduction and the ensuing ferroptosis. The activation of the above axis during anoxia ameliorated the effects of the apoptotic p53-Bax pathway, but did not adequately protect against apoptosis. In conclusion, the H2S-Nrf2 axis is activated by anoxia, and although it reduces apoptosis, it does not completely prevent apoptotic cell death. Additionally, following reoxygenation, the above axis was not activated. This mistimed activation of the H2S producing enzymes-Nrf2-antioxidant proteins axis contributes to reoxygenation-induced cell death. Determining the exact molecular mechanisms involved in reoxygenation-induced cell death may assist in the development of clinically relevant interventions for preventing I-R injury. © 2020, Spandidos Publications. All rights reserved.
URI
http://hdl.handle.net/11615/71351
Collections
  • Δημοσιεύσεις σε περιοδικά, συνέδρια, κεφάλαια βιβλίων κλπ. [19735]

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