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Empagliflozin Ameliorates Bleomycin-Induced Pulmonary Fibrosis in Rats by Modulating Sesn2/AMPK/Nrf2 Signaling and Targeting Ferroptosis and Autophagy

Pulmonary fibrosis (PF) is a life-threatening disorder that severely disrupts normal lung architecture and function, resulting in severe respiratory failure and death. It has no definite treatment. Empagliflozin (EMPA), a sodium-glucose cotransporter 2 (SGLT2) inhibitor, has protective potential in...

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Autores principales: El-Horany, Hemat El-Sayed, Atef, Marwa Mohamed, Abdel Ghafar, Muhammad Tarek, Fouda, Mohamed. H., Nasef, Nahla Anas, Hegab, Islam Ibrahim, Helal, Duaa S., Elseady, Walaa, Hafez, Yasser Mostafa, Hagag, Rasha Youssef, Seleem, Monira Abdelmoaty, Saleh, Mai Mahmoud, Radwan, Doaa A., Abd El-Lateef, Amal Ezzat, Abd-Ellatif, Rania Nagi
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10253289/
https://www.ncbi.nlm.nih.gov/pubmed/37298433
http://dx.doi.org/10.3390/ijms24119481
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author El-Horany, Hemat El-Sayed
Atef, Marwa Mohamed
Abdel Ghafar, Muhammad Tarek
Fouda, Mohamed. H.
Nasef, Nahla Anas
Hegab, Islam Ibrahim
Helal, Duaa S.
Elseady, Walaa
Hafez, Yasser Mostafa
Hagag, Rasha Youssef
Seleem, Monira Abdelmoaty
Saleh, Mai Mahmoud
Radwan, Doaa A.
Abd El-Lateef, Amal Ezzat
Abd-Ellatif, Rania Nagi
author_facet El-Horany, Hemat El-Sayed
Atef, Marwa Mohamed
Abdel Ghafar, Muhammad Tarek
Fouda, Mohamed. H.
Nasef, Nahla Anas
Hegab, Islam Ibrahim
Helal, Duaa S.
Elseady, Walaa
Hafez, Yasser Mostafa
Hagag, Rasha Youssef
Seleem, Monira Abdelmoaty
Saleh, Mai Mahmoud
Radwan, Doaa A.
Abd El-Lateef, Amal Ezzat
Abd-Ellatif, Rania Nagi
author_sort El-Horany, Hemat El-Sayed
collection PubMed
description Pulmonary fibrosis (PF) is a life-threatening disorder that severely disrupts normal lung architecture and function, resulting in severe respiratory failure and death. It has no definite treatment. Empagliflozin (EMPA), a sodium-glucose cotransporter 2 (SGLT2) inhibitor, has protective potential in PF. However, the mechanisms underlying these effects require further elucidation. Therefore, this study aimed to evaluate the ameliorative effect of EMPA against bleomycin (BLM)-induced PF and the potential mechanisms. Twenty-four male Wister rats were randomly divided into four groups: control, BLM treated, EMPA treated, and EMPA+BLM treated. EMPA significantly improved the histopathological injuries illustrated by both hematoxylin and eosin and Masson’s trichrome-stained lung tissue sections, as confirmed by electron microscopic examination. It significantly reduced the lung index, hydroxyproline content, and transforming growth factor β1 levels in the BLM rat model. It had an anti-inflammatory effect, as evidenced by a decrease in the inflammatory cytokines’ tumor necrosis factor alpha and high mobility group box 1, inflammatory cell infiltration into the bronchoalveolar lavage fluid, and the CD68 immunoreaction. Furthermore, EMPA mitigated oxidative stress, DNA fragmentation, ferroptosis, and endoplasmic reticulum stress, as evidenced by the up-regulation of nuclear factor erythroid 2-related factor expression, heme oxygenase-1 activity, glutathione peroxidase 4 levels, and a decrease in C/EBP homologous protein levels. This protective potential could be explained on the basis of autophagy induction via up-regulating lung sestrin2 expression and the LC3 II immunoreaction observed in this study. Our findings indicated that EMPA protected against BLM-induced PF-associated cellular stress by enhancing autophagy and modulating sestrin2/adenosine monophosphate-activated protein kinase/nuclear factor erythroid 2-related factor 2/heme oxygenase 1 signaling.
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spelling pubmed-102532892023-06-10 Empagliflozin Ameliorates Bleomycin-Induced Pulmonary Fibrosis in Rats by Modulating Sesn2/AMPK/Nrf2 Signaling and Targeting Ferroptosis and Autophagy El-Horany, Hemat El-Sayed Atef, Marwa Mohamed Abdel Ghafar, Muhammad Tarek Fouda, Mohamed. H. Nasef, Nahla Anas Hegab, Islam Ibrahim Helal, Duaa S. Elseady, Walaa Hafez, Yasser Mostafa Hagag, Rasha Youssef Seleem, Monira Abdelmoaty Saleh, Mai Mahmoud Radwan, Doaa A. Abd El-Lateef, Amal Ezzat Abd-Ellatif, Rania Nagi Int J Mol Sci Article Pulmonary fibrosis (PF) is a life-threatening disorder that severely disrupts normal lung architecture and function, resulting in severe respiratory failure and death. It has no definite treatment. Empagliflozin (EMPA), a sodium-glucose cotransporter 2 (SGLT2) inhibitor, has protective potential in PF. However, the mechanisms underlying these effects require further elucidation. Therefore, this study aimed to evaluate the ameliorative effect of EMPA against bleomycin (BLM)-induced PF and the potential mechanisms. Twenty-four male Wister rats were randomly divided into four groups: control, BLM treated, EMPA treated, and EMPA+BLM treated. EMPA significantly improved the histopathological injuries illustrated by both hematoxylin and eosin and Masson’s trichrome-stained lung tissue sections, as confirmed by electron microscopic examination. It significantly reduced the lung index, hydroxyproline content, and transforming growth factor β1 levels in the BLM rat model. It had an anti-inflammatory effect, as evidenced by a decrease in the inflammatory cytokines’ tumor necrosis factor alpha and high mobility group box 1, inflammatory cell infiltration into the bronchoalveolar lavage fluid, and the CD68 immunoreaction. Furthermore, EMPA mitigated oxidative stress, DNA fragmentation, ferroptosis, and endoplasmic reticulum stress, as evidenced by the up-regulation of nuclear factor erythroid 2-related factor expression, heme oxygenase-1 activity, glutathione peroxidase 4 levels, and a decrease in C/EBP homologous protein levels. This protective potential could be explained on the basis of autophagy induction via up-regulating lung sestrin2 expression and the LC3 II immunoreaction observed in this study. Our findings indicated that EMPA protected against BLM-induced PF-associated cellular stress by enhancing autophagy and modulating sestrin2/adenosine monophosphate-activated protein kinase/nuclear factor erythroid 2-related factor 2/heme oxygenase 1 signaling. MDPI 2023-05-30 /pmc/articles/PMC10253289/ /pubmed/37298433 http://dx.doi.org/10.3390/ijms24119481 Text en © 2023 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
El-Horany, Hemat El-Sayed
Atef, Marwa Mohamed
Abdel Ghafar, Muhammad Tarek
Fouda, Mohamed. H.
Nasef, Nahla Anas
Hegab, Islam Ibrahim
Helal, Duaa S.
Elseady, Walaa
Hafez, Yasser Mostafa
Hagag, Rasha Youssef
Seleem, Monira Abdelmoaty
Saleh, Mai Mahmoud
Radwan, Doaa A.
Abd El-Lateef, Amal Ezzat
Abd-Ellatif, Rania Nagi
Empagliflozin Ameliorates Bleomycin-Induced Pulmonary Fibrosis in Rats by Modulating Sesn2/AMPK/Nrf2 Signaling and Targeting Ferroptosis and Autophagy
title Empagliflozin Ameliorates Bleomycin-Induced Pulmonary Fibrosis in Rats by Modulating Sesn2/AMPK/Nrf2 Signaling and Targeting Ferroptosis and Autophagy
title_full Empagliflozin Ameliorates Bleomycin-Induced Pulmonary Fibrosis in Rats by Modulating Sesn2/AMPK/Nrf2 Signaling and Targeting Ferroptosis and Autophagy
title_fullStr Empagliflozin Ameliorates Bleomycin-Induced Pulmonary Fibrosis in Rats by Modulating Sesn2/AMPK/Nrf2 Signaling and Targeting Ferroptosis and Autophagy
title_full_unstemmed Empagliflozin Ameliorates Bleomycin-Induced Pulmonary Fibrosis in Rats by Modulating Sesn2/AMPK/Nrf2 Signaling and Targeting Ferroptosis and Autophagy
title_short Empagliflozin Ameliorates Bleomycin-Induced Pulmonary Fibrosis in Rats by Modulating Sesn2/AMPK/Nrf2 Signaling and Targeting Ferroptosis and Autophagy
title_sort empagliflozin ameliorates bleomycin-induced pulmonary fibrosis in rats by modulating sesn2/ampk/nrf2 signaling and targeting ferroptosis and autophagy
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10253289/
https://www.ncbi.nlm.nih.gov/pubmed/37298433
http://dx.doi.org/10.3390/ijms24119481
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