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The Potential Effects of Quercetin-Loaded Nanoliposomes on Amoxicillin/Clavulanate-Induced Hepatic Damage: Targeting the SIRT1/Nrf2/NF-κB Signaling Pathway and Microbiota Modulation

Amoxicillin/clavulanate (Co-Amox), a commonly used antibiotic for the treatment of bacterial infections, has been associated with drug-induced liver damage. Quercetin (QR), a naturally occurring flavonoid with pleiotropic biological activities, has poor water solubility and low bioavailability. The...

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Autores principales: Abd El-Emam, Mahran Mohamed, Mostafa, Mahmoud, Farag, Amina A., Youssef, Heba S., El-Demerdash, Azza S., Bayoumi, Heba, Gebba, Mohammed A., El-Halawani, Sawsan M., Saleh, Abdulrahman M., Badr, Amira M., El Sayed, Shorouk
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10451903/
https://www.ncbi.nlm.nih.gov/pubmed/37627483
http://dx.doi.org/10.3390/antiox12081487
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author Abd El-Emam, Mahran Mohamed
Mostafa, Mahmoud
Farag, Amina A.
Youssef, Heba S.
El-Demerdash, Azza S.
Bayoumi, Heba
Gebba, Mohammed A.
El-Halawani, Sawsan M.
Saleh, Abdulrahman M.
Badr, Amira M.
El Sayed, Shorouk
author_facet Abd El-Emam, Mahran Mohamed
Mostafa, Mahmoud
Farag, Amina A.
Youssef, Heba S.
El-Demerdash, Azza S.
Bayoumi, Heba
Gebba, Mohammed A.
El-Halawani, Sawsan M.
Saleh, Abdulrahman M.
Badr, Amira M.
El Sayed, Shorouk
author_sort Abd El-Emam, Mahran Mohamed
collection PubMed
description Amoxicillin/clavulanate (Co-Amox), a commonly used antibiotic for the treatment of bacterial infections, has been associated with drug-induced liver damage. Quercetin (QR), a naturally occurring flavonoid with pleiotropic biological activities, has poor water solubility and low bioavailability. The objective of this work was to produce a more bioavailable formulation of QR (liposomes) and to determine the effect of its intraperitoneal pretreatment on the amelioration of Co-Amox-induced liver damage in male rats. Four groups of rats were defined: control, QR liposomes (QR-lipo), Co-Amox, and Co-Amox and QR-lipo. Liver injury severity in rats was evaluated for all groups through measurement of serum liver enzymes, liver antioxidant status, proinflammatory mediators, and microbiota modulation. The results revealed that QR-lipo reduced the severity of Co-Amox-induced hepatic damage in rats, as indicated by a reduction in serum liver enzymes and total liver antioxidant capacity. In addition, QR-lipo upregulated antioxidant transcription factors SIRT1 and Nrf2 and downregulated liver proinflammatory signatures, including IL-6, IL-1β, TNF-α, NF-κB, and iNOS, with upregulation in the anti-inflammatory one, IL10. QR-lipo also prevented Co-Amox-induced gut dysbiosis by favoring the colonization of Lactobacillus, Bifidobacterium, and Bacteroides over Clostridium and Enterobacteriaceae. These results suggested that QR-lipo ameliorates Co-Amox-induced liver damage by targeting SIRT1/Nrf2/NF-κB and modulating the microbiota.
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spelling pubmed-104519032023-08-26 The Potential Effects of Quercetin-Loaded Nanoliposomes on Amoxicillin/Clavulanate-Induced Hepatic Damage: Targeting the SIRT1/Nrf2/NF-κB Signaling Pathway and Microbiota Modulation Abd El-Emam, Mahran Mohamed Mostafa, Mahmoud Farag, Amina A. Youssef, Heba S. El-Demerdash, Azza S. Bayoumi, Heba Gebba, Mohammed A. El-Halawani, Sawsan M. Saleh, Abdulrahman M. Badr, Amira M. El Sayed, Shorouk Antioxidants (Basel) Article Amoxicillin/clavulanate (Co-Amox), a commonly used antibiotic for the treatment of bacterial infections, has been associated with drug-induced liver damage. Quercetin (QR), a naturally occurring flavonoid with pleiotropic biological activities, has poor water solubility and low bioavailability. The objective of this work was to produce a more bioavailable formulation of QR (liposomes) and to determine the effect of its intraperitoneal pretreatment on the amelioration of Co-Amox-induced liver damage in male rats. Four groups of rats were defined: control, QR liposomes (QR-lipo), Co-Amox, and Co-Amox and QR-lipo. Liver injury severity in rats was evaluated for all groups through measurement of serum liver enzymes, liver antioxidant status, proinflammatory mediators, and microbiota modulation. The results revealed that QR-lipo reduced the severity of Co-Amox-induced hepatic damage in rats, as indicated by a reduction in serum liver enzymes and total liver antioxidant capacity. In addition, QR-lipo upregulated antioxidant transcription factors SIRT1 and Nrf2 and downregulated liver proinflammatory signatures, including IL-6, IL-1β, TNF-α, NF-κB, and iNOS, with upregulation in the anti-inflammatory one, IL10. QR-lipo also prevented Co-Amox-induced gut dysbiosis by favoring the colonization of Lactobacillus, Bifidobacterium, and Bacteroides over Clostridium and Enterobacteriaceae. These results suggested that QR-lipo ameliorates Co-Amox-induced liver damage by targeting SIRT1/Nrf2/NF-κB and modulating the microbiota. MDPI 2023-07-25 /pmc/articles/PMC10451903/ /pubmed/37627483 http://dx.doi.org/10.3390/antiox12081487 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
Abd El-Emam, Mahran Mohamed
Mostafa, Mahmoud
Farag, Amina A.
Youssef, Heba S.
El-Demerdash, Azza S.
Bayoumi, Heba
Gebba, Mohammed A.
El-Halawani, Sawsan M.
Saleh, Abdulrahman M.
Badr, Amira M.
El Sayed, Shorouk
The Potential Effects of Quercetin-Loaded Nanoliposomes on Amoxicillin/Clavulanate-Induced Hepatic Damage: Targeting the SIRT1/Nrf2/NF-κB Signaling Pathway and Microbiota Modulation
title The Potential Effects of Quercetin-Loaded Nanoliposomes on Amoxicillin/Clavulanate-Induced Hepatic Damage: Targeting the SIRT1/Nrf2/NF-κB Signaling Pathway and Microbiota Modulation
title_full The Potential Effects of Quercetin-Loaded Nanoliposomes on Amoxicillin/Clavulanate-Induced Hepatic Damage: Targeting the SIRT1/Nrf2/NF-κB Signaling Pathway and Microbiota Modulation
title_fullStr The Potential Effects of Quercetin-Loaded Nanoliposomes on Amoxicillin/Clavulanate-Induced Hepatic Damage: Targeting the SIRT1/Nrf2/NF-κB Signaling Pathway and Microbiota Modulation
title_full_unstemmed The Potential Effects of Quercetin-Loaded Nanoliposomes on Amoxicillin/Clavulanate-Induced Hepatic Damage: Targeting the SIRT1/Nrf2/NF-κB Signaling Pathway and Microbiota Modulation
title_short The Potential Effects of Quercetin-Loaded Nanoliposomes on Amoxicillin/Clavulanate-Induced Hepatic Damage: Targeting the SIRT1/Nrf2/NF-κB Signaling Pathway and Microbiota Modulation
title_sort potential effects of quercetin-loaded nanoliposomes on amoxicillin/clavulanate-induced hepatic damage: targeting the sirt1/nrf2/nf-κb signaling pathway and microbiota modulation
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10451903/
https://www.ncbi.nlm.nih.gov/pubmed/37627483
http://dx.doi.org/10.3390/antiox12081487
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