Cargando…

3-Acetyl-11-keto-β-boswellic Acid-Based Hybrids Alleviate Acetaminophen-Induced Hepatotoxicity in HepG2 by the Regulation of Inflammatory and Oxidative Stress Pathways: An Integrated Approach

[Image: see text] In an effort to develop new compounds for managing drug-induced liver injury, we prepared 23 novel hybrids based on 3-acetyl-11-keto-β-boswellic acid (AKBA) using various biocompatible linkers. A bioguided approach was employed to identify the most promising hybrid. Eight compounds...

Descripción completa

Detalles Bibliográficos
Autores principales: Elgazar, Abdullah A., El-Domany, Ramadan A., Eldehna, Wagdy M., Badria, Farid A.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Chemical Society 2023
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10601058/
https://www.ncbi.nlm.nih.gov/pubmed/37901542
http://dx.doi.org/10.1021/acsomega.3c05247
_version_ 1785126114831630336
author Elgazar, Abdullah A.
El-Domany, Ramadan A.
Eldehna, Wagdy M.
Badria, Farid A.
author_facet Elgazar, Abdullah A.
El-Domany, Ramadan A.
Eldehna, Wagdy M.
Badria, Farid A.
author_sort Elgazar, Abdullah A.
collection PubMed
description [Image: see text] In an effort to develop new compounds for managing drug-induced liver injury, we prepared 23 novel hybrids based on 3-acetyl-11-keto-β-boswellic acid (AKBA) using various biocompatible linkers. A bioguided approach was employed to identify the most promising hybrid. Eight compounds exhibited superior anti-inflammatory activity compared to the parent compound. Two of these hybrids (5b and 18) were able to reduce gene expression of TNF-α in LPS-induced inflammation in RAW 264.7 cells, similar to dexamethasone. Subsequently, the hepatoprotective potential of these hybrids was evaluated against acetaminophen (APAP) toxicity in HepG2 cells at doses of 1 and 10 μM. Both hybrids effectively restored cytokine levels, which had been elevated by APAP, to normal levels. Furthermore, they normalized depleted superoxide dismutase and reduced glutathione levels while significantly reducing malondialdehyde (MDA) levels. Network pharmacology analysis suggested that AKBA-based hybrids exert their action by regulating PI3K and EGFR pathways, activating anti-inflammatory mechanisms, and initiating tissue repair and regeneration. Molecular docking studies provided insights into the interaction of the hybrids with PI3K. Additionally, the hybrids demonstrated good stability at different pH levels, following first-order kinetics, with relatively long half-lives, suggesting potential for absorption into circulation without significant degradation.
format Online
Article
Text
id pubmed-10601058
institution National Center for Biotechnology Information
language English
publishDate 2023
publisher American Chemical Society
record_format MEDLINE/PubMed
spelling pubmed-106010582023-10-27 3-Acetyl-11-keto-β-boswellic Acid-Based Hybrids Alleviate Acetaminophen-Induced Hepatotoxicity in HepG2 by the Regulation of Inflammatory and Oxidative Stress Pathways: An Integrated Approach Elgazar, Abdullah A. El-Domany, Ramadan A. Eldehna, Wagdy M. Badria, Farid A. ACS Omega [Image: see text] In an effort to develop new compounds for managing drug-induced liver injury, we prepared 23 novel hybrids based on 3-acetyl-11-keto-β-boswellic acid (AKBA) using various biocompatible linkers. A bioguided approach was employed to identify the most promising hybrid. Eight compounds exhibited superior anti-inflammatory activity compared to the parent compound. Two of these hybrids (5b and 18) were able to reduce gene expression of TNF-α in LPS-induced inflammation in RAW 264.7 cells, similar to dexamethasone. Subsequently, the hepatoprotective potential of these hybrids was evaluated against acetaminophen (APAP) toxicity in HepG2 cells at doses of 1 and 10 μM. Both hybrids effectively restored cytokine levels, which had been elevated by APAP, to normal levels. Furthermore, they normalized depleted superoxide dismutase and reduced glutathione levels while significantly reducing malondialdehyde (MDA) levels. Network pharmacology analysis suggested that AKBA-based hybrids exert their action by regulating PI3K and EGFR pathways, activating anti-inflammatory mechanisms, and initiating tissue repair and regeneration. Molecular docking studies provided insights into the interaction of the hybrids with PI3K. Additionally, the hybrids demonstrated good stability at different pH levels, following first-order kinetics, with relatively long half-lives, suggesting potential for absorption into circulation without significant degradation. American Chemical Society 2023-10-12 /pmc/articles/PMC10601058/ /pubmed/37901542 http://dx.doi.org/10.1021/acsomega.3c05247 Text en © 2023 The Authors. Published by American Chemical Society https://creativecommons.org/licenses/by-nc-nd/4.0/Permits non-commercial access and re-use, provided that author attribution and integrity are maintained; but does not permit creation of adaptations or other derivative works (https://creativecommons.org/licenses/by-nc-nd/4.0/).
spellingShingle Elgazar, Abdullah A.
El-Domany, Ramadan A.
Eldehna, Wagdy M.
Badria, Farid A.
3-Acetyl-11-keto-β-boswellic Acid-Based Hybrids Alleviate Acetaminophen-Induced Hepatotoxicity in HepG2 by the Regulation of Inflammatory and Oxidative Stress Pathways: An Integrated Approach
title 3-Acetyl-11-keto-β-boswellic Acid-Based Hybrids Alleviate Acetaminophen-Induced Hepatotoxicity in HepG2 by the Regulation of Inflammatory and Oxidative Stress Pathways: An Integrated Approach
title_full 3-Acetyl-11-keto-β-boswellic Acid-Based Hybrids Alleviate Acetaminophen-Induced Hepatotoxicity in HepG2 by the Regulation of Inflammatory and Oxidative Stress Pathways: An Integrated Approach
title_fullStr 3-Acetyl-11-keto-β-boswellic Acid-Based Hybrids Alleviate Acetaminophen-Induced Hepatotoxicity in HepG2 by the Regulation of Inflammatory and Oxidative Stress Pathways: An Integrated Approach
title_full_unstemmed 3-Acetyl-11-keto-β-boswellic Acid-Based Hybrids Alleviate Acetaminophen-Induced Hepatotoxicity in HepG2 by the Regulation of Inflammatory and Oxidative Stress Pathways: An Integrated Approach
title_short 3-Acetyl-11-keto-β-boswellic Acid-Based Hybrids Alleviate Acetaminophen-Induced Hepatotoxicity in HepG2 by the Regulation of Inflammatory and Oxidative Stress Pathways: An Integrated Approach
title_sort 3-acetyl-11-keto-β-boswellic acid-based hybrids alleviate acetaminophen-induced hepatotoxicity in hepg2 by the regulation of inflammatory and oxidative stress pathways: an integrated approach
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10601058/
https://www.ncbi.nlm.nih.gov/pubmed/37901542
http://dx.doi.org/10.1021/acsomega.3c05247
work_keys_str_mv AT elgazarabdullaha 3acetyl11ketobboswellicacidbasedhybridsalleviateacetaminopheninducedhepatotoxicityinhepg2bytheregulationofinflammatoryandoxidativestresspathwaysanintegratedapproach
AT eldomanyramadana 3acetyl11ketobboswellicacidbasedhybridsalleviateacetaminopheninducedhepatotoxicityinhepg2bytheregulationofinflammatoryandoxidativestresspathwaysanintegratedapproach
AT eldehnawagdym 3acetyl11ketobboswellicacidbasedhybridsalleviateacetaminopheninducedhepatotoxicityinhepg2bytheregulationofinflammatoryandoxidativestresspathwaysanintegratedapproach
AT badriafarida 3acetyl11ketobboswellicacidbasedhybridsalleviateacetaminopheninducedhepatotoxicityinhepg2bytheregulationofinflammatoryandoxidativestresspathwaysanintegratedapproach