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Rhizophora mucronata Lam. (Mangrove) Bark Extract Reduces Ethanol-Induced Liver Cell Death and Oxidative Stress in Swiss Albino Mice: In Vivo and In Silico Studies

The bark extract of Rhizophora mucronata (BERM) was recently reported for its prominent in vitro protective effects against liver cell line toxicity caused by various toxicants, including ethanol. Here, we aimed to verify the in vivo hepatoprotective effects of BERM against ethanol intoxication with...

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Autores principales: Jairaman, Chitra, Alehaideb, Zeyad I., Yacoob, Syed Ali Mohamed, Alghamdi, Sahar S., Suliman, Rasha S., Venkataraman, Anuradha, Alghanem, Bandar, Sivanesan, Senthilkumar, Vijayaraghavan, Rajagopalan, Rameshbabu, Saranya, Pari, Shree Mukilan, Matou-Nasri, Sabine
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9698744/
https://www.ncbi.nlm.nih.gov/pubmed/36355104
http://dx.doi.org/10.3390/metabo12111021
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author Jairaman, Chitra
Alehaideb, Zeyad I.
Yacoob, Syed Ali Mohamed
Alghamdi, Sahar S.
Suliman, Rasha S.
Venkataraman, Anuradha
Alghanem, Bandar
Sivanesan, Senthilkumar
Vijayaraghavan, Rajagopalan
Rameshbabu, Saranya
Pari, Shree Mukilan
Matou-Nasri, Sabine
author_facet Jairaman, Chitra
Alehaideb, Zeyad I.
Yacoob, Syed Ali Mohamed
Alghamdi, Sahar S.
Suliman, Rasha S.
Venkataraman, Anuradha
Alghanem, Bandar
Sivanesan, Senthilkumar
Vijayaraghavan, Rajagopalan
Rameshbabu, Saranya
Pari, Shree Mukilan
Matou-Nasri, Sabine
author_sort Jairaman, Chitra
collection PubMed
description The bark extract of Rhizophora mucronata (BERM) was recently reported for its prominent in vitro protective effects against liver cell line toxicity caused by various toxicants, including ethanol. Here, we aimed to verify the in vivo hepatoprotective effects of BERM against ethanol intoxication with the prediction of potential targets employing in silico studies. An oral administration of different concentrations (100, 200 and 400 mg/kg body weight) of BERM before high-dose ethanol via intraperitoneal injection was performed in mice. On day 7, liver sections were dissected for histopathological examination. The ethanol intoxication caused liver injury and large areas of necrosis. The pre-BERM administration decreased the ethanol-induced liver damage marker tumor necrosis factor-alpha (TNF-α) expression, reduced hepatotoxicity revealed by nuclear deoxyribonucleic acid (DNA) fragmentation and decreased oxidative stress indicated by malondialdehyde and glutathione contents. Our in silico studies have identified BERM-derived metabolites exhibiting the highest predicted antioxidant and free radical scavenger activities. Molecular docking studies showed that most of the metabolites were predicted to be enzyme inhibitors such as carbonic anhydrase inhibitors, which were reported to stimulate the antioxidant defense system. The metabolites predominantly presented acceptable pharmacokinetics and safety profiles, suggesting them as promising new antioxidant agents. Altogether, the BERM extract exerts antioxidative activities and shows promising hepatoprotective effects against ethanol intoxication. Identification of related bioactive compounds will be of interest for future use at physiological concentrations in ethanol-intoxicated individuals.
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spelling pubmed-96987442022-11-26 Rhizophora mucronata Lam. (Mangrove) Bark Extract Reduces Ethanol-Induced Liver Cell Death and Oxidative Stress in Swiss Albino Mice: In Vivo and In Silico Studies Jairaman, Chitra Alehaideb, Zeyad I. Yacoob, Syed Ali Mohamed Alghamdi, Sahar S. Suliman, Rasha S. Venkataraman, Anuradha Alghanem, Bandar Sivanesan, Senthilkumar Vijayaraghavan, Rajagopalan Rameshbabu, Saranya Pari, Shree Mukilan Matou-Nasri, Sabine Metabolites Article The bark extract of Rhizophora mucronata (BERM) was recently reported for its prominent in vitro protective effects against liver cell line toxicity caused by various toxicants, including ethanol. Here, we aimed to verify the in vivo hepatoprotective effects of BERM against ethanol intoxication with the prediction of potential targets employing in silico studies. An oral administration of different concentrations (100, 200 and 400 mg/kg body weight) of BERM before high-dose ethanol via intraperitoneal injection was performed in mice. On day 7, liver sections were dissected for histopathological examination. The ethanol intoxication caused liver injury and large areas of necrosis. The pre-BERM administration decreased the ethanol-induced liver damage marker tumor necrosis factor-alpha (TNF-α) expression, reduced hepatotoxicity revealed by nuclear deoxyribonucleic acid (DNA) fragmentation and decreased oxidative stress indicated by malondialdehyde and glutathione contents. Our in silico studies have identified BERM-derived metabolites exhibiting the highest predicted antioxidant and free radical scavenger activities. Molecular docking studies showed that most of the metabolites were predicted to be enzyme inhibitors such as carbonic anhydrase inhibitors, which were reported to stimulate the antioxidant defense system. The metabolites predominantly presented acceptable pharmacokinetics and safety profiles, suggesting them as promising new antioxidant agents. Altogether, the BERM extract exerts antioxidative activities and shows promising hepatoprotective effects against ethanol intoxication. Identification of related bioactive compounds will be of interest for future use at physiological concentrations in ethanol-intoxicated individuals. MDPI 2022-10-25 /pmc/articles/PMC9698744/ /pubmed/36355104 http://dx.doi.org/10.3390/metabo12111021 Text en © 2022 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
Jairaman, Chitra
Alehaideb, Zeyad I.
Yacoob, Syed Ali Mohamed
Alghamdi, Sahar S.
Suliman, Rasha S.
Venkataraman, Anuradha
Alghanem, Bandar
Sivanesan, Senthilkumar
Vijayaraghavan, Rajagopalan
Rameshbabu, Saranya
Pari, Shree Mukilan
Matou-Nasri, Sabine
Rhizophora mucronata Lam. (Mangrove) Bark Extract Reduces Ethanol-Induced Liver Cell Death and Oxidative Stress in Swiss Albino Mice: In Vivo and In Silico Studies
title Rhizophora mucronata Lam. (Mangrove) Bark Extract Reduces Ethanol-Induced Liver Cell Death and Oxidative Stress in Swiss Albino Mice: In Vivo and In Silico Studies
title_full Rhizophora mucronata Lam. (Mangrove) Bark Extract Reduces Ethanol-Induced Liver Cell Death and Oxidative Stress in Swiss Albino Mice: In Vivo and In Silico Studies
title_fullStr Rhizophora mucronata Lam. (Mangrove) Bark Extract Reduces Ethanol-Induced Liver Cell Death and Oxidative Stress in Swiss Albino Mice: In Vivo and In Silico Studies
title_full_unstemmed Rhizophora mucronata Lam. (Mangrove) Bark Extract Reduces Ethanol-Induced Liver Cell Death and Oxidative Stress in Swiss Albino Mice: In Vivo and In Silico Studies
title_short Rhizophora mucronata Lam. (Mangrove) Bark Extract Reduces Ethanol-Induced Liver Cell Death and Oxidative Stress in Swiss Albino Mice: In Vivo and In Silico Studies
title_sort rhizophora mucronata lam. (mangrove) bark extract reduces ethanol-induced liver cell death and oxidative stress in swiss albino mice: in vivo and in silico studies
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9698744/
https://www.ncbi.nlm.nih.gov/pubmed/36355104
http://dx.doi.org/10.3390/metabo12111021
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