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Nonlinear molecular dynamics of quercetin in Gynocardia odorata and Diospyros malabarica fruits: Its mechanistic role in hepatoprotection

Liver performs number of critical physiological functions in human system. Intoxication of liver leads to accumulation of free radicals that eventually cause damage, fibrosis, cirrhosis and cancer. Carbon tetrachloride (CCl(4)) belongs to hepatotoxin is converted to a highly reactive free radical by...

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Autores principales: Ghosh, Arabinda, Sarmah, Pranjal, Patel, Harun, Mukerjee, Nobendu, Mishra, Rajbardhan, Alkahtani, Saad, Varma, Rajender S., Baishya, Debabrat
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8936497/
https://www.ncbi.nlm.nih.gov/pubmed/35313329
http://dx.doi.org/10.1371/journal.pone.0263917
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author Ghosh, Arabinda
Sarmah, Pranjal
Patel, Harun
Mukerjee, Nobendu
Mishra, Rajbardhan
Alkahtani, Saad
Varma, Rajender S.
Baishya, Debabrat
author_facet Ghosh, Arabinda
Sarmah, Pranjal
Patel, Harun
Mukerjee, Nobendu
Mishra, Rajbardhan
Alkahtani, Saad
Varma, Rajender S.
Baishya, Debabrat
author_sort Ghosh, Arabinda
collection PubMed
description Liver performs number of critical physiological functions in human system. Intoxication of liver leads to accumulation of free radicals that eventually cause damage, fibrosis, cirrhosis and cancer. Carbon tetrachloride (CCl(4)) belongs to hepatotoxin is converted to a highly reactive free radical by cytochrome P450 enzymes that causes liver damage. Plant extracts derived quercetin has substantial role in hepatoprotection. This study highlights the possible mechanism by which quercetin plays significant role in hepatoprotection. HPLC analysis revealed the abundance of quercetin in the fruit extracts of Gynocardia odorata and Diospyros malabarica, were isolated, purified and subjected to liver function analysis on Wistar rats. Post quercetin treatment improved liver function parameters in the hepatotoxic Wistar rats by augmenting bilirubin content, SGOT and SGPT activity. Gene expression profile of quercetin treated rats revealed down regulation of HGF, TIMP1 and MMP2 expressed during CCl(4) induction. In silico molecular mechanism prediction suggested that quercetin has a high affinity for cell signaling pathway proteins BCL-2, JAK2 and Cytochrome P450 Cyp2E1, which all play a significant role in CCl(4) induced hepatotoxicity. In silico molecular docking and molecular dynamics simulation have shown that quercetin has a plausible affinity for major signaling proteins in liver. MMGBSA studies have revealed high binding of quercetin (ΔG) -41.48±11.02, -43.53±6.55 and -39.89±5.78 kcal/mol, with BCL-2, JAK2 and Cyp2E1, respectively which led to better stability of the quercetin bound protein complexes. Therefore, quercetin can act as potent inhibitor against CCl(4) induced hepatic injury by regulating BCL-2, JAK2 and Cyp2E1.
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spelling pubmed-89364972022-03-22 Nonlinear molecular dynamics of quercetin in Gynocardia odorata and Diospyros malabarica fruits: Its mechanistic role in hepatoprotection Ghosh, Arabinda Sarmah, Pranjal Patel, Harun Mukerjee, Nobendu Mishra, Rajbardhan Alkahtani, Saad Varma, Rajender S. Baishya, Debabrat PLoS One Research Article Liver performs number of critical physiological functions in human system. Intoxication of liver leads to accumulation of free radicals that eventually cause damage, fibrosis, cirrhosis and cancer. Carbon tetrachloride (CCl(4)) belongs to hepatotoxin is converted to a highly reactive free radical by cytochrome P450 enzymes that causes liver damage. Plant extracts derived quercetin has substantial role in hepatoprotection. This study highlights the possible mechanism by which quercetin plays significant role in hepatoprotection. HPLC analysis revealed the abundance of quercetin in the fruit extracts of Gynocardia odorata and Diospyros malabarica, were isolated, purified and subjected to liver function analysis on Wistar rats. Post quercetin treatment improved liver function parameters in the hepatotoxic Wistar rats by augmenting bilirubin content, SGOT and SGPT activity. Gene expression profile of quercetin treated rats revealed down regulation of HGF, TIMP1 and MMP2 expressed during CCl(4) induction. In silico molecular mechanism prediction suggested that quercetin has a high affinity for cell signaling pathway proteins BCL-2, JAK2 and Cytochrome P450 Cyp2E1, which all play a significant role in CCl(4) induced hepatotoxicity. In silico molecular docking and molecular dynamics simulation have shown that quercetin has a plausible affinity for major signaling proteins in liver. MMGBSA studies have revealed high binding of quercetin (ΔG) -41.48±11.02, -43.53±6.55 and -39.89±5.78 kcal/mol, with BCL-2, JAK2 and Cyp2E1, respectively which led to better stability of the quercetin bound protein complexes. Therefore, quercetin can act as potent inhibitor against CCl(4) induced hepatic injury by regulating BCL-2, JAK2 and Cyp2E1. Public Library of Science 2022-03-21 /pmc/articles/PMC8936497/ /pubmed/35313329 http://dx.doi.org/10.1371/journal.pone.0263917 Text en © 2022 Ghosh et al https://creativecommons.org/licenses/by/4.0/This is an open access article distributed under the terms of the Creative Commons Attribution License (https://creativecommons.org/licenses/by/4.0/) , which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.
spellingShingle Research Article
Ghosh, Arabinda
Sarmah, Pranjal
Patel, Harun
Mukerjee, Nobendu
Mishra, Rajbardhan
Alkahtani, Saad
Varma, Rajender S.
Baishya, Debabrat
Nonlinear molecular dynamics of quercetin in Gynocardia odorata and Diospyros malabarica fruits: Its mechanistic role in hepatoprotection
title Nonlinear molecular dynamics of quercetin in Gynocardia odorata and Diospyros malabarica fruits: Its mechanistic role in hepatoprotection
title_full Nonlinear molecular dynamics of quercetin in Gynocardia odorata and Diospyros malabarica fruits: Its mechanistic role in hepatoprotection
title_fullStr Nonlinear molecular dynamics of quercetin in Gynocardia odorata and Diospyros malabarica fruits: Its mechanistic role in hepatoprotection
title_full_unstemmed Nonlinear molecular dynamics of quercetin in Gynocardia odorata and Diospyros malabarica fruits: Its mechanistic role in hepatoprotection
title_short Nonlinear molecular dynamics of quercetin in Gynocardia odorata and Diospyros malabarica fruits: Its mechanistic role in hepatoprotection
title_sort nonlinear molecular dynamics of quercetin in gynocardia odorata and diospyros malabarica fruits: its mechanistic role in hepatoprotection
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8936497/
https://www.ncbi.nlm.nih.gov/pubmed/35313329
http://dx.doi.org/10.1371/journal.pone.0263917
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