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Identification of some bioactive compounds from Trignonella foenumgraecum as possible inhibitors of PPAR(ϒ) for diabetes treatment through molecular docking studies, pharmacophore modelling and ADMET profiling: An in-silico study
Oral antidiabetic agents including the peroxisome proliferator-activated receptor gamma (PPARγ) agonists are available for the clinical management of diabetes mellitus (DM) but most are characterized by many adverse effects. In this study, we explore the antidiabetic properties of phytoconstituents...
Autores principales: | , , , , , , , , , , , , |
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Formato: | Online Artículo Texto |
Lenguaje: | English |
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Public Library of Science
2023
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Materias: | |
Acceso en línea: | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10194899/ https://www.ncbi.nlm.nih.gov/pubmed/37200359 http://dx.doi.org/10.1371/journal.pone.0284210 |
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author | Okoh, Olayinka Sunday Yakubu, AbdulbasitHaliru Adegboyega, Abayomi Emmanuel Uti, Daniel Ejim Obeten, Uket Nta Agada, Samuel Ali Oluwaloni, Folusho Johnson, Grace Inioluwa Mela, Leonard Paul Asomadu, Rita Onyekachukwu Iwaloye, Opeyemi Johnson, Titilayo Omolara Orji, Obasi Uche. |
author_facet | Okoh, Olayinka Sunday Yakubu, AbdulbasitHaliru Adegboyega, Abayomi Emmanuel Uti, Daniel Ejim Obeten, Uket Nta Agada, Samuel Ali Oluwaloni, Folusho Johnson, Grace Inioluwa Mela, Leonard Paul Asomadu, Rita Onyekachukwu Iwaloye, Opeyemi Johnson, Titilayo Omolara Orji, Obasi Uche. |
author_sort | Okoh, Olayinka Sunday |
collection | PubMed |
description | Oral antidiabetic agents including the peroxisome proliferator-activated receptor gamma (PPARγ) agonists are available for the clinical management of diabetes mellitus (DM) but most are characterized by many adverse effects. In this study, we explore the antidiabetic properties of phytoconstituents from Trigonellafeonumgraecum (Fabaceae) as potential agonist of PPARγ; using in silico molecular docking, molecular mechanics generalized surface area (MM/GBSA)free binding energy prediction, Pharmacophore modeling experiment, and Pharmacokinetic/ toxicity analysis. One hundred and forty (140) compounds derived from Trigonellafeonumgraecum were screened by molecular docking against protein target PDB 3VI8. Results obtained from binding affinity (BA) and that of binding free energy (BFE) revealed five 5 compounds; arachidonic acid (CID_10467, BA -10.029, BFE -58.9), isoquercetin (CID_5280804, BA -9.507kcal/mol, BFE -56.33), rutin (CID_5280805, BA -9.463kcal/mol, BFE -56.33), quercetin (CID_10121947, BA -11.945kcal/mol, BFE -45.89) and (2S)-2-[[4-methoxy-3-[(pyrene-1-carbonylamino)methyl]phenyl]methyl]butanoic acid (CID_25112371, BA -10.679kcal/mol, BFE -45.73); and were superior to the standard; Rosiglitazone with a docking score of -7.672. Hydrogen bonding was notable in the protein-ligand complex interaction, with hydrophobic bond, polar bond and pipi stacking also observed. Their Pharmacokinetic/ toxicity profile showed varying druggable characteristics, but; arachidonic acid had the most favorable characteristics. These compounds are potential agonists of PPARγ and are considered as antidiabetic agents after successful experimental validation. |
format | Online Article Text |
id | pubmed-10194899 |
institution | National Center for Biotechnology Information |
language | English |
publishDate | 2023 |
publisher | Public Library of Science |
record_format | MEDLINE/PubMed |
spelling | pubmed-101948992023-05-19 Identification of some bioactive compounds from Trignonella foenumgraecum as possible inhibitors of PPAR(ϒ) for diabetes treatment through molecular docking studies, pharmacophore modelling and ADMET profiling: An in-silico study Okoh, Olayinka Sunday Yakubu, AbdulbasitHaliru Adegboyega, Abayomi Emmanuel Uti, Daniel Ejim Obeten, Uket Nta Agada, Samuel Ali Oluwaloni, Folusho Johnson, Grace Inioluwa Mela, Leonard Paul Asomadu, Rita Onyekachukwu Iwaloye, Opeyemi Johnson, Titilayo Omolara Orji, Obasi Uche. PLoS One Research Article Oral antidiabetic agents including the peroxisome proliferator-activated receptor gamma (PPARγ) agonists are available for the clinical management of diabetes mellitus (DM) but most are characterized by many adverse effects. In this study, we explore the antidiabetic properties of phytoconstituents from Trigonellafeonumgraecum (Fabaceae) as potential agonist of PPARγ; using in silico molecular docking, molecular mechanics generalized surface area (MM/GBSA)free binding energy prediction, Pharmacophore modeling experiment, and Pharmacokinetic/ toxicity analysis. One hundred and forty (140) compounds derived from Trigonellafeonumgraecum were screened by molecular docking against protein target PDB 3VI8. Results obtained from binding affinity (BA) and that of binding free energy (BFE) revealed five 5 compounds; arachidonic acid (CID_10467, BA -10.029, BFE -58.9), isoquercetin (CID_5280804, BA -9.507kcal/mol, BFE -56.33), rutin (CID_5280805, BA -9.463kcal/mol, BFE -56.33), quercetin (CID_10121947, BA -11.945kcal/mol, BFE -45.89) and (2S)-2-[[4-methoxy-3-[(pyrene-1-carbonylamino)methyl]phenyl]methyl]butanoic acid (CID_25112371, BA -10.679kcal/mol, BFE -45.73); and were superior to the standard; Rosiglitazone with a docking score of -7.672. Hydrogen bonding was notable in the protein-ligand complex interaction, with hydrophobic bond, polar bond and pipi stacking also observed. Their Pharmacokinetic/ toxicity profile showed varying druggable characteristics, but; arachidonic acid had the most favorable characteristics. These compounds are potential agonists of PPARγ and are considered as antidiabetic agents after successful experimental validation. Public Library of Science 2023-05-18 /pmc/articles/PMC10194899/ /pubmed/37200359 http://dx.doi.org/10.1371/journal.pone.0284210 Text en © 2023 Okoh 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 Okoh, Olayinka Sunday Yakubu, AbdulbasitHaliru Adegboyega, Abayomi Emmanuel Uti, Daniel Ejim Obeten, Uket Nta Agada, Samuel Ali Oluwaloni, Folusho Johnson, Grace Inioluwa Mela, Leonard Paul Asomadu, Rita Onyekachukwu Iwaloye, Opeyemi Johnson, Titilayo Omolara Orji, Obasi Uche. Identification of some bioactive compounds from Trignonella foenumgraecum as possible inhibitors of PPAR(ϒ) for diabetes treatment through molecular docking studies, pharmacophore modelling and ADMET profiling: An in-silico study |
title | Identification of some bioactive compounds from Trignonella foenumgraecum as possible inhibitors of PPAR(ϒ) for diabetes treatment through molecular docking studies, pharmacophore modelling and ADMET profiling: An in-silico study |
title_full | Identification of some bioactive compounds from Trignonella foenumgraecum as possible inhibitors of PPAR(ϒ) for diabetes treatment through molecular docking studies, pharmacophore modelling and ADMET profiling: An in-silico study |
title_fullStr | Identification of some bioactive compounds from Trignonella foenumgraecum as possible inhibitors of PPAR(ϒ) for diabetes treatment through molecular docking studies, pharmacophore modelling and ADMET profiling: An in-silico study |
title_full_unstemmed | Identification of some bioactive compounds from Trignonella foenumgraecum as possible inhibitors of PPAR(ϒ) for diabetes treatment through molecular docking studies, pharmacophore modelling and ADMET profiling: An in-silico study |
title_short | Identification of some bioactive compounds from Trignonella foenumgraecum as possible inhibitors of PPAR(ϒ) for diabetes treatment through molecular docking studies, pharmacophore modelling and ADMET profiling: An in-silico study |
title_sort | identification of some bioactive compounds from trignonella foenumgraecum as possible inhibitors of ppar(ϒ) for diabetes treatment through molecular docking studies, pharmacophore modelling and admet profiling: an in-silico study |
topic | Research Article |
url | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10194899/ https://www.ncbi.nlm.nih.gov/pubmed/37200359 http://dx.doi.org/10.1371/journal.pone.0284210 |
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