Cargando…

Antioxidant, Enzyme Inhibitory, and Molecular Docking Approaches to the Antidiabetic Potentials of Bioactive Compounds from Persicaria hydropiper L.

INTRODUCTION: Natural products are among the most useful sources for the discovery of new drugs against various diseases. Keeping in view the ethnobotanical relevance ethnopharmacological significance of Polygonaceae family in diabetes, the current study was designed to isolate pure compounds from P...

Descripción completa

Detalles Bibliográficos
Autores principales: Ayaz, Muhammad, Sadiq, Abdul, Mosa, Osama F., Zafar, Tariq Abdalla, Eisa Hamdoon, Alashary Adam, Elkhalifa, Modawy Elnour Modawy, Elawad, Mohammed Ahmed, Ahmed, Alshebli, Ullah, Farhat, Ghufran, Mehreen, Kabra, Atul
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Hindawi 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9023165/
https://www.ncbi.nlm.nih.gov/pubmed/35463090
http://dx.doi.org/10.1155/2022/6705810
_version_ 1784690276545069056
author Ayaz, Muhammad
Sadiq, Abdul
Mosa, Osama F.
Zafar, Tariq Abdalla
Eisa Hamdoon, Alashary Adam
Elkhalifa, Modawy Elnour Modawy
Elawad, Mohammed Ahmed
Ahmed, Alshebli
Ullah, Farhat
Ghufran, Mehreen
Kabra, Atul
author_facet Ayaz, Muhammad
Sadiq, Abdul
Mosa, Osama F.
Zafar, Tariq Abdalla
Eisa Hamdoon, Alashary Adam
Elkhalifa, Modawy Elnour Modawy
Elawad, Mohammed Ahmed
Ahmed, Alshebli
Ullah, Farhat
Ghufran, Mehreen
Kabra, Atul
author_sort Ayaz, Muhammad
collection PubMed
description INTRODUCTION: Natural products are among the most useful sources for the discovery of new drugs against various diseases. Keeping in view the ethnobotanical relevance ethnopharmacological significance of Polygonaceae family in diabetes, the current study was designed to isolate pure compounds from Persicaria hydropiper L. leaves and evaluate their in vitro and in silico antidiabetic potentials. METHODS: Six compounds were isolated from the chloroform-ethyl acetate fractions using gravity column chromatography and were subjected to structure elucidation process. Structures were confirmed using (1)H-NMR, (13)C-NMR, and mass spectrometry techniques. Isolated phytochemicals were subjected to in vitro antidiabetic studies, including α-glucosidase, α-amylase inhibition, and DPPH, and ABTS antioxidant studies. Furthermore, the in silico binding mode of these compounds in the target enzymes was elucidated via MOE-Dock software. RESULTS: The isolated compounds revealed concentration-dependent inhibitions against α-glucosidase enzyme. Ph-1 and Ph-2 were most potent with 81.84 and 78.79% enzyme inhibitions at 1000 µg·mL(−1), respectively. Ph-1 and Ph-2 exhibited IC(50)s of 85 and 170 µg·mL(−1) correspondingly. Likewise, test compounds showed considerable α-amylase inhibitions with Ph-1 and Ph-2 being the most potent. Tested compounds exhibited considerable antioxidant potentials in both DPPH and ABTS assays. Molecular simulation studies also revealed top-ranked confirmations for the majority of the compounds in the target enzymes. Highest observed potent compound was Ph-1 with docking score of −12.4286 and formed eight hydrogen bonds and three H-pi linkages with the Asp 68, Phe 157, Phe 177, Asn 241, Glu 276, His 279, Phe 300, Glu 304, Ser 308, Pro 309, Phe 310, Asp 349, and Arg 439 residues of α-glucosidase binding packets. Asp 68, Glu 276, Asp 349, and Arg 439 formed polar bonds with the 3-ethyl-2-methylpentane moiety of the ligand. CONCLUSIONS: The isolated compounds exhibited considerable antioxidant and inhibitory potentials against vital enzymes implicated in T2DM. The docking scores of the compounds revealed that they exhibit affinity for binding with target ligands. The enzyme inhibition and antioxidant potential of the compounds might contribute to the hypoglycemic effects of the plant and need further studies.
format Online
Article
Text
id pubmed-9023165
institution National Center for Biotechnology Information
language English
publishDate 2022
publisher Hindawi
record_format MEDLINE/PubMed
spelling pubmed-90231652022-04-22 Antioxidant, Enzyme Inhibitory, and Molecular Docking Approaches to the Antidiabetic Potentials of Bioactive Compounds from Persicaria hydropiper L. Ayaz, Muhammad Sadiq, Abdul Mosa, Osama F. Zafar, Tariq Abdalla Eisa Hamdoon, Alashary Adam Elkhalifa, Modawy Elnour Modawy Elawad, Mohammed Ahmed Ahmed, Alshebli Ullah, Farhat Ghufran, Mehreen Kabra, Atul Evid Based Complement Alternat Med Research Article INTRODUCTION: Natural products are among the most useful sources for the discovery of new drugs against various diseases. Keeping in view the ethnobotanical relevance ethnopharmacological significance of Polygonaceae family in diabetes, the current study was designed to isolate pure compounds from Persicaria hydropiper L. leaves and evaluate their in vitro and in silico antidiabetic potentials. METHODS: Six compounds were isolated from the chloroform-ethyl acetate fractions using gravity column chromatography and were subjected to structure elucidation process. Structures were confirmed using (1)H-NMR, (13)C-NMR, and mass spectrometry techniques. Isolated phytochemicals were subjected to in vitro antidiabetic studies, including α-glucosidase, α-amylase inhibition, and DPPH, and ABTS antioxidant studies. Furthermore, the in silico binding mode of these compounds in the target enzymes was elucidated via MOE-Dock software. RESULTS: The isolated compounds revealed concentration-dependent inhibitions against α-glucosidase enzyme. Ph-1 and Ph-2 were most potent with 81.84 and 78.79% enzyme inhibitions at 1000 µg·mL(−1), respectively. Ph-1 and Ph-2 exhibited IC(50)s of 85 and 170 µg·mL(−1) correspondingly. Likewise, test compounds showed considerable α-amylase inhibitions with Ph-1 and Ph-2 being the most potent. Tested compounds exhibited considerable antioxidant potentials in both DPPH and ABTS assays. Molecular simulation studies also revealed top-ranked confirmations for the majority of the compounds in the target enzymes. Highest observed potent compound was Ph-1 with docking score of −12.4286 and formed eight hydrogen bonds and three H-pi linkages with the Asp 68, Phe 157, Phe 177, Asn 241, Glu 276, His 279, Phe 300, Glu 304, Ser 308, Pro 309, Phe 310, Asp 349, and Arg 439 residues of α-glucosidase binding packets. Asp 68, Glu 276, Asp 349, and Arg 439 formed polar bonds with the 3-ethyl-2-methylpentane moiety of the ligand. CONCLUSIONS: The isolated compounds exhibited considerable antioxidant and inhibitory potentials against vital enzymes implicated in T2DM. The docking scores of the compounds revealed that they exhibit affinity for binding with target ligands. The enzyme inhibition and antioxidant potential of the compounds might contribute to the hypoglycemic effects of the plant and need further studies. Hindawi 2022-04-14 /pmc/articles/PMC9023165/ /pubmed/35463090 http://dx.doi.org/10.1155/2022/6705810 Text en Copyright © 2022 Muhammad Ayaz et al. https://creativecommons.org/licenses/by/4.0/This is an open access article distributed under the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Research Article
Ayaz, Muhammad
Sadiq, Abdul
Mosa, Osama F.
Zafar, Tariq Abdalla
Eisa Hamdoon, Alashary Adam
Elkhalifa, Modawy Elnour Modawy
Elawad, Mohammed Ahmed
Ahmed, Alshebli
Ullah, Farhat
Ghufran, Mehreen
Kabra, Atul
Antioxidant, Enzyme Inhibitory, and Molecular Docking Approaches to the Antidiabetic Potentials of Bioactive Compounds from Persicaria hydropiper L.
title Antioxidant, Enzyme Inhibitory, and Molecular Docking Approaches to the Antidiabetic Potentials of Bioactive Compounds from Persicaria hydropiper L.
title_full Antioxidant, Enzyme Inhibitory, and Molecular Docking Approaches to the Antidiabetic Potentials of Bioactive Compounds from Persicaria hydropiper L.
title_fullStr Antioxidant, Enzyme Inhibitory, and Molecular Docking Approaches to the Antidiabetic Potentials of Bioactive Compounds from Persicaria hydropiper L.
title_full_unstemmed Antioxidant, Enzyme Inhibitory, and Molecular Docking Approaches to the Antidiabetic Potentials of Bioactive Compounds from Persicaria hydropiper L.
title_short Antioxidant, Enzyme Inhibitory, and Molecular Docking Approaches to the Antidiabetic Potentials of Bioactive Compounds from Persicaria hydropiper L.
title_sort antioxidant, enzyme inhibitory, and molecular docking approaches to the antidiabetic potentials of bioactive compounds from persicaria hydropiper l.
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9023165/
https://www.ncbi.nlm.nih.gov/pubmed/35463090
http://dx.doi.org/10.1155/2022/6705810
work_keys_str_mv AT ayazmuhammad antioxidantenzymeinhibitoryandmoleculardockingapproachestotheantidiabeticpotentialsofbioactivecompoundsfrompersicariahydropiperl
AT sadiqabdul antioxidantenzymeinhibitoryandmoleculardockingapproachestotheantidiabeticpotentialsofbioactivecompoundsfrompersicariahydropiperl
AT mosaosamaf antioxidantenzymeinhibitoryandmoleculardockingapproachestotheantidiabeticpotentialsofbioactivecompoundsfrompersicariahydropiperl
AT zafartariqabdalla antioxidantenzymeinhibitoryandmoleculardockingapproachestotheantidiabeticpotentialsofbioactivecompoundsfrompersicariahydropiperl
AT eisahamdoonalasharyadam antioxidantenzymeinhibitoryandmoleculardockingapproachestotheantidiabeticpotentialsofbioactivecompoundsfrompersicariahydropiperl
AT elkhalifamodawyelnourmodawy antioxidantenzymeinhibitoryandmoleculardockingapproachestotheantidiabeticpotentialsofbioactivecompoundsfrompersicariahydropiperl
AT elawadmohammedahmed antioxidantenzymeinhibitoryandmoleculardockingapproachestotheantidiabeticpotentialsofbioactivecompoundsfrompersicariahydropiperl
AT ahmedalshebli antioxidantenzymeinhibitoryandmoleculardockingapproachestotheantidiabeticpotentialsofbioactivecompoundsfrompersicariahydropiperl
AT ullahfarhat antioxidantenzymeinhibitoryandmoleculardockingapproachestotheantidiabeticpotentialsofbioactivecompoundsfrompersicariahydropiperl
AT ghufranmehreen antioxidantenzymeinhibitoryandmoleculardockingapproachestotheantidiabeticpotentialsofbioactivecompoundsfrompersicariahydropiperl
AT kabraatul antioxidantenzymeinhibitoryandmoleculardockingapproachestotheantidiabeticpotentialsofbioactivecompoundsfrompersicariahydropiperl