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New Biologically Hybrid Pharmacophore Thiazolidinone-Based Indole Derivatives: Synthesis, In Vitro Alpha-Amylase and Alpha-Glucosidase along with Molecular Docking Investigations

Amylase and glucosidase enzymes are the primary harmful source in the development of the chronic condition known as diabetes mellitus. The main function of these enzymes is to break the macromolecules into simple sugar units which are directly involved in the solubility of blood, hence increasing bl...

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Autores principales: Khan, Shoaib, Iqbal, Shahid, Rahim, Fazal, Shah, Mazloom, Hussain, Rafaqat, Alrbyawi, Hamad, Rehman, Wajid, Dera, Ayed A., Rasheed, Liaqat, Somaily, H. H., Pashameah, Rami Adel, Alzahrani, Eman, Farouk, Abd-ElAziem
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9571711/
https://www.ncbi.nlm.nih.gov/pubmed/36235098
http://dx.doi.org/10.3390/molecules27196564
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author Khan, Shoaib
Iqbal, Shahid
Rahim, Fazal
Shah, Mazloom
Hussain, Rafaqat
Alrbyawi, Hamad
Rehman, Wajid
Dera, Ayed A.
Rasheed, Liaqat
Somaily, H. H.
Pashameah, Rami Adel
Alzahrani, Eman
Farouk, Abd-ElAziem
author_facet Khan, Shoaib
Iqbal, Shahid
Rahim, Fazal
Shah, Mazloom
Hussain, Rafaqat
Alrbyawi, Hamad
Rehman, Wajid
Dera, Ayed A.
Rasheed, Liaqat
Somaily, H. H.
Pashameah, Rami Adel
Alzahrani, Eman
Farouk, Abd-ElAziem
author_sort Khan, Shoaib
collection PubMed
description Amylase and glucosidase enzymes are the primary harmful source in the development of the chronic condition known as diabetes mellitus. The main function of these enzymes is to break the macromolecules into simple sugar units which are directly involved in the solubility of blood, hence increasing blood glucose levels. To overcome this effect, there is a need for a potent and effective inhibitor that inhibits the conversion of macromolecules of sugar into its smaller units. In this regard, we synthesized thiazolidinone-based indole derivatives (1–20). The synthesized derivatives were evaluated for α-amylase and α-glucosidase inhibitory activity. Different substituted derivatives were found with moderate to good potentials having IC(50) values ranging, for α-amylase, from 1.50 ± 0.05 to 29.60 ± 0.40 μM and, for α-glucosidase, from IC(50) = 2.40 ± 0.10 to 31.50 ± 0.50 μM. Among the varied substituted compounds, the most active analogs four (1.80 ± 0.70 and 2.70 ± 0.70), five (1.50 ± 0.05 and 2.40 ± 0.10, respectively) of the series showed few folds better inhibitory activity than standard drug acarbose (IC(50) = 10.20 ± 0.10 and 11.70 ± 0.10 μM, respectively). Moreover, structure–activity relationship (SAR) was established and binding interactions were analyzed for ligands and proteins (α-amylase and α-glucosidase) through a molecular docking study.
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spelling pubmed-95717112022-10-17 New Biologically Hybrid Pharmacophore Thiazolidinone-Based Indole Derivatives: Synthesis, In Vitro Alpha-Amylase and Alpha-Glucosidase along with Molecular Docking Investigations Khan, Shoaib Iqbal, Shahid Rahim, Fazal Shah, Mazloom Hussain, Rafaqat Alrbyawi, Hamad Rehman, Wajid Dera, Ayed A. Rasheed, Liaqat Somaily, H. H. Pashameah, Rami Adel Alzahrani, Eman Farouk, Abd-ElAziem Molecules Article Amylase and glucosidase enzymes are the primary harmful source in the development of the chronic condition known as diabetes mellitus. The main function of these enzymes is to break the macromolecules into simple sugar units which are directly involved in the solubility of blood, hence increasing blood glucose levels. To overcome this effect, there is a need for a potent and effective inhibitor that inhibits the conversion of macromolecules of sugar into its smaller units. In this regard, we synthesized thiazolidinone-based indole derivatives (1–20). The synthesized derivatives were evaluated for α-amylase and α-glucosidase inhibitory activity. Different substituted derivatives were found with moderate to good potentials having IC(50) values ranging, for α-amylase, from 1.50 ± 0.05 to 29.60 ± 0.40 μM and, for α-glucosidase, from IC(50) = 2.40 ± 0.10 to 31.50 ± 0.50 μM. Among the varied substituted compounds, the most active analogs four (1.80 ± 0.70 and 2.70 ± 0.70), five (1.50 ± 0.05 and 2.40 ± 0.10, respectively) of the series showed few folds better inhibitory activity than standard drug acarbose (IC(50) = 10.20 ± 0.10 and 11.70 ± 0.10 μM, respectively). Moreover, structure–activity relationship (SAR) was established and binding interactions were analyzed for ligands and proteins (α-amylase and α-glucosidase) through a molecular docking study. MDPI 2022-10-04 /pmc/articles/PMC9571711/ /pubmed/36235098 http://dx.doi.org/10.3390/molecules27196564 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
Khan, Shoaib
Iqbal, Shahid
Rahim, Fazal
Shah, Mazloom
Hussain, Rafaqat
Alrbyawi, Hamad
Rehman, Wajid
Dera, Ayed A.
Rasheed, Liaqat
Somaily, H. H.
Pashameah, Rami Adel
Alzahrani, Eman
Farouk, Abd-ElAziem
New Biologically Hybrid Pharmacophore Thiazolidinone-Based Indole Derivatives: Synthesis, In Vitro Alpha-Amylase and Alpha-Glucosidase along with Molecular Docking Investigations
title New Biologically Hybrid Pharmacophore Thiazolidinone-Based Indole Derivatives: Synthesis, In Vitro Alpha-Amylase and Alpha-Glucosidase along with Molecular Docking Investigations
title_full New Biologically Hybrid Pharmacophore Thiazolidinone-Based Indole Derivatives: Synthesis, In Vitro Alpha-Amylase and Alpha-Glucosidase along with Molecular Docking Investigations
title_fullStr New Biologically Hybrid Pharmacophore Thiazolidinone-Based Indole Derivatives: Synthesis, In Vitro Alpha-Amylase and Alpha-Glucosidase along with Molecular Docking Investigations
title_full_unstemmed New Biologically Hybrid Pharmacophore Thiazolidinone-Based Indole Derivatives: Synthesis, In Vitro Alpha-Amylase and Alpha-Glucosidase along with Molecular Docking Investigations
title_short New Biologically Hybrid Pharmacophore Thiazolidinone-Based Indole Derivatives: Synthesis, In Vitro Alpha-Amylase and Alpha-Glucosidase along with Molecular Docking Investigations
title_sort new biologically hybrid pharmacophore thiazolidinone-based indole derivatives: synthesis, in vitro alpha-amylase and alpha-glucosidase along with molecular docking investigations
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9571711/
https://www.ncbi.nlm.nih.gov/pubmed/36235098
http://dx.doi.org/10.3390/molecules27196564
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