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Experimental and Theoretical Biological Probing of Schiff Bases as Esterase Inhibitors: Structural, Spectral and Molecular Insights

The present study was designed to evaluate the in vitro and in silico potential of the Schiff bases (Z)-4-ethoxy-N-((5-nitrothiophen-2-yl)methylene)benzenamine (1) and (Z)-2,4-diiodo-6-((2-methyl-3-nitrophenylimino)methyl)phenol (2). These Schiff bases were synthesized according to a reported method...

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Autores principales: Raza, Muhammad Asam, Mumtaz, Muhammad Waseem, Öztürk, Seyhan, Latif, Muhammad, Aisha, Ashraf, Adnan, Dege, Necmi, Dogan, Onur Erman, Agar, Erbil, Rehman, Shafiq Ur, Noor, Awal
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10419919/
https://www.ncbi.nlm.nih.gov/pubmed/37570673
http://dx.doi.org/10.3390/molecules28155703
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author Raza, Muhammad Asam
Mumtaz, Muhammad Waseem
Öztürk, Seyhan
Latif, Muhammad
Aisha
Ashraf, Adnan
Dege, Necmi
Dogan, Onur Erman
Agar, Erbil
Rehman, Shafiq Ur
Noor, Awal
author_facet Raza, Muhammad Asam
Mumtaz, Muhammad Waseem
Öztürk, Seyhan
Latif, Muhammad
Aisha
Ashraf, Adnan
Dege, Necmi
Dogan, Onur Erman
Agar, Erbil
Rehman, Shafiq Ur
Noor, Awal
author_sort Raza, Muhammad Asam
collection PubMed
description The present study was designed to evaluate the in vitro and in silico potential of the Schiff bases (Z)-4-ethoxy-N-((5-nitrothiophen-2-yl)methylene)benzenamine (1) and (Z)-2,4-diiodo-6-((2-methyl-3-nitrophenylimino)methyl)phenol (2). These Schiff bases were synthesized according to a reported method using ethanol as a solvent, and each reaction was monitored on a TLC until completion of the reaction. The structures of both compounds were elucidated using spectroscopic techniques such as UV–Vis, FTIR, (1)H NMR and (13)C NMR. Molecular structure was determined using single-crystal XRD, which revealed that compounds 1 and 2 were monoclinic and triclinic, respectively. Hirshfeld surface analysis (HS) and 2D fingerprint plots were used to determine the intermolecular interactions along the contact contribution in the crystalline molecules. The structures of both compounds were optimized through a hybrid functional method B3LYP using the 6-31G(d,p) basis set, and various structural parameters were studied. The experimental and theoretical parameters (bond angle and bond length) of the compounds were compared with each other and are in close agreement. The in vitro esterase potential of the synthesized compounds was checked using a spectrophotometric model, while in silico molecular docking studies were performed with AutoDock against two enzymes of the esterase family. The docking studies and the in vitro assessment predicted that such molecules could be used as enzyme inhibitors against the tested enzymes: acetylcholine esterase (AChE) and butyrylcholine esterase (BChE).
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spelling pubmed-104199192023-08-12 Experimental and Theoretical Biological Probing of Schiff Bases as Esterase Inhibitors: Structural, Spectral and Molecular Insights Raza, Muhammad Asam Mumtaz, Muhammad Waseem Öztürk, Seyhan Latif, Muhammad Aisha Ashraf, Adnan Dege, Necmi Dogan, Onur Erman Agar, Erbil Rehman, Shafiq Ur Noor, Awal Molecules Article The present study was designed to evaluate the in vitro and in silico potential of the Schiff bases (Z)-4-ethoxy-N-((5-nitrothiophen-2-yl)methylene)benzenamine (1) and (Z)-2,4-diiodo-6-((2-methyl-3-nitrophenylimino)methyl)phenol (2). These Schiff bases were synthesized according to a reported method using ethanol as a solvent, and each reaction was monitored on a TLC until completion of the reaction. The structures of both compounds were elucidated using spectroscopic techniques such as UV–Vis, FTIR, (1)H NMR and (13)C NMR. Molecular structure was determined using single-crystal XRD, which revealed that compounds 1 and 2 were monoclinic and triclinic, respectively. Hirshfeld surface analysis (HS) and 2D fingerprint plots were used to determine the intermolecular interactions along the contact contribution in the crystalline molecules. The structures of both compounds were optimized through a hybrid functional method B3LYP using the 6-31G(d,p) basis set, and various structural parameters were studied. The experimental and theoretical parameters (bond angle and bond length) of the compounds were compared with each other and are in close agreement. The in vitro esterase potential of the synthesized compounds was checked using a spectrophotometric model, while in silico molecular docking studies were performed with AutoDock against two enzymes of the esterase family. The docking studies and the in vitro assessment predicted that such molecules could be used as enzyme inhibitors against the tested enzymes: acetylcholine esterase (AChE) and butyrylcholine esterase (BChE). MDPI 2023-07-28 /pmc/articles/PMC10419919/ /pubmed/37570673 http://dx.doi.org/10.3390/molecules28155703 Text en © 2023 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
Raza, Muhammad Asam
Mumtaz, Muhammad Waseem
Öztürk, Seyhan
Latif, Muhammad
Aisha
Ashraf, Adnan
Dege, Necmi
Dogan, Onur Erman
Agar, Erbil
Rehman, Shafiq Ur
Noor, Awal
Experimental and Theoretical Biological Probing of Schiff Bases as Esterase Inhibitors: Structural, Spectral and Molecular Insights
title Experimental and Theoretical Biological Probing of Schiff Bases as Esterase Inhibitors: Structural, Spectral and Molecular Insights
title_full Experimental and Theoretical Biological Probing of Schiff Bases as Esterase Inhibitors: Structural, Spectral and Molecular Insights
title_fullStr Experimental and Theoretical Biological Probing of Schiff Bases as Esterase Inhibitors: Structural, Spectral and Molecular Insights
title_full_unstemmed Experimental and Theoretical Biological Probing of Schiff Bases as Esterase Inhibitors: Structural, Spectral and Molecular Insights
title_short Experimental and Theoretical Biological Probing of Schiff Bases as Esterase Inhibitors: Structural, Spectral and Molecular Insights
title_sort experimental and theoretical biological probing of schiff bases as esterase inhibitors: structural, spectral and molecular insights
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10419919/
https://www.ncbi.nlm.nih.gov/pubmed/37570673
http://dx.doi.org/10.3390/molecules28155703
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