Synthesis, In Vitro Enzymatic Inhibition, and Molecular Modeling of Novel Piperazine-Based Bis-Schiff Base Derivatives as Promising Anti-urease Agents
The current study was aimed to synthesize piperazine-based bis-Schiff base derivatives (1-15) and were also screened in vitro for their inhibition against urease enzyme under the positive control of thiourea drug (IC50 value of 36.40 +/- 2.35 mu M). Among the tested analogs, the maximum potency was...
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Main Authors: | , , , , , , , , , , , |
Format: | Article |
Language: | English |
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WILEY-V C H VERLAG GMBH
2024
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Online Access: | https://www-webofscience-com.uitm.idm.oclc.org/wos/woscc/full-record/WOS:001292248200001 |
author |
Masood Najat; Hussain Rafaqat; Khan Shoaib; Rahim Fazal; Mumtaz Sundas; Taha Muhammad; Abid Obaid Ur Rahman; Iqbal Tayyiaba; Shah Syed Adnan Ali; Al Wesabi Esam Omar; Magam Seami M. |
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spellingShingle |
Masood Najat; Hussain Rafaqat; Khan Shoaib; Rahim Fazal; Mumtaz Sundas; Taha Muhammad; Abid Obaid Ur Rahman; Iqbal Tayyiaba; Shah Syed Adnan Ali; Al Wesabi Esam Omar; Magam Seami M. Synthesis, In Vitro Enzymatic Inhibition, and Molecular Modeling of Novel Piperazine-Based Bis-Schiff Base Derivatives as Promising Anti-urease Agents Chemistry |
author_facet |
Masood Najat; Hussain Rafaqat; Khan Shoaib; Rahim Fazal; Mumtaz Sundas; Taha Muhammad; Abid Obaid Ur Rahman; Iqbal Tayyiaba; Shah Syed Adnan Ali; Al Wesabi Esam Omar; Magam Seami M. |
author_sort |
Masood |
spelling |
Masood, Najat; Hussain, Rafaqat; Khan, Shoaib; Rahim, Fazal; Mumtaz, Sundas; Taha, Muhammad; Abid, Obaid Ur Rahman; Iqbal, Tayyiaba; Shah, Syed Adnan Ali; Al Wesabi, Esam Omar; Magam, Seami M. Synthesis, In Vitro Enzymatic Inhibition, and Molecular Modeling of Novel Piperazine-Based Bis-Schiff Base Derivatives as Promising Anti-urease Agents CHEMISTRYSELECT English Article The current study was aimed to synthesize piperazine-based bis-Schiff base derivatives (1-15) and were also screened in vitro for their inhibition against urease enzyme under the positive control of thiourea drug (IC50 value of 36.40 +/- 2.35 mu M). Among the tested analogs, the maximum potency was shown by analog 2 with the lowest IC50 value of 2.10 +/- 1.10 mu M, whereas the minimum activity was demonstrated by the scaffold 5 having an IC50 value of 49.60 +/- 6.10 mu M. The experimental results of urease activity prompted us to investigate and propose a possible mechanism of how actives analogs of piperazine derivatives will interacts with the catalytic sites of targeted urease enzymes. For this purpose, molecular docking with Auto Dock Vina gave us an insight into the binding interactions of the active compounds to different amino acid residues of the targeted urease enzyme. WILEY-V C H VERLAG GMBH 2365-6549 2024 9 31 10.1002/slct.202401106 Chemistry WOS:001292248200001 https://www-webofscience-com.uitm.idm.oclc.org/wos/woscc/full-record/WOS:001292248200001 |
title |
Synthesis, In Vitro Enzymatic Inhibition, and Molecular Modeling of Novel Piperazine-Based Bis-Schiff Base Derivatives as Promising Anti-urease Agents |
title_short |
Synthesis, In Vitro Enzymatic Inhibition, and Molecular Modeling of Novel Piperazine-Based Bis-Schiff Base Derivatives as Promising Anti-urease Agents |
title_full |
Synthesis, In Vitro Enzymatic Inhibition, and Molecular Modeling of Novel Piperazine-Based Bis-Schiff Base Derivatives as Promising Anti-urease Agents |
title_fullStr |
Synthesis, In Vitro Enzymatic Inhibition, and Molecular Modeling of Novel Piperazine-Based Bis-Schiff Base Derivatives as Promising Anti-urease Agents |
title_full_unstemmed |
Synthesis, In Vitro Enzymatic Inhibition, and Molecular Modeling of Novel Piperazine-Based Bis-Schiff Base Derivatives as Promising Anti-urease Agents |
title_sort |
Synthesis, In Vitro Enzymatic Inhibition, and Molecular Modeling of Novel Piperazine-Based Bis-Schiff Base Derivatives as Promising Anti-urease Agents |
container_title |
CHEMISTRYSELECT |
language |
English |
format |
Article |
description |
The current study was aimed to synthesize piperazine-based bis-Schiff base derivatives (1-15) and were also screened in vitro for their inhibition against urease enzyme under the positive control of thiourea drug (IC50 value of 36.40 +/- 2.35 mu M). Among the tested analogs, the maximum potency was shown by analog 2 with the lowest IC50 value of 2.10 +/- 1.10 mu M, whereas the minimum activity was demonstrated by the scaffold 5 having an IC50 value of 49.60 +/- 6.10 mu M. The experimental results of urease activity prompted us to investigate and propose a possible mechanism of how actives analogs of piperazine derivatives will interacts with the catalytic sites of targeted urease enzymes. For this purpose, molecular docking with Auto Dock Vina gave us an insight into the binding interactions of the active compounds to different amino acid residues of the targeted urease enzyme. |
publisher |
WILEY-V C H VERLAG GMBH |
issn |
2365-6549 |
publishDate |
2024 |
container_volume |
9 |
container_issue |
31 |
doi_str_mv |
10.1002/slct.202401106 |
topic |
Chemistry |
topic_facet |
Chemistry |
accesstype |
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id |
WOS:001292248200001 |
url |
https://www-webofscience-com.uitm.idm.oclc.org/wos/woscc/full-record/WOS:001292248200001 |
record_format |
wos |
collection |
Web of Science (WoS) |
_version_ |
1809679298127200256 |