Pyridylpiperazine-based carbodithioates as urease inhibitors: synthesis and biological evaluation

The urease enzyme is recognized as a valuable therapeutic agent for treating the virulent Helicobacter pylori bacterium because of its pivotal role in aiding the colonization and growth of the bacterium within the gastric mucosa. In order to control the harmful consequences of bacterial infections,...

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Published in:FRONTIERS IN CHEMISTRY
Main Authors: Akash, Muhammad; Rana, Nehal; Aslam, Sana; Ahmad, Matloob; Saif, Muhammad Jawwad; Asghar, Aneeza; Sultan, Sadia; Al-Hussain, Sami A.; Liaqat, Afifa; Zaib, Sumera; Zaki, Magdi E. A.
Format: Article
Language:English
Published: FRONTIERS MEDIA SA 2024
Subjects:
Online Access:https://www-webofscience-com.uitm.idm.oclc.org/wos/woscc/full-record/WOS:001293242700001
author Akash
Muhammad; Rana
Nehal; Aslam
Sana; Ahmad
Matloob; Saif
Muhammad Jawwad; Asghar
Aneeza; Sultan
Sadia; Al-Hussain
Sami A.; Liaqat
Afifa; Zaib
Sumera; Zaki
Magdi E. A.
spellingShingle Akash
Muhammad; Rana
Nehal; Aslam
Sana; Ahmad
Matloob; Saif
Muhammad Jawwad; Asghar
Aneeza; Sultan
Sadia; Al-Hussain
Sami A.; Liaqat
Afifa; Zaib
Sumera; Zaki
Magdi E. A.
Pyridylpiperazine-based carbodithioates as urease inhibitors: synthesis and biological evaluation
Chemistry
author_facet Akash
Muhammad; Rana
Nehal; Aslam
Sana; Ahmad
Matloob; Saif
Muhammad Jawwad; Asghar
Aneeza; Sultan
Sadia; Al-Hussain
Sami A.; Liaqat
Afifa; Zaib
Sumera; Zaki
Magdi E. A.
author_sort Akash
spelling Akash, Muhammad; Rana, Nehal; Aslam, Sana; Ahmad, Matloob; Saif, Muhammad Jawwad; Asghar, Aneeza; Sultan, Sadia; Al-Hussain, Sami A.; Liaqat, Afifa; Zaib, Sumera; Zaki, Magdi E. A.
Pyridylpiperazine-based carbodithioates as urease inhibitors: synthesis and biological evaluation
FRONTIERS IN CHEMISTRY
English
Article
The urease enzyme is recognized as a valuable therapeutic agent for treating the virulent Helicobacter pylori bacterium because of its pivotal role in aiding the colonization and growth of the bacterium within the gastric mucosa. In order to control the harmful consequences of bacterial infections, urease inhibition presents itself as a promising and effective approach. The current research aimed to synthesize pyridylpiperazine-based carbodithioate derivatives 5a-5n and 7a-7n that could serve as potential drug candidates for preventing bacterial infections through urease inhibition. The synthesized carbodithioate derivatives 5a-5n and 7a-7n were explored to assess their ability to inhibit the urease enzyme after their structural explication by gas chromatography-mass spectrometry (GC-MS). In the in vitro evaluation with thiourea as a standard drug, it was observed that all the synthesized compounds exhibited significant inhibitory activity compared to the reference drug. Among the compounds tested, 5j (bearing an o-tolyl moiety) emerged as the most effective inhibitor, displaying strong urease inhibition with an IC50 value of 5.16 +/- 2.68 mu M. This IC50 value is notably lower than that of thiourea (23 +/- 0.03 mu M), indicating the significantly most potent potential of inhibition. In molecular docking of 5j within the active site of urease, numerous noteworthy interactions were identified.
FRONTIERS MEDIA SA
2296-2646

2024
12

10.3389/fchem.2024.1423385
Chemistry
Green Published, gold
WOS:001293242700001
https://www-webofscience-com.uitm.idm.oclc.org/wos/woscc/full-record/WOS:001293242700001
title Pyridylpiperazine-based carbodithioates as urease inhibitors: synthesis and biological evaluation
title_short Pyridylpiperazine-based carbodithioates as urease inhibitors: synthesis and biological evaluation
title_full Pyridylpiperazine-based carbodithioates as urease inhibitors: synthesis and biological evaluation
title_fullStr Pyridylpiperazine-based carbodithioates as urease inhibitors: synthesis and biological evaluation
title_full_unstemmed Pyridylpiperazine-based carbodithioates as urease inhibitors: synthesis and biological evaluation
title_sort Pyridylpiperazine-based carbodithioates as urease inhibitors: synthesis and biological evaluation
container_title FRONTIERS IN CHEMISTRY
language English
format Article
description The urease enzyme is recognized as a valuable therapeutic agent for treating the virulent Helicobacter pylori bacterium because of its pivotal role in aiding the colonization and growth of the bacterium within the gastric mucosa. In order to control the harmful consequences of bacterial infections, urease inhibition presents itself as a promising and effective approach. The current research aimed to synthesize pyridylpiperazine-based carbodithioate derivatives 5a-5n and 7a-7n that could serve as potential drug candidates for preventing bacterial infections through urease inhibition. The synthesized carbodithioate derivatives 5a-5n and 7a-7n were explored to assess their ability to inhibit the urease enzyme after their structural explication by gas chromatography-mass spectrometry (GC-MS). In the in vitro evaluation with thiourea as a standard drug, it was observed that all the synthesized compounds exhibited significant inhibitory activity compared to the reference drug. Among the compounds tested, 5j (bearing an o-tolyl moiety) emerged as the most effective inhibitor, displaying strong urease inhibition with an IC50 value of 5.16 +/- 2.68 mu M. This IC50 value is notably lower than that of thiourea (23 +/- 0.03 mu M), indicating the significantly most potent potential of inhibition. In molecular docking of 5j within the active site of urease, numerous noteworthy interactions were identified.
publisher FRONTIERS MEDIA SA
issn 2296-2646

publishDate 2024
container_volume 12
container_issue
doi_str_mv 10.3389/fchem.2024.1423385
topic Chemistry
topic_facet Chemistry
accesstype Green Published, gold
id WOS:001293242700001
url https://www-webofscience-com.uitm.idm.oclc.org/wos/woscc/full-record/WOS:001293242700001
record_format wos
collection Web of Science (WoS)
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