Cargando…

Tail-approach based design, synthesis, and cytotoxic evaluation of novel disubstituted and trisubstituted 1,3-thiazole benzenesulfonamide derivatives with suggested carbonic anhydrase IX inhibition mechanism

A novel series of 2,4,5- and 2,3,4-trisubstituted thiazole hybrids with 1,3,4-thiadiazolylbenzenesulfonamide was designed following the tail approach as possible hCAIX inhibitors. The key intermediate 1 was condensed with thiosemicarbazide 2a to give 1,3,4-thiadiazolylthiosemicarbazone 3, which upon...

Descripción completa

Detalles Bibliográficos
Autores principales: Bondock, Samir, Albarqi, Tallah, Abboud, Mohamed, Nasr, Tamer, Mohamed, Nada M., Abdou, Moaz M.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: The Royal Society of Chemistry 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10413337/
https://www.ncbi.nlm.nih.gov/pubmed/37577088
http://dx.doi.org/10.1039/d3ra02528d
_version_ 1785087107774021632
author Bondock, Samir
Albarqi, Tallah
Abboud, Mohamed
Nasr, Tamer
Mohamed, Nada M.
Abdou, Moaz M.
author_facet Bondock, Samir
Albarqi, Tallah
Abboud, Mohamed
Nasr, Tamer
Mohamed, Nada M.
Abdou, Moaz M.
author_sort Bondock, Samir
collection PubMed
description A novel series of 2,4,5- and 2,3,4-trisubstituted thiazole hybrids with 1,3,4-thiadiazolylbenzenesulfonamide was designed following the tail approach as possible hCAIX inhibitors. The key intermediate 1 was condensed with thiosemicarbazide 2a to give 1,3,4-thiadiazolylthiosemicarbazone 3, which upon hetero-cyclization with substituted α-haloketones and esters afforded 2,4,5-trisubstituted thiazole-1,3,4-thiadiazole conjugates 4–8. Furthermore, the trisubstituted thiazole-1,3,4-thiadiazole hybrids 12a–d were synthesized via the regioselective cyclization of 4-substituted-1,3,4-thiadiazolylthiosemicarbazones with phenacyl bromide. The cyclized 2,4-disubstituted thiazole 4 enhanced cytotoxicity by nine, four and two times against HepG-2, Caco2, and MCF-7, respectively. Moreover, the simple methyl substitution on the thiosemicarbazone terminus 9a improved the parent derivative 3 cytotoxicity by nine, fourteen, and six times against HepG-2, Caco2, and MCF-7, respectively. This astonishing cytotoxicity was elaborated with hCAIX molecular docking simulation of 4, 9a, and 12d demonstrating binding to zinc and its catalytic His94. Furthermore, molecular dynamic simulation 9a revealed stable hydrogen bonding with hCAIX with interaction energy of −61.07 kcal mol(−1) and ΔG(binding) MM-PBSA of −9.6 kcal mol(−1).
format Online
Article
Text
id pubmed-10413337
institution National Center for Biotechnology Information
language English
publishDate 2023
publisher The Royal Society of Chemistry
record_format MEDLINE/PubMed
spelling pubmed-104133372023-08-11 Tail-approach based design, synthesis, and cytotoxic evaluation of novel disubstituted and trisubstituted 1,3-thiazole benzenesulfonamide derivatives with suggested carbonic anhydrase IX inhibition mechanism Bondock, Samir Albarqi, Tallah Abboud, Mohamed Nasr, Tamer Mohamed, Nada M. Abdou, Moaz M. RSC Adv Chemistry A novel series of 2,4,5- and 2,3,4-trisubstituted thiazole hybrids with 1,3,4-thiadiazolylbenzenesulfonamide was designed following the tail approach as possible hCAIX inhibitors. The key intermediate 1 was condensed with thiosemicarbazide 2a to give 1,3,4-thiadiazolylthiosemicarbazone 3, which upon hetero-cyclization with substituted α-haloketones and esters afforded 2,4,5-trisubstituted thiazole-1,3,4-thiadiazole conjugates 4–8. Furthermore, the trisubstituted thiazole-1,3,4-thiadiazole hybrids 12a–d were synthesized via the regioselective cyclization of 4-substituted-1,3,4-thiadiazolylthiosemicarbazones with phenacyl bromide. The cyclized 2,4-disubstituted thiazole 4 enhanced cytotoxicity by nine, four and two times against HepG-2, Caco2, and MCF-7, respectively. Moreover, the simple methyl substitution on the thiosemicarbazone terminus 9a improved the parent derivative 3 cytotoxicity by nine, fourteen, and six times against HepG-2, Caco2, and MCF-7, respectively. This astonishing cytotoxicity was elaborated with hCAIX molecular docking simulation of 4, 9a, and 12d demonstrating binding to zinc and its catalytic His94. Furthermore, molecular dynamic simulation 9a revealed stable hydrogen bonding with hCAIX with interaction energy of −61.07 kcal mol(−1) and ΔG(binding) MM-PBSA of −9.6 kcal mol(−1). The Royal Society of Chemistry 2023-08-10 /pmc/articles/PMC10413337/ /pubmed/37577088 http://dx.doi.org/10.1039/d3ra02528d Text en This journal is © The Royal Society of Chemistry https://creativecommons.org/licenses/by-nc/3.0/
spellingShingle Chemistry
Bondock, Samir
Albarqi, Tallah
Abboud, Mohamed
Nasr, Tamer
Mohamed, Nada M.
Abdou, Moaz M.
Tail-approach based design, synthesis, and cytotoxic evaluation of novel disubstituted and trisubstituted 1,3-thiazole benzenesulfonamide derivatives with suggested carbonic anhydrase IX inhibition mechanism
title Tail-approach based design, synthesis, and cytotoxic evaluation of novel disubstituted and trisubstituted 1,3-thiazole benzenesulfonamide derivatives with suggested carbonic anhydrase IX inhibition mechanism
title_full Tail-approach based design, synthesis, and cytotoxic evaluation of novel disubstituted and trisubstituted 1,3-thiazole benzenesulfonamide derivatives with suggested carbonic anhydrase IX inhibition mechanism
title_fullStr Tail-approach based design, synthesis, and cytotoxic evaluation of novel disubstituted and trisubstituted 1,3-thiazole benzenesulfonamide derivatives with suggested carbonic anhydrase IX inhibition mechanism
title_full_unstemmed Tail-approach based design, synthesis, and cytotoxic evaluation of novel disubstituted and trisubstituted 1,3-thiazole benzenesulfonamide derivatives with suggested carbonic anhydrase IX inhibition mechanism
title_short Tail-approach based design, synthesis, and cytotoxic evaluation of novel disubstituted and trisubstituted 1,3-thiazole benzenesulfonamide derivatives with suggested carbonic anhydrase IX inhibition mechanism
title_sort tail-approach based design, synthesis, and cytotoxic evaluation of novel disubstituted and trisubstituted 1,3-thiazole benzenesulfonamide derivatives with suggested carbonic anhydrase ix inhibition mechanism
topic Chemistry
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10413337/
https://www.ncbi.nlm.nih.gov/pubmed/37577088
http://dx.doi.org/10.1039/d3ra02528d
work_keys_str_mv AT bondocksamir tailapproachbaseddesignsynthesisandcytotoxicevaluationofnoveldisubstitutedandtrisubstituted13thiazolebenzenesulfonamidederivativeswithsuggestedcarbonicanhydraseixinhibitionmechanism
AT albarqitallah tailapproachbaseddesignsynthesisandcytotoxicevaluationofnoveldisubstitutedandtrisubstituted13thiazolebenzenesulfonamidederivativeswithsuggestedcarbonicanhydraseixinhibitionmechanism
AT abboudmohamed tailapproachbaseddesignsynthesisandcytotoxicevaluationofnoveldisubstitutedandtrisubstituted13thiazolebenzenesulfonamidederivativeswithsuggestedcarbonicanhydraseixinhibitionmechanism
AT nasrtamer tailapproachbaseddesignsynthesisandcytotoxicevaluationofnoveldisubstitutedandtrisubstituted13thiazolebenzenesulfonamidederivativeswithsuggestedcarbonicanhydraseixinhibitionmechanism
AT mohamednadam tailapproachbaseddesignsynthesisandcytotoxicevaluationofnoveldisubstitutedandtrisubstituted13thiazolebenzenesulfonamidederivativeswithsuggestedcarbonicanhydraseixinhibitionmechanism
AT abdoumoazm tailapproachbaseddesignsynthesisandcytotoxicevaluationofnoveldisubstitutedandtrisubstituted13thiazolebenzenesulfonamidederivativeswithsuggestedcarbonicanhydraseixinhibitionmechanism