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Convergent synthesis, kinetics insight and allosteric computational ascriptions of thiazole-(5-aryl)oxadiazole hybrids embraced with propanamides as alkaline phosphatase inhibitors

Considering the varied pharmacological prominence of thiazole and oxadiazole heterocyclic moieties, a unique series of bi-heterocyclic hybrids, 8a–h, was synthesized in a convergent manner. The structures of newly synthesized compounds were characterized by (1)H-NMR, (13)C-NMR, and IR spectral studi...

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Autores principales: Butt, Abdul Rehman Sadiq, Abbasi, Muhammad Athar, Aziz-ur-Rehman, Siddiqui, Sabahat Zahra, Muhammad, Shabbir, Raza, Hussain, Shah, Syed Adnan Ali, Shahid, Muhammad, Alsehemi, Abdullah G., Kim, Song Ja
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/PMC10184136/
https://www.ncbi.nlm.nih.gov/pubmed/37197574
http://dx.doi.org/10.1039/d3ra01348k
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author Butt, Abdul Rehman Sadiq
Abbasi, Muhammad Athar
Aziz-ur-Rehman,
Siddiqui, Sabahat Zahra
Muhammad, Shabbir
Raza, Hussain
Shah, Syed Adnan Ali
Shahid, Muhammad
Alsehemi, Abdullah G.
Kim, Song Ja
author_facet Butt, Abdul Rehman Sadiq
Abbasi, Muhammad Athar
Aziz-ur-Rehman,
Siddiqui, Sabahat Zahra
Muhammad, Shabbir
Raza, Hussain
Shah, Syed Adnan Ali
Shahid, Muhammad
Alsehemi, Abdullah G.
Kim, Song Ja
author_sort Butt, Abdul Rehman Sadiq
collection PubMed
description Considering the varied pharmacological prominence of thiazole and oxadiazole heterocyclic moieties, a unique series of bi-heterocyclic hybrids, 8a–h, was synthesized in a convergent manner. The structures of newly synthesized compounds were characterized by (1)H-NMR, (13)C-NMR, and IR spectral studies. The structure–activity relationship of these compounds was predicted by examining their inhibitory effects against alkaline phosphatase, whereby all these molecules exhibited superb inhibitory potentials relative to the standard used. The kinetics mechanism was determined by Lineweaver–Burk plots which revealed that 8g inhibited the studied enzyme non-competitively by forming an enzyme-inhibitor complex. The inhibition constant K(i) calculated from Dixon plots for this compound was 0.42 μM. The allosteric computational study was coherent with the experimental records and these ligands exhibited good binding energy values (kcal mol(−1)). The hemolytic analysis revealed their mild cytotoxicity towards red blood cell membranes and hence, these molecules have potential to be nontoxic medicinal scaffolds for the treatment of alkaline phosphate-associated ailments.
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spelling pubmed-101841362023-05-16 Convergent synthesis, kinetics insight and allosteric computational ascriptions of thiazole-(5-aryl)oxadiazole hybrids embraced with propanamides as alkaline phosphatase inhibitors Butt, Abdul Rehman Sadiq Abbasi, Muhammad Athar Aziz-ur-Rehman, Siddiqui, Sabahat Zahra Muhammad, Shabbir Raza, Hussain Shah, Syed Adnan Ali Shahid, Muhammad Alsehemi, Abdullah G. Kim, Song Ja RSC Adv Chemistry Considering the varied pharmacological prominence of thiazole and oxadiazole heterocyclic moieties, a unique series of bi-heterocyclic hybrids, 8a–h, was synthesized in a convergent manner. The structures of newly synthesized compounds were characterized by (1)H-NMR, (13)C-NMR, and IR spectral studies. The structure–activity relationship of these compounds was predicted by examining their inhibitory effects against alkaline phosphatase, whereby all these molecules exhibited superb inhibitory potentials relative to the standard used. The kinetics mechanism was determined by Lineweaver–Burk plots which revealed that 8g inhibited the studied enzyme non-competitively by forming an enzyme-inhibitor complex. The inhibition constant K(i) calculated from Dixon plots for this compound was 0.42 μM. The allosteric computational study was coherent with the experimental records and these ligands exhibited good binding energy values (kcal mol(−1)). The hemolytic analysis revealed their mild cytotoxicity towards red blood cell membranes and hence, these molecules have potential to be nontoxic medicinal scaffolds for the treatment of alkaline phosphate-associated ailments. The Royal Society of Chemistry 2023-05-15 /pmc/articles/PMC10184136/ /pubmed/37197574 http://dx.doi.org/10.1039/d3ra01348k Text en This journal is © The Royal Society of Chemistry https://creativecommons.org/licenses/by-nc/3.0/
spellingShingle Chemistry
Butt, Abdul Rehman Sadiq
Abbasi, Muhammad Athar
Aziz-ur-Rehman,
Siddiqui, Sabahat Zahra
Muhammad, Shabbir
Raza, Hussain
Shah, Syed Adnan Ali
Shahid, Muhammad
Alsehemi, Abdullah G.
Kim, Song Ja
Convergent synthesis, kinetics insight and allosteric computational ascriptions of thiazole-(5-aryl)oxadiazole hybrids embraced with propanamides as alkaline phosphatase inhibitors
title Convergent synthesis, kinetics insight and allosteric computational ascriptions of thiazole-(5-aryl)oxadiazole hybrids embraced with propanamides as alkaline phosphatase inhibitors
title_full Convergent synthesis, kinetics insight and allosteric computational ascriptions of thiazole-(5-aryl)oxadiazole hybrids embraced with propanamides as alkaline phosphatase inhibitors
title_fullStr Convergent synthesis, kinetics insight and allosteric computational ascriptions of thiazole-(5-aryl)oxadiazole hybrids embraced with propanamides as alkaline phosphatase inhibitors
title_full_unstemmed Convergent synthesis, kinetics insight and allosteric computational ascriptions of thiazole-(5-aryl)oxadiazole hybrids embraced with propanamides as alkaline phosphatase inhibitors
title_short Convergent synthesis, kinetics insight and allosteric computational ascriptions of thiazole-(5-aryl)oxadiazole hybrids embraced with propanamides as alkaline phosphatase inhibitors
title_sort convergent synthesis, kinetics insight and allosteric computational ascriptions of thiazole-(5-aryl)oxadiazole hybrids embraced with propanamides as alkaline phosphatase inhibitors
topic Chemistry
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10184136/
https://www.ncbi.nlm.nih.gov/pubmed/37197574
http://dx.doi.org/10.1039/d3ra01348k
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