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Investigation of novel bis-thiadiazole bearing schiff base derivatives as effective inhibitors of thymidine phosphorylase: Synthesis, in vitro bioactivity and molecular docking study

Thymidine phosphorylase (TP) is an angiogenic enzyme. It is crucial for the development, invasion and metastasis of tumors as well as angiogenesis. In our current research, we examine how structurally changing bis-thiadiazole bearing bis-schiff bases affects their ability to inhibit TP. Through the...

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Autores principales: Hussain, Rafaqat, Rehman, Wajid, Khan, Shoaib, Jaber, Fadi, Rahim, Fazal, Shah, Mazloom, Khan, Yousaf, Iqbal, Shahid, Naz, Haseena, Khan, Imran, Issa Alahmdi, Mohammed, Awwad, Nasser S., Ibrahium, Hala A.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Elsevier 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10641276/
https://www.ncbi.nlm.nih.gov/pubmed/37965293
http://dx.doi.org/10.1016/j.jsps.2023.101823
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author Hussain, Rafaqat
Rehman, Wajid
Khan, Shoaib
Jaber, Fadi
Rahim, Fazal
Shah, Mazloom
Khan, Yousaf
Iqbal, Shahid
Naz, Haseena
Khan, Imran
Issa Alahmdi, Mohammed
Awwad, Nasser S.
Ibrahium, Hala A.
author_facet Hussain, Rafaqat
Rehman, Wajid
Khan, Shoaib
Jaber, Fadi
Rahim, Fazal
Shah, Mazloom
Khan, Yousaf
Iqbal, Shahid
Naz, Haseena
Khan, Imran
Issa Alahmdi, Mohammed
Awwad, Nasser S.
Ibrahium, Hala A.
author_sort Hussain, Rafaqat
collection PubMed
description Thymidine phosphorylase (TP) is an angiogenic enzyme. It is crucial for the development, invasion and metastasis of tumors as well as angiogenesis. In our current research, we examine how structurally changing bis-thiadiazole bearing bis-schiff bases affects their ability to inhibit TP. Through the oxidative cyclization of pyridine-based bis-thiosemicarbazone with iodine, a series of fourteen analogs of bis-thiadiazole-based bis-imines with pyridine moiety were developed. Newly synthesized scaffolds were assessed in vitro for their thymidine phosphorylase inhibitory potential and showed moderate to good inhibition profile. Eleven scaffolds such as 4a-4d,4f-4 h and 4j-4 m were discovered to be more effective than standard drug at inhibiting the thymidine phosphorylase enzyme with IC(50) values of 1.16 ± 1.20, 1.77 ± 1.10, 2.48 ± 1.30, 12.54 ± 1.60, 14.63 ± 1.70, 15.53 ± 1.80, 17.47 ± 1.70, 18.98 ± 1.70, 19.53 ± 1.50, 22.73 ± 2.40 and 24.87 ± 2.80 respectively, while remaining three analogs such as 4n, 4i and 4ewere found to be more potent, but they were less potent than the standard drug. All analogs underwent SAR studies based on the pattern of substitutions around the aryl part of the bis-thiadiazole skeleton. The most active analogs in the synthesized series were then molecular docking study performed to investigate their interactions of active part of enzyme. The results showed that remarkable interactions were exhibited by these analogs with the targeted enzymes active sites. Furthermore, to confirm the structure of synthesized analogs by employing spectroscopic tools such as HREI-MS and NMR.
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spelling pubmed-106412762023-11-14 Investigation of novel bis-thiadiazole bearing schiff base derivatives as effective inhibitors of thymidine phosphorylase: Synthesis, in vitro bioactivity and molecular docking study Hussain, Rafaqat Rehman, Wajid Khan, Shoaib Jaber, Fadi Rahim, Fazal Shah, Mazloom Khan, Yousaf Iqbal, Shahid Naz, Haseena Khan, Imran Issa Alahmdi, Mohammed Awwad, Nasser S. Ibrahium, Hala A. Saudi Pharm J Original Article Thymidine phosphorylase (TP) is an angiogenic enzyme. It is crucial for the development, invasion and metastasis of tumors as well as angiogenesis. In our current research, we examine how structurally changing bis-thiadiazole bearing bis-schiff bases affects their ability to inhibit TP. Through the oxidative cyclization of pyridine-based bis-thiosemicarbazone with iodine, a series of fourteen analogs of bis-thiadiazole-based bis-imines with pyridine moiety were developed. Newly synthesized scaffolds were assessed in vitro for their thymidine phosphorylase inhibitory potential and showed moderate to good inhibition profile. Eleven scaffolds such as 4a-4d,4f-4 h and 4j-4 m were discovered to be more effective than standard drug at inhibiting the thymidine phosphorylase enzyme with IC(50) values of 1.16 ± 1.20, 1.77 ± 1.10, 2.48 ± 1.30, 12.54 ± 1.60, 14.63 ± 1.70, 15.53 ± 1.80, 17.47 ± 1.70, 18.98 ± 1.70, 19.53 ± 1.50, 22.73 ± 2.40 and 24.87 ± 2.80 respectively, while remaining three analogs such as 4n, 4i and 4ewere found to be more potent, but they were less potent than the standard drug. All analogs underwent SAR studies based on the pattern of substitutions around the aryl part of the bis-thiadiazole skeleton. The most active analogs in the synthesized series were then molecular docking study performed to investigate their interactions of active part of enzyme. The results showed that remarkable interactions were exhibited by these analogs with the targeted enzymes active sites. Furthermore, to confirm the structure of synthesized analogs by employing spectroscopic tools such as HREI-MS and NMR. Elsevier 2023-11 2023-10-12 /pmc/articles/PMC10641276/ /pubmed/37965293 http://dx.doi.org/10.1016/j.jsps.2023.101823 Text en © 2023 The Author(s) https://creativecommons.org/licenses/by-nc-nd/4.0/This is an open access article under the CC BY-NC-ND license (http://creativecommons.org/licenses/by-nc-nd/4.0/).
spellingShingle Original Article
Hussain, Rafaqat
Rehman, Wajid
Khan, Shoaib
Jaber, Fadi
Rahim, Fazal
Shah, Mazloom
Khan, Yousaf
Iqbal, Shahid
Naz, Haseena
Khan, Imran
Issa Alahmdi, Mohammed
Awwad, Nasser S.
Ibrahium, Hala A.
Investigation of novel bis-thiadiazole bearing schiff base derivatives as effective inhibitors of thymidine phosphorylase: Synthesis, in vitro bioactivity and molecular docking study
title Investigation of novel bis-thiadiazole bearing schiff base derivatives as effective inhibitors of thymidine phosphorylase: Synthesis, in vitro bioactivity and molecular docking study
title_full Investigation of novel bis-thiadiazole bearing schiff base derivatives as effective inhibitors of thymidine phosphorylase: Synthesis, in vitro bioactivity and molecular docking study
title_fullStr Investigation of novel bis-thiadiazole bearing schiff base derivatives as effective inhibitors of thymidine phosphorylase: Synthesis, in vitro bioactivity and molecular docking study
title_full_unstemmed Investigation of novel bis-thiadiazole bearing schiff base derivatives as effective inhibitors of thymidine phosphorylase: Synthesis, in vitro bioactivity and molecular docking study
title_short Investigation of novel bis-thiadiazole bearing schiff base derivatives as effective inhibitors of thymidine phosphorylase: Synthesis, in vitro bioactivity and molecular docking study
title_sort investigation of novel bis-thiadiazole bearing schiff base derivatives as effective inhibitors of thymidine phosphorylase: synthesis, in vitro bioactivity and molecular docking study
topic Original Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10641276/
https://www.ncbi.nlm.nih.gov/pubmed/37965293
http://dx.doi.org/10.1016/j.jsps.2023.101823
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