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1,5-Benzothiazepine Derivatives: Green Synthesis, In Silico and In Vitro Evaluation as Anticancer Agents
Considering the importance of benzothiazepine pharmacophore, an attempt was carried out to synthesize novel 1,5-benzothiazepine derivatives using polyethylene glycol-400 (PEG-400)-mediated pathways. Initially, different chalcones were synthesized and then subjected to a cyclization step with benzoth...
Autores principales: | , , , , , , , , , , , , , |
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Formato: | Online Artículo Texto |
Lenguaje: | English |
Publicado: |
MDPI
2022
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Materias: | |
Acceso en línea: | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9228089/ https://www.ncbi.nlm.nih.gov/pubmed/35744881 http://dx.doi.org/10.3390/molecules27123757 |
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author | Haroun, Michelyne Chobe, Santosh S. Alavala, Rajasekhar Reddy Mathure, Savita M. Jamullamudi, Risy Namratha Nerkar, Charushila K. Gugulothu, Vijay Kumar Tratrat, Christophe Islam, Mohammed Monirul Venugopala, Katharigatta N. Habeebuddin, Mohammed Telsang, Mallikarjun Sreeharsha, Nagaraja Anwer, Md. Khalid |
author_facet | Haroun, Michelyne Chobe, Santosh S. Alavala, Rajasekhar Reddy Mathure, Savita M. Jamullamudi, Risy Namratha Nerkar, Charushila K. Gugulothu, Vijay Kumar Tratrat, Christophe Islam, Mohammed Monirul Venugopala, Katharigatta N. Habeebuddin, Mohammed Telsang, Mallikarjun Sreeharsha, Nagaraja Anwer, Md. Khalid |
author_sort | Haroun, Michelyne |
collection | PubMed |
description | Considering the importance of benzothiazepine pharmacophore, an attempt was carried out to synthesize novel 1,5-benzothiazepine derivatives using polyethylene glycol-400 (PEG-400)-mediated pathways. Initially, different chalcones were synthesized and then subjected to a cyclization step with benzothiazepine in the presence of bleaching clay and PEG-400. PEG-400-mediated synthesis resulted in a yield of more than 95% in less than an hour of reaction time. Synthesized compounds 2a–2j were investigated for their in vitro cytotoxic activity. Moreover, the same compounds were subjected to systematic in silico screening for the identification of target proteins such as human adenosine kinase, glycogen synthase kinase-3β, and human mitogen-activated protein kinase 1. The compounds showed promising results in cytotoxicity assays; among the tested compounds, 2c showed the most potent cytotoxic activity in the liver cancer cell line Hep G-2, with an IC(50) of 3.29 ± 0.15 µM, whereas the standard drug IC(50) was 4.68 ± 0.17 µM. In the prostate cancer cell line DU-145, the compounds displayed IC(50) ranges of 15.42 ± 0.16 to 41.34 ± 0.12 µM, while the standard drug had an IC(50) of 21.96 ± 0.15 µM. In terms of structural insights, the halogenated phenyl substitution on the second position of benzothiazepine was found to significantly improve the biological activity. This characteristic feature is supported by the binding patterns on the selected target proteins in docking simulations. In this study, 1,5-benzothiazepines have been identified as potential anticancer agents which can be further exploited for the development of more potent derivatives. |
format | Online Article Text |
id | pubmed-9228089 |
institution | National Center for Biotechnology Information |
language | English |
publishDate | 2022 |
publisher | MDPI |
record_format | MEDLINE/PubMed |
spelling | pubmed-92280892022-06-25 1,5-Benzothiazepine Derivatives: Green Synthesis, In Silico and In Vitro Evaluation as Anticancer Agents Haroun, Michelyne Chobe, Santosh S. Alavala, Rajasekhar Reddy Mathure, Savita M. Jamullamudi, Risy Namratha Nerkar, Charushila K. Gugulothu, Vijay Kumar Tratrat, Christophe Islam, Mohammed Monirul Venugopala, Katharigatta N. Habeebuddin, Mohammed Telsang, Mallikarjun Sreeharsha, Nagaraja Anwer, Md. Khalid Molecules Article Considering the importance of benzothiazepine pharmacophore, an attempt was carried out to synthesize novel 1,5-benzothiazepine derivatives using polyethylene glycol-400 (PEG-400)-mediated pathways. Initially, different chalcones were synthesized and then subjected to a cyclization step with benzothiazepine in the presence of bleaching clay and PEG-400. PEG-400-mediated synthesis resulted in a yield of more than 95% in less than an hour of reaction time. Synthesized compounds 2a–2j were investigated for their in vitro cytotoxic activity. Moreover, the same compounds were subjected to systematic in silico screening for the identification of target proteins such as human adenosine kinase, glycogen synthase kinase-3β, and human mitogen-activated protein kinase 1. The compounds showed promising results in cytotoxicity assays; among the tested compounds, 2c showed the most potent cytotoxic activity in the liver cancer cell line Hep G-2, with an IC(50) of 3.29 ± 0.15 µM, whereas the standard drug IC(50) was 4.68 ± 0.17 µM. In the prostate cancer cell line DU-145, the compounds displayed IC(50) ranges of 15.42 ± 0.16 to 41.34 ± 0.12 µM, while the standard drug had an IC(50) of 21.96 ± 0.15 µM. In terms of structural insights, the halogenated phenyl substitution on the second position of benzothiazepine was found to significantly improve the biological activity. This characteristic feature is supported by the binding patterns on the selected target proteins in docking simulations. In this study, 1,5-benzothiazepines have been identified as potential anticancer agents which can be further exploited for the development of more potent derivatives. MDPI 2022-06-10 /pmc/articles/PMC9228089/ /pubmed/35744881 http://dx.doi.org/10.3390/molecules27123757 Text en © 2022 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/). |
spellingShingle | Article Haroun, Michelyne Chobe, Santosh S. Alavala, Rajasekhar Reddy Mathure, Savita M. Jamullamudi, Risy Namratha Nerkar, Charushila K. Gugulothu, Vijay Kumar Tratrat, Christophe Islam, Mohammed Monirul Venugopala, Katharigatta N. Habeebuddin, Mohammed Telsang, Mallikarjun Sreeharsha, Nagaraja Anwer, Md. Khalid 1,5-Benzothiazepine Derivatives: Green Synthesis, In Silico and In Vitro Evaluation as Anticancer Agents |
title | 1,5-Benzothiazepine Derivatives: Green Synthesis, In Silico and In Vitro Evaluation as Anticancer Agents |
title_full | 1,5-Benzothiazepine Derivatives: Green Synthesis, In Silico and In Vitro Evaluation as Anticancer Agents |
title_fullStr | 1,5-Benzothiazepine Derivatives: Green Synthesis, In Silico and In Vitro Evaluation as Anticancer Agents |
title_full_unstemmed | 1,5-Benzothiazepine Derivatives: Green Synthesis, In Silico and In Vitro Evaluation as Anticancer Agents |
title_short | 1,5-Benzothiazepine Derivatives: Green Synthesis, In Silico and In Vitro Evaluation as Anticancer Agents |
title_sort | 1,5-benzothiazepine derivatives: green synthesis, in silico and in vitro evaluation as anticancer agents |
topic | Article |
url | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9228089/ https://www.ncbi.nlm.nih.gov/pubmed/35744881 http://dx.doi.org/10.3390/molecules27123757 |
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