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Design and synthesis of novel rigid dibenzo[b,f]azepines through ring closure technique as promising anticancer candidates against leukaemia and acting as selective topoisomerase II inhibitors and DNA intercalators

In this research, two novel series of dibenzo[b,f]azepines (14 candidates) were designed and synthesised based on the rigidification principle and following the reported doxorubicin’s pharmacophoric features. The anti-proliferative activity was evaluated at the NCI against a panel of 60 cancer cell...

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Autores principales: El-Behairy, Mohammed Farrag, Abd-Allah, Walaa Hamada, Khalifa, Mohamed M., Nafie, Mohamed S., Saleh, Mohamed A., Abdel-Maksoud, Mohammed S., Al-Warhi, Tarfah, Eldehna, Wagdy M., Al‐Karmalawy, Ahmed A.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Taylor & Francis 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9848257/
https://www.ncbi.nlm.nih.gov/pubmed/36629421
http://dx.doi.org/10.1080/14756366.2022.2157825
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author El-Behairy, Mohammed Farrag
Abd-Allah, Walaa Hamada
Khalifa, Mohamed M.
Nafie, Mohamed S.
Saleh, Mohamed A.
Abdel-Maksoud, Mohammed S.
Al-Warhi, Tarfah
Eldehna, Wagdy M.
Al‐Karmalawy, Ahmed A.
author_facet El-Behairy, Mohammed Farrag
Abd-Allah, Walaa Hamada
Khalifa, Mohamed M.
Nafie, Mohamed S.
Saleh, Mohamed A.
Abdel-Maksoud, Mohammed S.
Al-Warhi, Tarfah
Eldehna, Wagdy M.
Al‐Karmalawy, Ahmed A.
author_sort El-Behairy, Mohammed Farrag
collection PubMed
description In this research, two novel series of dibenzo[b,f]azepines (14 candidates) were designed and synthesised based on the rigidification principle and following the reported doxorubicin’s pharmacophoric features. The anti-proliferative activity was evaluated at the NCI against a panel of 60 cancer cell lines. Further, the promising candidates (5a–g) were evaluated for their ability to inhibit topoisomerase II, where 5e was noticed to be the most active congener. Moreover, its cytotoxicity was evaluated against leukaemia SR cells. Also, 5e arrested the cell cycle at the G1 phase and increased the apoptosis ratio by 37.34%. Furthermore, in vivo studies of 5e showed the inhibition of tumour proliferation and the decrease in its volume. Histopathology and liver enzymes were examined as well. Besides, molecular docking, physicochemical, and pharmacokinetic properties were carried out. Finally, a SAR study was discussed to open the gate for further optimisation of the most promising candidate (5e). HIGHLIGHTS: Two novel series of dibenzo[b,f]azepines were designed and synthesised based on the rigidification principle in drug design. The anti-proliferative activity was evaluated at the NCI against a panel of 60 cancer cell lines. 5e was the most active anti-topo II congener (IC(50) = 6.36 ± 0.36 µM). 5e was evaluated against leukaemia SR cells and its cytotoxic effect was confirmed (IC(50) = 13.05 ± 0.62 µM). In vivo studies of 5e significantly inhibited tumour proliferation by 62.7% and decreased tumour volume to 30.1 mm(3) compared to doxorubicin treatment.
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spelling pubmed-98482572023-01-19 Design and synthesis of novel rigid dibenzo[b,f]azepines through ring closure technique as promising anticancer candidates against leukaemia and acting as selective topoisomerase II inhibitors and DNA intercalators El-Behairy, Mohammed Farrag Abd-Allah, Walaa Hamada Khalifa, Mohamed M. Nafie, Mohamed S. Saleh, Mohamed A. Abdel-Maksoud, Mohammed S. Al-Warhi, Tarfah Eldehna, Wagdy M. Al‐Karmalawy, Ahmed A. J Enzyme Inhib Med Chem Research Paper In this research, two novel series of dibenzo[b,f]azepines (14 candidates) were designed and synthesised based on the rigidification principle and following the reported doxorubicin’s pharmacophoric features. The anti-proliferative activity was evaluated at the NCI against a panel of 60 cancer cell lines. Further, the promising candidates (5a–g) were evaluated for their ability to inhibit topoisomerase II, where 5e was noticed to be the most active congener. Moreover, its cytotoxicity was evaluated against leukaemia SR cells. Also, 5e arrested the cell cycle at the G1 phase and increased the apoptosis ratio by 37.34%. Furthermore, in vivo studies of 5e showed the inhibition of tumour proliferation and the decrease in its volume. Histopathology and liver enzymes were examined as well. Besides, molecular docking, physicochemical, and pharmacokinetic properties were carried out. Finally, a SAR study was discussed to open the gate for further optimisation of the most promising candidate (5e). HIGHLIGHTS: Two novel series of dibenzo[b,f]azepines were designed and synthesised based on the rigidification principle in drug design. The anti-proliferative activity was evaluated at the NCI against a panel of 60 cancer cell lines. 5e was the most active anti-topo II congener (IC(50) = 6.36 ± 0.36 µM). 5e was evaluated against leukaemia SR cells and its cytotoxic effect was confirmed (IC(50) = 13.05 ± 0.62 µM). In vivo studies of 5e significantly inhibited tumour proliferation by 62.7% and decreased tumour volume to 30.1 mm(3) compared to doxorubicin treatment. Taylor & Francis 2023-01-11 /pmc/articles/PMC9848257/ /pubmed/36629421 http://dx.doi.org/10.1080/14756366.2022.2157825 Text en © 2023 The Author(s). Published by Informa UK Limited, trading as Taylor & Francis Group. https://creativecommons.org/licenses/by/4.0/This is an Open Access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/4.0/ (https://creativecommons.org/licenses/by/4.0/) ), which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Research Paper
El-Behairy, Mohammed Farrag
Abd-Allah, Walaa Hamada
Khalifa, Mohamed M.
Nafie, Mohamed S.
Saleh, Mohamed A.
Abdel-Maksoud, Mohammed S.
Al-Warhi, Tarfah
Eldehna, Wagdy M.
Al‐Karmalawy, Ahmed A.
Design and synthesis of novel rigid dibenzo[b,f]azepines through ring closure technique as promising anticancer candidates against leukaemia and acting as selective topoisomerase II inhibitors and DNA intercalators
title Design and synthesis of novel rigid dibenzo[b,f]azepines through ring closure technique as promising anticancer candidates against leukaemia and acting as selective topoisomerase II inhibitors and DNA intercalators
title_full Design and synthesis of novel rigid dibenzo[b,f]azepines through ring closure technique as promising anticancer candidates against leukaemia and acting as selective topoisomerase II inhibitors and DNA intercalators
title_fullStr Design and synthesis of novel rigid dibenzo[b,f]azepines through ring closure technique as promising anticancer candidates against leukaemia and acting as selective topoisomerase II inhibitors and DNA intercalators
title_full_unstemmed Design and synthesis of novel rigid dibenzo[b,f]azepines through ring closure technique as promising anticancer candidates against leukaemia and acting as selective topoisomerase II inhibitors and DNA intercalators
title_short Design and synthesis of novel rigid dibenzo[b,f]azepines through ring closure technique as promising anticancer candidates against leukaemia and acting as selective topoisomerase II inhibitors and DNA intercalators
title_sort design and synthesis of novel rigid dibenzo[b,f]azepines through ring closure technique as promising anticancer candidates against leukaemia and acting as selective topoisomerase ii inhibitors and dna intercalators
topic Research Paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9848257/
https://www.ncbi.nlm.nih.gov/pubmed/36629421
http://dx.doi.org/10.1080/14756366.2022.2157825
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