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Synthesis and Cytotoxicity Study of New Cyclopenta [b] quinoline-1,8-dione Derivatives

DNA intercalators belong to aromatic heterocyclic compounds interacting reversibly with DNA. These compounds have been used extremely as cytotoxic agents against cancer. In this study, the synthesis and biological activity of some novel derivatives of cyclopenta [b] quinoline-1, 8-dione as new inter...

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Autores principales: Miri, Ramin, Firuzi, Omidreza, Peymani, Payam, Nazarian, Zohreh, Shafiee, Abbas
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Shaheed Beheshti University of Medical Sciences 2011
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3813038/
https://www.ncbi.nlm.nih.gov/pubmed/24250380
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author Miri, Ramin
Firuzi, Omidreza
Peymani, Payam
Nazarian, Zohreh
Shafiee, Abbas
author_facet Miri, Ramin
Firuzi, Omidreza
Peymani, Payam
Nazarian, Zohreh
Shafiee, Abbas
author_sort Miri, Ramin
collection PubMed
description DNA intercalators belong to aromatic heterocyclic compounds interacting reversibly with DNA. These compounds have been used extremely as cytotoxic agents against cancer. In this study, the synthesis and biological activity of some novel derivatives of cyclopenta [b] quinoline-1, 8-dione as new intercalating agent were investigated. Twenty novel derivatives of cyclopenta [b] quinoline-1, 8-dione were synthesized by molecular condensation of equivalent amount of 3-imino cyclopentanone, corresponding aldehyde and cyclohexane-1, 3-dione. Then, their cytotoxic activity was evaluated against HeLa, LS180, MCF-7 and Raji cancer cell lines by MTT assay. The results of cytotoxic activity evaluation indicate that the most of synthesized compounds show weak cytotoxic effect on the different cell lines (IC(50) of these compounds is higher than 50 or 100 µ ). According to previous studies, in the case of compounds with the weak biological activity, it is more suitable to use IC(15 )and IC(30) instead of IC(50) as the indicator of biological activity. Since most of compounds have weak cytotoxic effect, we also calculated IC(15) and IC(30) for evaluating the cytotoxic activity of synthesized compounds. The most potent compound, 6 h (9-(3-Bromo-phenyl)-4-pheny l-2, 3, 5, 6, 7, 9-hexahydro-4H-cyclopenta [b] quinoline-1, 8-dione), containing bromophenyl moiety and phenyl substitute on nitrogen of central quinoline ring, show significant cytotoxic activity especially in Raji and HeLa cell lines (IC(30): 82 and 24.4 μ M respectively) comparing to other compounds. Although the results of cytotoxic activity evaluation demonstrated that the in-vitro anti-cancer effect of synthesized compounds are mainly low, it seems that this structure can be used as a novel cytotoxic scaffold for further modification and design of novel potent compounds.
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spelling pubmed-38130382013-11-18 Synthesis and Cytotoxicity Study of New Cyclopenta [b] quinoline-1,8-dione Derivatives Miri, Ramin Firuzi, Omidreza Peymani, Payam Nazarian, Zohreh Shafiee, Abbas Iran J Pharm Res Original Article DNA intercalators belong to aromatic heterocyclic compounds interacting reversibly with DNA. These compounds have been used extremely as cytotoxic agents against cancer. In this study, the synthesis and biological activity of some novel derivatives of cyclopenta [b] quinoline-1, 8-dione as new intercalating agent were investigated. Twenty novel derivatives of cyclopenta [b] quinoline-1, 8-dione were synthesized by molecular condensation of equivalent amount of 3-imino cyclopentanone, corresponding aldehyde and cyclohexane-1, 3-dione. Then, their cytotoxic activity was evaluated against HeLa, LS180, MCF-7 and Raji cancer cell lines by MTT assay. The results of cytotoxic activity evaluation indicate that the most of synthesized compounds show weak cytotoxic effect on the different cell lines (IC(50) of these compounds is higher than 50 or 100 µ ). According to previous studies, in the case of compounds with the weak biological activity, it is more suitable to use IC(15 )and IC(30) instead of IC(50) as the indicator of biological activity. Since most of compounds have weak cytotoxic effect, we also calculated IC(15) and IC(30) for evaluating the cytotoxic activity of synthesized compounds. The most potent compound, 6 h (9-(3-Bromo-phenyl)-4-pheny l-2, 3, 5, 6, 7, 9-hexahydro-4H-cyclopenta [b] quinoline-1, 8-dione), containing bromophenyl moiety and phenyl substitute on nitrogen of central quinoline ring, show significant cytotoxic activity especially in Raji and HeLa cell lines (IC(30): 82 and 24.4 μ M respectively) comparing to other compounds. Although the results of cytotoxic activity evaluation demonstrated that the in-vitro anti-cancer effect of synthesized compounds are mainly low, it seems that this structure can be used as a novel cytotoxic scaffold for further modification and design of novel potent compounds. Shaheed Beheshti University of Medical Sciences 2011 /pmc/articles/PMC3813038/ /pubmed/24250380 Text en © 2011 by School of Pharmacy, Shaheed Beheshti University of Medical Sciences and Health Services This is an Open Access article distributed under the terms of the Creative Commons Attribution License, (http://creativecommons.org/licenses/by/3.0/) which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Original Article
Miri, Ramin
Firuzi, Omidreza
Peymani, Payam
Nazarian, Zohreh
Shafiee, Abbas
Synthesis and Cytotoxicity Study of New Cyclopenta [b] quinoline-1,8-dione Derivatives
title Synthesis and Cytotoxicity Study of New Cyclopenta [b] quinoline-1,8-dione Derivatives
title_full Synthesis and Cytotoxicity Study of New Cyclopenta [b] quinoline-1,8-dione Derivatives
title_fullStr Synthesis and Cytotoxicity Study of New Cyclopenta [b] quinoline-1,8-dione Derivatives
title_full_unstemmed Synthesis and Cytotoxicity Study of New Cyclopenta [b] quinoline-1,8-dione Derivatives
title_short Synthesis and Cytotoxicity Study of New Cyclopenta [b] quinoline-1,8-dione Derivatives
title_sort synthesis and cytotoxicity study of new cyclopenta [b] quinoline-1,8-dione derivatives
topic Original Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3813038/
https://www.ncbi.nlm.nih.gov/pubmed/24250380
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