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Design, Synthesis and Biological Evaluation of Novel Piperazinone Derivatives as Cytotoxic Agents

Purpose: In this study, a series of piperazin-2-one derivatives were prepared through bioisosteric substitution of the imidazole ring of L-778,123 (imidazole-containing FTase inhibitor) and rearrangement of groups based on the tipifarnib structure. Final compounds were evaluated for their cytotoxic...

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Autores principales: Ghasemi, Saeed, Sharifi, Simin, Shahbazi Mojarrad, Javid
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Tabriz University of Medical Sciences 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7335995/
https://www.ncbi.nlm.nih.gov/pubmed/32665901
http://dx.doi.org/10.34172/apb.2020.051
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author Ghasemi, Saeed
Sharifi, Simin
Shahbazi Mojarrad, Javid
author_facet Ghasemi, Saeed
Sharifi, Simin
Shahbazi Mojarrad, Javid
author_sort Ghasemi, Saeed
collection PubMed
description Purpose: In this study, a series of piperazin-2-one derivatives were prepared through bioisosteric substitution of the imidazole ring of L-778,123 (imidazole-containing FTase inhibitor) and rearrangement of groups based on the tipifarnib structure. Final compounds were evaluated for their cytotoxic activities on cancer and normal cell lines by MTT assay. Methods: Methyl α-bromophenylacetic acid and 1-(3-chlorophenyl) piperazin-2-one were synthesized using previously described methods. Methyl 2-(4-chlorophenyl)-2-(4-(3- chlorophenyl)-3-oxopiperazin-1-yl) acetate was prepared by reaction between these two compounds in presence of potassium carbonate. Finally, methoxy group of ester was substituted by various amines such as guanidine, thiourea, urea and hydrazide. The synthesized compounds were tested for their cytotoxicity against colon cancer (HT-29) and lung cancer (A549) cell lines as well as MRC-5 (normal fetal lung fibroblasts) cells as a healthy cell line using MTT colorimetric assay method. Results: Replacement of imidazole moiety with guanidine, thiourea, and hydrazide could increase cytotoxicity toward all three cell lines. Some substituents, such as amine, urea, and hydroxylamine exhibited significant cytotoxicity (<500 µM) but lower than L-778,123 as standard compound. Hydroxyl and methoxy substituents did not show significant cytotoxicity. Imidazole substituent group revealed cytotoxicity similar to L-778,123 All compounds showed lower cytotoxic activity against normal cell lines compared with cancer cell lines. Conclusion: It seems the electron density of substituted groups and rearrangement of groups may significantly increase cytotoxic activity
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spelling pubmed-73359952020-07-13 Design, Synthesis and Biological Evaluation of Novel Piperazinone Derivatives as Cytotoxic Agents Ghasemi, Saeed Sharifi, Simin Shahbazi Mojarrad, Javid Adv Pharm Bull Research Article Purpose: In this study, a series of piperazin-2-one derivatives were prepared through bioisosteric substitution of the imidazole ring of L-778,123 (imidazole-containing FTase inhibitor) and rearrangement of groups based on the tipifarnib structure. Final compounds were evaluated for their cytotoxic activities on cancer and normal cell lines by MTT assay. Methods: Methyl α-bromophenylacetic acid and 1-(3-chlorophenyl) piperazin-2-one were synthesized using previously described methods. Methyl 2-(4-chlorophenyl)-2-(4-(3- chlorophenyl)-3-oxopiperazin-1-yl) acetate was prepared by reaction between these two compounds in presence of potassium carbonate. Finally, methoxy group of ester was substituted by various amines such as guanidine, thiourea, urea and hydrazide. The synthesized compounds were tested for their cytotoxicity against colon cancer (HT-29) and lung cancer (A549) cell lines as well as MRC-5 (normal fetal lung fibroblasts) cells as a healthy cell line using MTT colorimetric assay method. Results: Replacement of imidazole moiety with guanidine, thiourea, and hydrazide could increase cytotoxicity toward all three cell lines. Some substituents, such as amine, urea, and hydroxylamine exhibited significant cytotoxicity (<500 µM) but lower than L-778,123 as standard compound. Hydroxyl and methoxy substituents did not show significant cytotoxicity. Imidazole substituent group revealed cytotoxicity similar to L-778,123 All compounds showed lower cytotoxic activity against normal cell lines compared with cancer cell lines. Conclusion: It seems the electron density of substituted groups and rearrangement of groups may significantly increase cytotoxic activity Tabriz University of Medical Sciences 2020-07 2020-05-11 /pmc/articles/PMC7335995/ /pubmed/32665901 http://dx.doi.org/10.34172/apb.2020.051 Text en © 2020 The Authors. http://creativecommons.org/licenses/by/4.0/ This is an Open Access article distributed under the terms of the Creative Commons Attribution (CC BY), which permits unrestricted use, distribution, and reproduction in any medium, as long as the original authors and source are cited. No permission is required from the authors or the publishers.
spellingShingle Research Article
Ghasemi, Saeed
Sharifi, Simin
Shahbazi Mojarrad, Javid
Design, Synthesis and Biological Evaluation of Novel Piperazinone Derivatives as Cytotoxic Agents
title Design, Synthesis and Biological Evaluation of Novel Piperazinone Derivatives as Cytotoxic Agents
title_full Design, Synthesis and Biological Evaluation of Novel Piperazinone Derivatives as Cytotoxic Agents
title_fullStr Design, Synthesis and Biological Evaluation of Novel Piperazinone Derivatives as Cytotoxic Agents
title_full_unstemmed Design, Synthesis and Biological Evaluation of Novel Piperazinone Derivatives as Cytotoxic Agents
title_short Design, Synthesis and Biological Evaluation of Novel Piperazinone Derivatives as Cytotoxic Agents
title_sort design, synthesis and biological evaluation of novel piperazinone derivatives as cytotoxic agents
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7335995/
https://www.ncbi.nlm.nih.gov/pubmed/32665901
http://dx.doi.org/10.34172/apb.2020.051
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