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Synthesis, In-Vitro Activity and Metabolic Properties of Quinocetone and Structurally Similar Compounds

To investigate the cytotoxicity mechanism of quinocetone from the perspective of chemical structure, quinocetone and other new quinoxaline-1, 4-dioxide derivatives were synthesized, and evaluated for their activities, and analysed for the metabolic characteristics. Quinocetone and other new quinoxal...

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Autores principales: Zhang, Keyu, Wang, Chunmei, Wang, Xiaoyang, Zheng, Haihong, Zhao, Juan, Wang, Mi, Xiao, Sui, Fei, Chenzhong, Zheng, Wenli, Zhang, Lifang, Xue, Feiqun
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Shaheed Beheshti University of Medical Sciences 2017
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5603865/
https://www.ncbi.nlm.nih.gov/pubmed/28979311
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author Zhang, Keyu
Wang, Chunmei
Wang, Xiaoyang
Zheng, Haihong
Zhao, Juan
Wang, Mi
Xiao, Sui
Fei, Chenzhong
Zheng, Wenli
Zhang, Lifang
Xue, Feiqun
author_facet Zhang, Keyu
Wang, Chunmei
Wang, Xiaoyang
Zheng, Haihong
Zhao, Juan
Wang, Mi
Xiao, Sui
Fei, Chenzhong
Zheng, Wenli
Zhang, Lifang
Xue, Feiqun
author_sort Zhang, Keyu
collection PubMed
description To investigate the cytotoxicity mechanism of quinocetone from the perspective of chemical structure, quinocetone and other new quinoxaline-1, 4-dioxide derivatives were synthesized, and evaluated for their activities, and analysed for the metabolic characteristics. Quinocetone and other new quinoxaline-1,4-dioxide derivatives were synthesized, and evaluated for their activities, and analysed for the metabolic characteristics. The synthetic route started from 2-nitroaniline which was reacted with 3-bromopropanoic acid followed by the reaction of acetylacetone to afford 2-acetyl-3-methylquinoxaline-1, 4-dioxide. The aldol condensation of the later compound with aromatic aldehydes led to the formation of the quinocetone structure similar compounds. A number of prepared derivatives exerted antimicrobial activities and cytotoxicity potency. Analysis of metabolic pathways in vitro displayed 2-propenyl and N→O groups were the major sites. The results suggested 2-propenyl group exert important role in cytotoxicity of quinocetone and is another major toxiccophore for quinocetone, and different electronic substituents in arylidene aryl ring could affect the electronic arrangement of 2-propenyl and N→O groups to chang the cytostatic potency.
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spelling pubmed-56038652017-10-04 Synthesis, In-Vitro Activity and Metabolic Properties of Quinocetone and Structurally Similar Compounds Zhang, Keyu Wang, Chunmei Wang, Xiaoyang Zheng, Haihong Zhao, Juan Wang, Mi Xiao, Sui Fei, Chenzhong Zheng, Wenli Zhang, Lifang Xue, Feiqun Iran J Pharm Res Original Article To investigate the cytotoxicity mechanism of quinocetone from the perspective of chemical structure, quinocetone and other new quinoxaline-1, 4-dioxide derivatives were synthesized, and evaluated for their activities, and analysed for the metabolic characteristics. Quinocetone and other new quinoxaline-1,4-dioxide derivatives were synthesized, and evaluated for their activities, and analysed for the metabolic characteristics. The synthetic route started from 2-nitroaniline which was reacted with 3-bromopropanoic acid followed by the reaction of acetylacetone to afford 2-acetyl-3-methylquinoxaline-1, 4-dioxide. The aldol condensation of the later compound with aromatic aldehydes led to the formation of the quinocetone structure similar compounds. A number of prepared derivatives exerted antimicrobial activities and cytotoxicity potency. Analysis of metabolic pathways in vitro displayed 2-propenyl and N→O groups were the major sites. The results suggested 2-propenyl group exert important role in cytotoxicity of quinocetone and is another major toxiccophore for quinocetone, and different electronic substituents in arylidene aryl ring could affect the electronic arrangement of 2-propenyl and N→O groups to chang the cytostatic potency. Shaheed Beheshti University of Medical Sciences 2017 /pmc/articles/PMC5603865/ /pubmed/28979311 Text en © 2017 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
Zhang, Keyu
Wang, Chunmei
Wang, Xiaoyang
Zheng, Haihong
Zhao, Juan
Wang, Mi
Xiao, Sui
Fei, Chenzhong
Zheng, Wenli
Zhang, Lifang
Xue, Feiqun
Synthesis, In-Vitro Activity and Metabolic Properties of Quinocetone and Structurally Similar Compounds
title Synthesis, In-Vitro Activity and Metabolic Properties of Quinocetone and Structurally Similar Compounds
title_full Synthesis, In-Vitro Activity and Metabolic Properties of Quinocetone and Structurally Similar Compounds
title_fullStr Synthesis, In-Vitro Activity and Metabolic Properties of Quinocetone and Structurally Similar Compounds
title_full_unstemmed Synthesis, In-Vitro Activity and Metabolic Properties of Quinocetone and Structurally Similar Compounds
title_short Synthesis, In-Vitro Activity and Metabolic Properties of Quinocetone and Structurally Similar Compounds
title_sort synthesis, in-vitro activity and metabolic properties of quinocetone and structurally similar compounds
topic Original Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5603865/
https://www.ncbi.nlm.nih.gov/pubmed/28979311
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