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Synthesis and Molecular-cellular Mechanistic Study of Pyridine Derivative of Dacarbazine

Dacarbazine is an antitumor prodrug which is used for the treatment of malignant metastatic melanoma and Hodgkin’s disease. It requires initial activation in liver through an N-demethylationreaction. The active metabolite prevents the progress of disease via alkylation of guanine bases in DNA strand...

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Autores principales: Amirmostofian, Marzieh, Pourahmad Jaktaji, Jalal, Soleimani, Zohreh, Tabib, Kimia, Tanbakosazan, Farahnaz, Omrani, Mirdavood, Kobarfard, Farzad
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Shaheed Beheshti University of Medical Sciences 2013
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3813268/
https://www.ncbi.nlm.nih.gov/pubmed/24250631
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author Amirmostofian, Marzieh
Pourahmad Jaktaji, Jalal
Soleimani, Zohreh
Tabib, Kimia
Tanbakosazan, Farahnaz
Omrani, Mirdavood
Kobarfard, Farzad
author_facet Amirmostofian, Marzieh
Pourahmad Jaktaji, Jalal
Soleimani, Zohreh
Tabib, Kimia
Tanbakosazan, Farahnaz
Omrani, Mirdavood
Kobarfard, Farzad
author_sort Amirmostofian, Marzieh
collection PubMed
description Dacarbazine is an antitumor prodrug which is used for the treatment of malignant metastatic melanoma and Hodgkin’s disease. It requires initial activation in liver through an N-demethylationreaction. The active metabolite prevents the progress of disease via alkylation of guanine bases in DNA strands. In order to investigate the importance of imidazole ring and its dynamictautomerization in anticancer activity of dacarbazine, a pyridine analog of this drug was synthesized and the cytotoxic activity and cellular-molecular mechanisms of action for this compound were compared with those of dacarbazine. EC50 values for dacarbazine and the pyridine analog were found to be 56 μM and 33 μM respectively. Both dacarbazine and the pyridine analog resulted in formation of reactive oxygen species (ROS) upon their addition to the isolated rat hepatocytes. They also decreased the mitochondrial membrane potential and causedlysosomal membrane rupture. Cytotoxicity was prevented by ROS scavengers and antioxidants. Cytotoxicity wasalso prevented by CYP(450 )inhibitors, lysosomalinactivators and MPT (Mitochondrial Permeability Transition Pore) blockers.
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spelling pubmed-38132682013-11-18 Synthesis and Molecular-cellular Mechanistic Study of Pyridine Derivative of Dacarbazine Amirmostofian, Marzieh Pourahmad Jaktaji, Jalal Soleimani, Zohreh Tabib, Kimia Tanbakosazan, Farahnaz Omrani, Mirdavood Kobarfard, Farzad Iran J Pharm Res Original Article Dacarbazine is an antitumor prodrug which is used for the treatment of malignant metastatic melanoma and Hodgkin’s disease. It requires initial activation in liver through an N-demethylationreaction. The active metabolite prevents the progress of disease via alkylation of guanine bases in DNA strands. In order to investigate the importance of imidazole ring and its dynamictautomerization in anticancer activity of dacarbazine, a pyridine analog of this drug was synthesized and the cytotoxic activity and cellular-molecular mechanisms of action for this compound were compared with those of dacarbazine. EC50 values for dacarbazine and the pyridine analog were found to be 56 μM and 33 μM respectively. Both dacarbazine and the pyridine analog resulted in formation of reactive oxygen species (ROS) upon their addition to the isolated rat hepatocytes. They also decreased the mitochondrial membrane potential and causedlysosomal membrane rupture. Cytotoxicity was prevented by ROS scavengers and antioxidants. Cytotoxicity wasalso prevented by CYP(450 )inhibitors, lysosomalinactivators and MPT (Mitochondrial Permeability Transition Pore) blockers. Shaheed Beheshti University of Medical Sciences 2013 /pmc/articles/PMC3813268/ /pubmed/24250631 Text en © 2013 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
Amirmostofian, Marzieh
Pourahmad Jaktaji, Jalal
Soleimani, Zohreh
Tabib, Kimia
Tanbakosazan, Farahnaz
Omrani, Mirdavood
Kobarfard, Farzad
Synthesis and Molecular-cellular Mechanistic Study of Pyridine Derivative of Dacarbazine
title Synthesis and Molecular-cellular Mechanistic Study of Pyridine Derivative of Dacarbazine
title_full Synthesis and Molecular-cellular Mechanistic Study of Pyridine Derivative of Dacarbazine
title_fullStr Synthesis and Molecular-cellular Mechanistic Study of Pyridine Derivative of Dacarbazine
title_full_unstemmed Synthesis and Molecular-cellular Mechanistic Study of Pyridine Derivative of Dacarbazine
title_short Synthesis and Molecular-cellular Mechanistic Study of Pyridine Derivative of Dacarbazine
title_sort synthesis and molecular-cellular mechanistic study of pyridine derivative of dacarbazine
topic Original Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3813268/
https://www.ncbi.nlm.nih.gov/pubmed/24250631
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