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Antitumor Activity In Vitro Provided by N-Alkyl-Nitroimidazole Compounds

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Bentham Science Publishers

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Grupo de Investigaciones BIOMÉDICAS
El Grupo de Investigaciones Biomédicas UniRemington busca generar conocimiento científico biomédico de alta calidad e impacto que promueva el avance en alternativas en salud y que contribuya al mejoramiento de la calidad de vida de la población colombiana, mediante el desarrollo de proyectos de investigación y extensión. Áreas temáticas: Enfermedades infecciosas, Genética, Inmunología, Oncología, Salud relacionada con el ambiente. Líder: Isaura Pilar Sánchez Correo: isaura.sanchez@uniremington.edu.co Línea matriz: Enfermedades Infecciosas, Crónicas, Salud y Ambiente Líneas de investigación: 1. Inmuno-patogénesis de enfermedades infecciosas y no transmisibles / Natalia Andrea Taborda - natalia.taborda@uniremington.edu.co 2. Salud relacionada con el ambiente / Jazmín Porras López - jazmin.porras@uniremington.edu.co

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Background: Cancer is one of the most common diseases in the world, with over 18 million new cases estimated in 2018. Many of the drugs used for cancer can have significant adverse effects and variable effectiveness. Nitroimidazoles are prodrugs that usually have shown antimicrobial activity specifically antiparasitic. However, its antitumor activityin vitrohas barely been explored. Objective: The aim of this study is to determine the influence of the length of the substituted N-alkyl chain in the imidazole ring on the antitumor activityin vitro. Methods: Four nitroimidazoles were obtained by chemical synthesis varying the length of the substituted N-alkyl chain from methyl to butyl. The antitumor activity of N-alkyl-nitroimidazoles was evaluated by MTT assay employing two tumor cell lines (MDA-MB231 and A549). Results: In this study, it was reported that N-alkyl nitroimidazoles exhibited an LC50as low as 16.7 µM in breast tumor cells MDA-MB231 while in normal Vero kidney cells, the LC50was around 30 µM. It was also reported that the length of the substituted N-Alkyl chain in the imidazole ring affects the antitumoral activity in A549 lung cells. Conclusion: Increasing the length of the substituted N-Alkyl chain in the imidazole ring decreased the antitumor activity against only A549 cancer cells. N-alkyl nitroimidazoles exhibited considerable selectivity towards tumor cell lines.

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