Evaluation of doxorubicin and β‐lapachone analogs as anticancer agents, a biological and computational study

Author:

Mercado‐Sánchez Itzel1,López Julio2,Chávez‐Rocha Rogelio1,Vargas‐Rodríguez Ismael1,Bazán‐Jiménez Adán1,Segovia‐Mendoza Mariana3,Prado‐Garcia Heriberto4,Vázquez Miguel A.1,García‐Becerra Rocío56,Garcia‐Revilla Marco A.1ORCID

Affiliation:

1. División de Ciencias Naturales y Exactas, Departamento de Química Universidad de Guanajuato Guanajuato Mexico

2. Departamento de Química Orgánica, Escuela Nacional de Ciencias Biológicas Instituto Politécnico Nacional Ciudad de México Mexico

3. Departamento de Farmacología, Facultad de Medicina Universidad Nacional Autónoma de México Ciudad de México Mexico

4. Laboratorio de Onco‐Inmunobiologia, Departamento de Enfermedades Crónico‐Degenerativas Instituto Nacional de Enfermedades Respiratorias “Ismael Cosío Villegas” Ciudad de México Mexico

5. Departamento de Biología Molecular y Biotecnología, Instituto de Investigaciones Biomédicas Universidad Nacional Autónoma de México Ciudad de Mexico Mexico

6. Programa de Investigación de Cáncer de Mama, Instituto de Investigaciones Biomédicas Universidad Nacional Autónoma de México Ciudad de México Mexico

Abstract

AbstractWe have conducted an experimental and computational evaluation of new doxorubicin (4ac) and β‐lapachone (5ac) analogs. These novel anticancer analogs were previously synthesized, but had not been tested or characterized until now. We have evaluated their antiproliferative and DNA cleavage inhibition properties using breast (MCF‐7 and MDA‐MB‐231) and prostate (PC3) cancer cell lines. Additionally, cell cycle analysis was performed using flow cytometry. Computational studies, including molecular docking, pharmacokinetic properties, and an analysis of DFT and QTAIM chemical descriptors, were performed to gain insights into the electronic structure and elucidate the molecular binding of the new β‐lapachone and doxorubicin analogs with a DNA sequence and Topoisomerase II (Topo II)α. Our results show that 4a analog displays the highest antiproliferative activity in cancer cell lines by inducing cell death. We observed that stacking interactions and hydrogen bonding are essential to stabilize the molecule‐DNA‐Topo IIα complex. Moreover, 4a and 5a analogs inhibited Topo's DNA cleavage activity. Pharmacodynamic results indicated that studied molecules have favorable adsorption and permeability properties. The calculated chemical descriptors indicate that electron accumulation in quinone rings is relevant to the reactivity and biological activity. Based on our results, 4a is a strong candidate for becoming an anticancer drug.

Funder

Dirección General de Asuntos del Personal Académico, Universidad Nacional Autónoma de México

Universidad Nacional Autónoma de México

Publisher

Wiley

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