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Cytotoxic Effects on Breast Cancer Cell Lines of Chalcones Derived from a Natural Precursor and Their Molecular Docking Analysis

This study aimed to determine the in vitro cytotoxicity and understand possible cytotoxic mechanisms via an in silico study of eleven chalcones synthesized from two acetophenones. Five were synthesized from a prenylacetophenone isolated from a plant that grows in the Andean region of the Atacama Des...

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Autores principales: Bustos, Luis, Echiburú-Chau, Carlos, Castro-Alvarez, Alejandro, Bradshaw, Ben, Simirgiotis, Mario J., Mellado, Marco, Parra, Claudio, Cuellar, Mauricio
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9318862/
https://www.ncbi.nlm.nih.gov/pubmed/35889260
http://dx.doi.org/10.3390/molecules27144387
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author Bustos, Luis
Echiburú-Chau, Carlos
Castro-Alvarez, Alejandro
Bradshaw, Ben
Simirgiotis, Mario J.
Mellado, Marco
Parra, Claudio
Cuellar, Mauricio
author_facet Bustos, Luis
Echiburú-Chau, Carlos
Castro-Alvarez, Alejandro
Bradshaw, Ben
Simirgiotis, Mario J.
Mellado, Marco
Parra, Claudio
Cuellar, Mauricio
author_sort Bustos, Luis
collection PubMed
description This study aimed to determine the in vitro cytotoxicity and understand possible cytotoxic mechanisms via an in silico study of eleven chalcones synthesized from two acetophenones. Five were synthesized from a prenylacetophenone isolated from a plant that grows in the Andean region of the Atacama Desert. The cytotoxic activity of all the synthesized chalcones was tested against breast cancer cell lines using an MTT cell proliferation assay. The results suggest that the prenyl group in the A-ring of the methoxy and hydroxyl substituents of the B-ring appear to be crucial for the cytotoxicity of these compounds. The chalcones 12 and 13 showed significant inhibitory effects against growth in MCF-7 cells (IC(50) 4.19 ± 1.04 µM and IC(50) 3.30 ± 0.92 µM), ZR-75-1 cells (IC(50) 9.40 ± 1.74 µM and IC(50) 8.75 ± 2.01µM), and MDA-MB-231 cells (IC(50) 6.12 ± 0.84 µM and IC(50) 18.10 ± 1.65 µM). Moreover, these chalcones showed differential activity between MCF-10F (IC(50) 95.76 ± 1.52 µM and IC(50) 95.11 ± 1.97 µM, respectively) and the tumor lines. The in vitro results agree with molecular coupling results, whose affinity energies and binding mode agree with the most active compounds. Thus, compounds 12 and 13 can be considered for further studies and are candidates for developing new antitumor agents. In conclusion, these observations give rise to a new hypothesis for designing chalcones with potential cytotoxicity with high potential for the pharmaceutical industry.
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spelling pubmed-93188622022-07-27 Cytotoxic Effects on Breast Cancer Cell Lines of Chalcones Derived from a Natural Precursor and Their Molecular Docking Analysis Bustos, Luis Echiburú-Chau, Carlos Castro-Alvarez, Alejandro Bradshaw, Ben Simirgiotis, Mario J. Mellado, Marco Parra, Claudio Cuellar, Mauricio Molecules Article This study aimed to determine the in vitro cytotoxicity and understand possible cytotoxic mechanisms via an in silico study of eleven chalcones synthesized from two acetophenones. Five were synthesized from a prenylacetophenone isolated from a plant that grows in the Andean region of the Atacama Desert. The cytotoxic activity of all the synthesized chalcones was tested against breast cancer cell lines using an MTT cell proliferation assay. The results suggest that the prenyl group in the A-ring of the methoxy and hydroxyl substituents of the B-ring appear to be crucial for the cytotoxicity of these compounds. The chalcones 12 and 13 showed significant inhibitory effects against growth in MCF-7 cells (IC(50) 4.19 ± 1.04 µM and IC(50) 3.30 ± 0.92 µM), ZR-75-1 cells (IC(50) 9.40 ± 1.74 µM and IC(50) 8.75 ± 2.01µM), and MDA-MB-231 cells (IC(50) 6.12 ± 0.84 µM and IC(50) 18.10 ± 1.65 µM). Moreover, these chalcones showed differential activity between MCF-10F (IC(50) 95.76 ± 1.52 µM and IC(50) 95.11 ± 1.97 µM, respectively) and the tumor lines. The in vitro results agree with molecular coupling results, whose affinity energies and binding mode agree with the most active compounds. Thus, compounds 12 and 13 can be considered for further studies and are candidates for developing new antitumor agents. In conclusion, these observations give rise to a new hypothesis for designing chalcones with potential cytotoxicity with high potential for the pharmaceutical industry. MDPI 2022-07-08 /pmc/articles/PMC9318862/ /pubmed/35889260 http://dx.doi.org/10.3390/molecules27144387 Text en © 2022 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Bustos, Luis
Echiburú-Chau, Carlos
Castro-Alvarez, Alejandro
Bradshaw, Ben
Simirgiotis, Mario J.
Mellado, Marco
Parra, Claudio
Cuellar, Mauricio
Cytotoxic Effects on Breast Cancer Cell Lines of Chalcones Derived from a Natural Precursor and Their Molecular Docking Analysis
title Cytotoxic Effects on Breast Cancer Cell Lines of Chalcones Derived from a Natural Precursor and Their Molecular Docking Analysis
title_full Cytotoxic Effects on Breast Cancer Cell Lines of Chalcones Derived from a Natural Precursor and Their Molecular Docking Analysis
title_fullStr Cytotoxic Effects on Breast Cancer Cell Lines of Chalcones Derived from a Natural Precursor and Their Molecular Docking Analysis
title_full_unstemmed Cytotoxic Effects on Breast Cancer Cell Lines of Chalcones Derived from a Natural Precursor and Their Molecular Docking Analysis
title_short Cytotoxic Effects on Breast Cancer Cell Lines of Chalcones Derived from a Natural Precursor and Their Molecular Docking Analysis
title_sort cytotoxic effects on breast cancer cell lines of chalcones derived from a natural precursor and their molecular docking analysis
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9318862/
https://www.ncbi.nlm.nih.gov/pubmed/35889260
http://dx.doi.org/10.3390/molecules27144387
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