Cargando…

Synthesis and Anticancer Cytotoxicity of Azaaurones Overcoming Multidrug Resistance

The resistance of tumors against anticancer drugs is a major impediment for chemotherapy. Tumors often develop multidrug resistance as a result of the cellular efflux of chemotherapeutic agents by ABC transporters such as P-glycoprotein (ABCB1/P-gp), Multidrug Resistance Protein 1 (ABCC1/MRP1), or B...

Descripción completa

Detalles Bibliográficos
Autores principales: Tóth, Szilárd, Szepesi, Áron, Tran-Nguyen, Viet-Khoa, Sarkadi, Balázs, Német, Katalin, Falson, Pierre, Di Pietro, Attilio, Szakács, Gergely, Boumendjel, Ahcène
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7038029/
https://www.ncbi.nlm.nih.gov/pubmed/32050702
http://dx.doi.org/10.3390/molecules25030764
_version_ 1783500559913844736
author Tóth, Szilárd
Szepesi, Áron
Tran-Nguyen, Viet-Khoa
Sarkadi, Balázs
Német, Katalin
Falson, Pierre
Di Pietro, Attilio
Szakács, Gergely
Boumendjel, Ahcène
author_facet Tóth, Szilárd
Szepesi, Áron
Tran-Nguyen, Viet-Khoa
Sarkadi, Balázs
Német, Katalin
Falson, Pierre
Di Pietro, Attilio
Szakács, Gergely
Boumendjel, Ahcène
author_sort Tóth, Szilárd
collection PubMed
description The resistance of tumors against anticancer drugs is a major impediment for chemotherapy. Tumors often develop multidrug resistance as a result of the cellular efflux of chemotherapeutic agents by ABC transporters such as P-glycoprotein (ABCB1/P-gp), Multidrug Resistance Protein 1 (ABCC1/MRP1), or Breast Cancer Resistance Protein (ABCG2/BCRP). By screening a chemolibrary comprising 140 compounds, we identified a set of naturally occurring aurones inducing higher cytotoxicity against P-gp-overexpressing multidrug-resistant (MDR) cells versus sensitive (parental, non-P-gp-overexpressing) cells. Follow-up studies conducted with the P-gp inhibitor tariquidar indicated that the MDR-selective toxicity of azaaurones is not mediated by P-gp. Azaaurone analogs possessing pronounced effects were then designed and synthesized. The knowledge gained from structure–activity relationships will pave the way for the design of a new class of anticancer drugs selectively targeting multidrug-resistant cancer cells.
format Online
Article
Text
id pubmed-7038029
institution National Center for Biotechnology Information
language English
publishDate 2020
publisher MDPI
record_format MEDLINE/PubMed
spelling pubmed-70380292020-03-10 Synthesis and Anticancer Cytotoxicity of Azaaurones Overcoming Multidrug Resistance Tóth, Szilárd Szepesi, Áron Tran-Nguyen, Viet-Khoa Sarkadi, Balázs Német, Katalin Falson, Pierre Di Pietro, Attilio Szakács, Gergely Boumendjel, Ahcène Molecules Article The resistance of tumors against anticancer drugs is a major impediment for chemotherapy. Tumors often develop multidrug resistance as a result of the cellular efflux of chemotherapeutic agents by ABC transporters such as P-glycoprotein (ABCB1/P-gp), Multidrug Resistance Protein 1 (ABCC1/MRP1), or Breast Cancer Resistance Protein (ABCG2/BCRP). By screening a chemolibrary comprising 140 compounds, we identified a set of naturally occurring aurones inducing higher cytotoxicity against P-gp-overexpressing multidrug-resistant (MDR) cells versus sensitive (parental, non-P-gp-overexpressing) cells. Follow-up studies conducted with the P-gp inhibitor tariquidar indicated that the MDR-selective toxicity of azaaurones is not mediated by P-gp. Azaaurone analogs possessing pronounced effects were then designed and synthesized. The knowledge gained from structure–activity relationships will pave the way for the design of a new class of anticancer drugs selectively targeting multidrug-resistant cancer cells. MDPI 2020-02-10 /pmc/articles/PMC7038029/ /pubmed/32050702 http://dx.doi.org/10.3390/molecules25030764 Text en © 2020 by the authors. 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 (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Tóth, Szilárd
Szepesi, Áron
Tran-Nguyen, Viet-Khoa
Sarkadi, Balázs
Német, Katalin
Falson, Pierre
Di Pietro, Attilio
Szakács, Gergely
Boumendjel, Ahcène
Synthesis and Anticancer Cytotoxicity of Azaaurones Overcoming Multidrug Resistance
title Synthesis and Anticancer Cytotoxicity of Azaaurones Overcoming Multidrug Resistance
title_full Synthesis and Anticancer Cytotoxicity of Azaaurones Overcoming Multidrug Resistance
title_fullStr Synthesis and Anticancer Cytotoxicity of Azaaurones Overcoming Multidrug Resistance
title_full_unstemmed Synthesis and Anticancer Cytotoxicity of Azaaurones Overcoming Multidrug Resistance
title_short Synthesis and Anticancer Cytotoxicity of Azaaurones Overcoming Multidrug Resistance
title_sort synthesis and anticancer cytotoxicity of azaaurones overcoming multidrug resistance
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7038029/
https://www.ncbi.nlm.nih.gov/pubmed/32050702
http://dx.doi.org/10.3390/molecules25030764
work_keys_str_mv AT tothszilard synthesisandanticancercytotoxicityofazaauronesovercomingmultidrugresistance
AT szepesiaron synthesisandanticancercytotoxicityofazaauronesovercomingmultidrugresistance
AT trannguyenvietkhoa synthesisandanticancercytotoxicityofazaauronesovercomingmultidrugresistance
AT sarkadibalazs synthesisandanticancercytotoxicityofazaauronesovercomingmultidrugresistance
AT nemetkatalin synthesisandanticancercytotoxicityofazaauronesovercomingmultidrugresistance
AT falsonpierre synthesisandanticancercytotoxicityofazaauronesovercomingmultidrugresistance
AT dipietroattilio synthesisandanticancercytotoxicityofazaauronesovercomingmultidrugresistance
AT szakacsgergely synthesisandanticancercytotoxicityofazaauronesovercomingmultidrugresistance
AT boumendjelahcene synthesisandanticancercytotoxicityofazaauronesovercomingmultidrugresistance