Cargando…

New structure–activity relationships of chalcone inhibitors of breast cancer resistance protein: polyspecificity toward inhibition and critical substitutions against cytotoxicity

Adenosine triphosphate-binding cassette subfamily G member 2 (ABCG2) plays a major role in cancer cell multidrug resistance, which contributes to low eifficacy of chemotherapy. Chalcones were recently found to be potent and specific inhibitors, but unfortunately display a significant cytotoxicity. A...

Descripción completa

Detalles Bibliográficos
Autores principales: Rangel, Luciana Pereira, Winter, Evelyn, Gauthier, Charlotte, Terreux, Raphaël, Chiaradia-Delatorre, Louise D, Mascarello, Alessandra, Nunes, Ricardo J, Yunes, Rosendo A, Creczynski-Pasa, Tania B, Macalou, Sira, Lorendeau, Doriane, Baubichon-Cortay, Hélène, Ferreira-Pereira, Antonio, Di Pietro, Attilio
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Dove Medical Press 2013
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3792851/
https://www.ncbi.nlm.nih.gov/pubmed/24109177
http://dx.doi.org/10.2147/DDDT.S46983
_version_ 1782286881659027456
author Rangel, Luciana Pereira
Winter, Evelyn
Gauthier, Charlotte
Terreux, Raphaël
Chiaradia-Delatorre, Louise D
Mascarello, Alessandra
Nunes, Ricardo J
Yunes, Rosendo A
Creczynski-Pasa, Tania B
Macalou, Sira
Lorendeau, Doriane
Baubichon-Cortay, Hélène
Ferreira-Pereira, Antonio
Di Pietro, Attilio
author_facet Rangel, Luciana Pereira
Winter, Evelyn
Gauthier, Charlotte
Terreux, Raphaël
Chiaradia-Delatorre, Louise D
Mascarello, Alessandra
Nunes, Ricardo J
Yunes, Rosendo A
Creczynski-Pasa, Tania B
Macalou, Sira
Lorendeau, Doriane
Baubichon-Cortay, Hélène
Ferreira-Pereira, Antonio
Di Pietro, Attilio
author_sort Rangel, Luciana Pereira
collection PubMed
description Adenosine triphosphate-binding cassette subfamily G member 2 (ABCG2) plays a major role in cancer cell multidrug resistance, which contributes to low eifficacy of chemotherapy. Chalcones were recently found to be potent and specific inhibitors, but unfortunately display a significant cytotoxicity. A cellular screening against ABCG2-mediated mitoxantrone efflux was performed here by flow cytometry on 54 chalcone derivatives from three different series with a wide panel of substituents. The identified leads, with submicromolar IC(50) (half maximal inhibitory concentration) values, showed that the previously identified 2′-OH-4′,6′-dimethoxyphenyl, as A-ring, could be efficiently replaced by a 2′-naphthyl group, or a 3′,4′-methylenedioxyphenyl with lower affinity. Such a structural variability indicates 3polyspecificity of the multidrug transporter for inhibitors. At least two methoxyl groups were necessary on B-ring for optimal inhibition, but substitution at positions 3, 4, and 5 induced cytotoxicity. The presence of a large O-benzyl substituent at position 4 and a 2′-naphthyl as A-ring markedly decreased the cytotoxicity, giving a high therapeutic ratio, which constitutes a critical requirement for future in-vivo assays in animal models.
format Online
Article
Text
id pubmed-3792851
institution National Center for Biotechnology Information
language English
publishDate 2013
publisher Dove Medical Press
record_format MEDLINE/PubMed
spelling pubmed-37928512013-10-09 New structure–activity relationships of chalcone inhibitors of breast cancer resistance protein: polyspecificity toward inhibition and critical substitutions against cytotoxicity Rangel, Luciana Pereira Winter, Evelyn Gauthier, Charlotte Terreux, Raphaël Chiaradia-Delatorre, Louise D Mascarello, Alessandra Nunes, Ricardo J Yunes, Rosendo A Creczynski-Pasa, Tania B Macalou, Sira Lorendeau, Doriane Baubichon-Cortay, Hélène Ferreira-Pereira, Antonio Di Pietro, Attilio Drug Des Devel Ther Original Research Adenosine triphosphate-binding cassette subfamily G member 2 (ABCG2) plays a major role in cancer cell multidrug resistance, which contributes to low eifficacy of chemotherapy. Chalcones were recently found to be potent and specific inhibitors, but unfortunately display a significant cytotoxicity. A cellular screening against ABCG2-mediated mitoxantrone efflux was performed here by flow cytometry on 54 chalcone derivatives from three different series with a wide panel of substituents. The identified leads, with submicromolar IC(50) (half maximal inhibitory concentration) values, showed that the previously identified 2′-OH-4′,6′-dimethoxyphenyl, as A-ring, could be efficiently replaced by a 2′-naphthyl group, or a 3′,4′-methylenedioxyphenyl with lower affinity. Such a structural variability indicates 3polyspecificity of the multidrug transporter for inhibitors. At least two methoxyl groups were necessary on B-ring for optimal inhibition, but substitution at positions 3, 4, and 5 induced cytotoxicity. The presence of a large O-benzyl substituent at position 4 and a 2′-naphthyl as A-ring markedly decreased the cytotoxicity, giving a high therapeutic ratio, which constitutes a critical requirement for future in-vivo assays in animal models. Dove Medical Press 2013-09-30 /pmc/articles/PMC3792851/ /pubmed/24109177 http://dx.doi.org/10.2147/DDDT.S46983 Text en © 2013 Rangel et al. This work is published by Dove Medical Press Ltd, and licensed under Creative Commons Attribution – Non Commercial (unported, v3.0) License The full terms of the License are available at http://creativecommons.org/licenses/by-nc/3.0/. Non-commercial uses of the work are permitted without any further permission from Dove Medical Press Limited, provided the work is properly attributed.
spellingShingle Original Research
Rangel, Luciana Pereira
Winter, Evelyn
Gauthier, Charlotte
Terreux, Raphaël
Chiaradia-Delatorre, Louise D
Mascarello, Alessandra
Nunes, Ricardo J
Yunes, Rosendo A
Creczynski-Pasa, Tania B
Macalou, Sira
Lorendeau, Doriane
Baubichon-Cortay, Hélène
Ferreira-Pereira, Antonio
Di Pietro, Attilio
New structure–activity relationships of chalcone inhibitors of breast cancer resistance protein: polyspecificity toward inhibition and critical substitutions against cytotoxicity
title New structure–activity relationships of chalcone inhibitors of breast cancer resistance protein: polyspecificity toward inhibition and critical substitutions against cytotoxicity
title_full New structure–activity relationships of chalcone inhibitors of breast cancer resistance protein: polyspecificity toward inhibition and critical substitutions against cytotoxicity
title_fullStr New structure–activity relationships of chalcone inhibitors of breast cancer resistance protein: polyspecificity toward inhibition and critical substitutions against cytotoxicity
title_full_unstemmed New structure–activity relationships of chalcone inhibitors of breast cancer resistance protein: polyspecificity toward inhibition and critical substitutions against cytotoxicity
title_short New structure–activity relationships of chalcone inhibitors of breast cancer resistance protein: polyspecificity toward inhibition and critical substitutions against cytotoxicity
title_sort new structure–activity relationships of chalcone inhibitors of breast cancer resistance protein: polyspecificity toward inhibition and critical substitutions against cytotoxicity
topic Original Research
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3792851/
https://www.ncbi.nlm.nih.gov/pubmed/24109177
http://dx.doi.org/10.2147/DDDT.S46983
work_keys_str_mv AT rangellucianapereira newstructureactivityrelationshipsofchalconeinhibitorsofbreastcancerresistanceproteinpolyspecificitytowardinhibitionandcriticalsubstitutionsagainstcytotoxicity
AT winterevelyn newstructureactivityrelationshipsofchalconeinhibitorsofbreastcancerresistanceproteinpolyspecificitytowardinhibitionandcriticalsubstitutionsagainstcytotoxicity
AT gauthiercharlotte newstructureactivityrelationshipsofchalconeinhibitorsofbreastcancerresistanceproteinpolyspecificitytowardinhibitionandcriticalsubstitutionsagainstcytotoxicity
AT terreuxraphael newstructureactivityrelationshipsofchalconeinhibitorsofbreastcancerresistanceproteinpolyspecificitytowardinhibitionandcriticalsubstitutionsagainstcytotoxicity
AT chiaradiadelatorrelouised newstructureactivityrelationshipsofchalconeinhibitorsofbreastcancerresistanceproteinpolyspecificitytowardinhibitionandcriticalsubstitutionsagainstcytotoxicity
AT mascarelloalessandra newstructureactivityrelationshipsofchalconeinhibitorsofbreastcancerresistanceproteinpolyspecificitytowardinhibitionandcriticalsubstitutionsagainstcytotoxicity
AT nunesricardoj newstructureactivityrelationshipsofchalconeinhibitorsofbreastcancerresistanceproteinpolyspecificitytowardinhibitionandcriticalsubstitutionsagainstcytotoxicity
AT yunesrosendoa newstructureactivityrelationshipsofchalconeinhibitorsofbreastcancerresistanceproteinpolyspecificitytowardinhibitionandcriticalsubstitutionsagainstcytotoxicity
AT creczynskipasataniab newstructureactivityrelationshipsofchalconeinhibitorsofbreastcancerresistanceproteinpolyspecificitytowardinhibitionandcriticalsubstitutionsagainstcytotoxicity
AT macalousira newstructureactivityrelationshipsofchalconeinhibitorsofbreastcancerresistanceproteinpolyspecificitytowardinhibitionandcriticalsubstitutionsagainstcytotoxicity
AT lorendeaudoriane newstructureactivityrelationshipsofchalconeinhibitorsofbreastcancerresistanceproteinpolyspecificitytowardinhibitionandcriticalsubstitutionsagainstcytotoxicity
AT baubichoncortayhelene newstructureactivityrelationshipsofchalconeinhibitorsofbreastcancerresistanceproteinpolyspecificitytowardinhibitionandcriticalsubstitutionsagainstcytotoxicity
AT ferreirapereiraantonio newstructureactivityrelationshipsofchalconeinhibitorsofbreastcancerresistanceproteinpolyspecificitytowardinhibitionandcriticalsubstitutionsagainstcytotoxicity
AT dipietroattilio newstructureactivityrelationshipsofchalconeinhibitorsofbreastcancerresistanceproteinpolyspecificitytowardinhibitionandcriticalsubstitutionsagainstcytotoxicity