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Antimicrobial, Anticancer and Multidrug-Resistant Reversing Activity of Novel Oxygen-, Sulfur- and Selenoflavones and Bioisosteric Analogues

Multidrug resistance of cancer cells to cytotoxic drugs still remains a major obstacle to the success of chemotherapy in cancer treatment. The development of new drug candidates which may serve as P-glycoprotein (P-gp) efflux pump inhibitors is a promising strategy. Selenium analogues of natural pro...

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Autores principales: Marć, Małgorzata Anna, Kincses, Annamária, Rácz, Bálint, Nasim, Muhammad Jawad, Sarfraz, Muhammad, Lázaro-Milla, Carlos, Domínguez-Álvarez, Enrique, Jacob, Claus, Spengler, Gabriella, Almendros, Pedro
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7763008/
https://www.ncbi.nlm.nih.gov/pubmed/33322409
http://dx.doi.org/10.3390/ph13120453
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author Marć, Małgorzata Anna
Kincses, Annamária
Rácz, Bálint
Nasim, Muhammad Jawad
Sarfraz, Muhammad
Lázaro-Milla, Carlos
Domínguez-Álvarez, Enrique
Jacob, Claus
Spengler, Gabriella
Almendros, Pedro
author_facet Marć, Małgorzata Anna
Kincses, Annamária
Rácz, Bálint
Nasim, Muhammad Jawad
Sarfraz, Muhammad
Lázaro-Milla, Carlos
Domínguez-Álvarez, Enrique
Jacob, Claus
Spengler, Gabriella
Almendros, Pedro
author_sort Marć, Małgorzata Anna
collection PubMed
description Multidrug resistance of cancer cells to cytotoxic drugs still remains a major obstacle to the success of chemotherapy in cancer treatment. The development of new drug candidates which may serve as P-glycoprotein (P-gp) efflux pump inhibitors is a promising strategy. Selenium analogues of natural products, such as flavonoids, offer an interesting motif from the perspective of drug design. Herein, we report the biological evaluation of novel hybrid compounds, bearing both the flavone core (compounds 1–3) or a bioisosteric analogue core (compounds 4–6) and the triflyl functional group against Gram-positive and Gram-negative bacteria, yeasts, nematodes, and human colonic adenocarcinoma cells. Results show that these flavones and analogues of flavones inhibited the activity of multidrug resistance (MDR) efflux pump ABCB1 (P-glycoprotein, P-gp). Moreover, the results of the rhodamine 123 accumulation assay demonstrated a dose-dependent inhibition of the abovementioned efflux pump. Three compounds (4, 5, and 6) exhibited potent inhibitory activity, much stronger than the positive control, verapamil. Thus, these chalcogen bioisosteric analogues of flavones become an interesting class of compounds which could be considered as P-gp efflux pump inhibitors in the therapy of MDR cancer. Moreover, all the compounds served as promising adjuvants in the cancer treatment, since they exhibited the P-gp efflux pump modulating activity.
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spelling pubmed-77630082020-12-27 Antimicrobial, Anticancer and Multidrug-Resistant Reversing Activity of Novel Oxygen-, Sulfur- and Selenoflavones and Bioisosteric Analogues Marć, Małgorzata Anna Kincses, Annamária Rácz, Bálint Nasim, Muhammad Jawad Sarfraz, Muhammad Lázaro-Milla, Carlos Domínguez-Álvarez, Enrique Jacob, Claus Spengler, Gabriella Almendros, Pedro Pharmaceuticals (Basel) Article Multidrug resistance of cancer cells to cytotoxic drugs still remains a major obstacle to the success of chemotherapy in cancer treatment. The development of new drug candidates which may serve as P-glycoprotein (P-gp) efflux pump inhibitors is a promising strategy. Selenium analogues of natural products, such as flavonoids, offer an interesting motif from the perspective of drug design. Herein, we report the biological evaluation of novel hybrid compounds, bearing both the flavone core (compounds 1–3) or a bioisosteric analogue core (compounds 4–6) and the triflyl functional group against Gram-positive and Gram-negative bacteria, yeasts, nematodes, and human colonic adenocarcinoma cells. Results show that these flavones and analogues of flavones inhibited the activity of multidrug resistance (MDR) efflux pump ABCB1 (P-glycoprotein, P-gp). Moreover, the results of the rhodamine 123 accumulation assay demonstrated a dose-dependent inhibition of the abovementioned efflux pump. Three compounds (4, 5, and 6) exhibited potent inhibitory activity, much stronger than the positive control, verapamil. Thus, these chalcogen bioisosteric analogues of flavones become an interesting class of compounds which could be considered as P-gp efflux pump inhibitors in the therapy of MDR cancer. Moreover, all the compounds served as promising adjuvants in the cancer treatment, since they exhibited the P-gp efflux pump modulating activity. MDPI 2020-12-11 /pmc/articles/PMC7763008/ /pubmed/33322409 http://dx.doi.org/10.3390/ph13120453 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
Marć, Małgorzata Anna
Kincses, Annamária
Rácz, Bálint
Nasim, Muhammad Jawad
Sarfraz, Muhammad
Lázaro-Milla, Carlos
Domínguez-Álvarez, Enrique
Jacob, Claus
Spengler, Gabriella
Almendros, Pedro
Antimicrobial, Anticancer and Multidrug-Resistant Reversing Activity of Novel Oxygen-, Sulfur- and Selenoflavones and Bioisosteric Analogues
title Antimicrobial, Anticancer and Multidrug-Resistant Reversing Activity of Novel Oxygen-, Sulfur- and Selenoflavones and Bioisosteric Analogues
title_full Antimicrobial, Anticancer and Multidrug-Resistant Reversing Activity of Novel Oxygen-, Sulfur- and Selenoflavones and Bioisosteric Analogues
title_fullStr Antimicrobial, Anticancer and Multidrug-Resistant Reversing Activity of Novel Oxygen-, Sulfur- and Selenoflavones and Bioisosteric Analogues
title_full_unstemmed Antimicrobial, Anticancer and Multidrug-Resistant Reversing Activity of Novel Oxygen-, Sulfur- and Selenoflavones and Bioisosteric Analogues
title_short Antimicrobial, Anticancer and Multidrug-Resistant Reversing Activity of Novel Oxygen-, Sulfur- and Selenoflavones and Bioisosteric Analogues
title_sort antimicrobial, anticancer and multidrug-resistant reversing activity of novel oxygen-, sulfur- and selenoflavones and bioisosteric analogues
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7763008/
https://www.ncbi.nlm.nih.gov/pubmed/33322409
http://dx.doi.org/10.3390/ph13120453
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