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Pentagalloyl Glucose-Targeted Inhibition of P-Glycoprotein and Re-Sensitization of Multidrug-Resistant Leukemic Cells (K562/ADR) to Doxorubicin: In Silico and Functional Studies

Combining phytochemicals with chemotherapeutic drugs has demonstrated the potential to surmount drug resistance. In this paper, we explore the efficacy of pentagalloyl glucose (PGG) in modulating P-gp and reversing multidrug resistance (MDR) in drug-resistant leukemic cells (K562/ADR). The cytotoxic...

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Autores principales: Dechsupa, Nathupakorn, Khamto, Nopawit, Chawapun, Pornthip, Siriphong, Sadanon, Innuan, Phattarawadee, Suwan, Authaphinya, Luangsuep, Thitiworada, Photilimthana, Nichakorn, Maita, Witchayaporn, Thanacharttanatchaya, Rossarin, Sangthong, Padchanee, Meepowpan, Puttinan, Udomtanakunchai, Chatchanok, Kantapan, Jiraporn
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10535865/
https://www.ncbi.nlm.nih.gov/pubmed/37765000
http://dx.doi.org/10.3390/ph16091192
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author Dechsupa, Nathupakorn
Khamto, Nopawit
Chawapun, Pornthip
Siriphong, Sadanon
Innuan, Phattarawadee
Suwan, Authaphinya
Luangsuep, Thitiworada
Photilimthana, Nichakorn
Maita, Witchayaporn
Thanacharttanatchaya, Rossarin
Sangthong, Padchanee
Meepowpan, Puttinan
Udomtanakunchai, Chatchanok
Kantapan, Jiraporn
author_facet Dechsupa, Nathupakorn
Khamto, Nopawit
Chawapun, Pornthip
Siriphong, Sadanon
Innuan, Phattarawadee
Suwan, Authaphinya
Luangsuep, Thitiworada
Photilimthana, Nichakorn
Maita, Witchayaporn
Thanacharttanatchaya, Rossarin
Sangthong, Padchanee
Meepowpan, Puttinan
Udomtanakunchai, Chatchanok
Kantapan, Jiraporn
author_sort Dechsupa, Nathupakorn
collection PubMed
description Combining phytochemicals with chemotherapeutic drugs has demonstrated the potential to surmount drug resistance. In this paper, we explore the efficacy of pentagalloyl glucose (PGG) in modulating P-gp and reversing multidrug resistance (MDR) in drug-resistant leukemic cells (K562/ADR). The cytotoxicity of PGG was evaluated using a CCK-8 assay, and cell apoptosis was assessed using flow cytometry. Western blotting was used to analyze protein expression levels. P-glycoprotein (P-gp) activity was evaluated by monitoring the kinetics of P-gp-mediated efflux of pirarubicin (THP). Finally, molecular docking, molecular dynamics simulation, and molecular mechanics with generalized Born and surface area solvation (MM-GBSA) calculation were conducted to investigate drug–protein interactions. We found that PGG selectively induced cytotoxicity in K562/ADR cells and enhanced sensitivity to doxorubicin (DOX), indicating its potential as a reversal agent. PGG reduced the expression of P-gp and its gene transcript levels. Additionally, PGG inhibited P-gp-mediated efflux and increased intracellular drug accumulation in drug-resistant cells. Molecular dynamics simulations and MM-GBSA calculation provided insights into the binding affinity of PGG to P-gp, suggesting that PGG binds tightly to both the substrate and the ATP binding sites of P-gp. These findings support the potential of PGG to target P-gp, reverse drug resistance, and enhance the efficacy of anticancer therapies.
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spelling pubmed-105358652023-09-29 Pentagalloyl Glucose-Targeted Inhibition of P-Glycoprotein and Re-Sensitization of Multidrug-Resistant Leukemic Cells (K562/ADR) to Doxorubicin: In Silico and Functional Studies Dechsupa, Nathupakorn Khamto, Nopawit Chawapun, Pornthip Siriphong, Sadanon Innuan, Phattarawadee Suwan, Authaphinya Luangsuep, Thitiworada Photilimthana, Nichakorn Maita, Witchayaporn Thanacharttanatchaya, Rossarin Sangthong, Padchanee Meepowpan, Puttinan Udomtanakunchai, Chatchanok Kantapan, Jiraporn Pharmaceuticals (Basel) Article Combining phytochemicals with chemotherapeutic drugs has demonstrated the potential to surmount drug resistance. In this paper, we explore the efficacy of pentagalloyl glucose (PGG) in modulating P-gp and reversing multidrug resistance (MDR) in drug-resistant leukemic cells (K562/ADR). The cytotoxicity of PGG was evaluated using a CCK-8 assay, and cell apoptosis was assessed using flow cytometry. Western blotting was used to analyze protein expression levels. P-glycoprotein (P-gp) activity was evaluated by monitoring the kinetics of P-gp-mediated efflux of pirarubicin (THP). Finally, molecular docking, molecular dynamics simulation, and molecular mechanics with generalized Born and surface area solvation (MM-GBSA) calculation were conducted to investigate drug–protein interactions. We found that PGG selectively induced cytotoxicity in K562/ADR cells and enhanced sensitivity to doxorubicin (DOX), indicating its potential as a reversal agent. PGG reduced the expression of P-gp and its gene transcript levels. Additionally, PGG inhibited P-gp-mediated efflux and increased intracellular drug accumulation in drug-resistant cells. Molecular dynamics simulations and MM-GBSA calculation provided insights into the binding affinity of PGG to P-gp, suggesting that PGG binds tightly to both the substrate and the ATP binding sites of P-gp. These findings support the potential of PGG to target P-gp, reverse drug resistance, and enhance the efficacy of anticancer therapies. MDPI 2023-08-22 /pmc/articles/PMC10535865/ /pubmed/37765000 http://dx.doi.org/10.3390/ph16091192 Text en © 2023 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
Dechsupa, Nathupakorn
Khamto, Nopawit
Chawapun, Pornthip
Siriphong, Sadanon
Innuan, Phattarawadee
Suwan, Authaphinya
Luangsuep, Thitiworada
Photilimthana, Nichakorn
Maita, Witchayaporn
Thanacharttanatchaya, Rossarin
Sangthong, Padchanee
Meepowpan, Puttinan
Udomtanakunchai, Chatchanok
Kantapan, Jiraporn
Pentagalloyl Glucose-Targeted Inhibition of P-Glycoprotein and Re-Sensitization of Multidrug-Resistant Leukemic Cells (K562/ADR) to Doxorubicin: In Silico and Functional Studies
title Pentagalloyl Glucose-Targeted Inhibition of P-Glycoprotein and Re-Sensitization of Multidrug-Resistant Leukemic Cells (K562/ADR) to Doxorubicin: In Silico and Functional Studies
title_full Pentagalloyl Glucose-Targeted Inhibition of P-Glycoprotein and Re-Sensitization of Multidrug-Resistant Leukemic Cells (K562/ADR) to Doxorubicin: In Silico and Functional Studies
title_fullStr Pentagalloyl Glucose-Targeted Inhibition of P-Glycoprotein and Re-Sensitization of Multidrug-Resistant Leukemic Cells (K562/ADR) to Doxorubicin: In Silico and Functional Studies
title_full_unstemmed Pentagalloyl Glucose-Targeted Inhibition of P-Glycoprotein and Re-Sensitization of Multidrug-Resistant Leukemic Cells (K562/ADR) to Doxorubicin: In Silico and Functional Studies
title_short Pentagalloyl Glucose-Targeted Inhibition of P-Glycoprotein and Re-Sensitization of Multidrug-Resistant Leukemic Cells (K562/ADR) to Doxorubicin: In Silico and Functional Studies
title_sort pentagalloyl glucose-targeted inhibition of p-glycoprotein and re-sensitization of multidrug-resistant leukemic cells (k562/adr) to doxorubicin: in silico and functional studies
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10535865/
https://www.ncbi.nlm.nih.gov/pubmed/37765000
http://dx.doi.org/10.3390/ph16091192
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