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Ginsenoside Rg5 overcomes chemotherapeutic multidrug resistance mediated by ABCB1 transporter: in vitro and in vivo study

BACKGROUND: Multidrug resistance (MDR) to chemotherapy drugs remains a major challenge in clinical cancer treatment. Here we investigated whether and how ginsenoside Rg5 overcomes the MDR mediated by ABCB1 transporter in vitro and in vivo. METHODS: Cytotoxicity and colon formation as well as the int...

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Autores principales: Feng, Sen-Ling, Luo, Hai-Bin, Cai, Liang, Zhang, Jie, Wang, Dan, Chen, Ying-Jiang, Zhan, Huan-Xing, Jiang, Zhi-Hong, Xie, Ying
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Elsevier 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7031741/
https://www.ncbi.nlm.nih.gov/pubmed/32148406
http://dx.doi.org/10.1016/j.jgr.2018.10.007
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author Feng, Sen-Ling
Luo, Hai-Bin
Cai, Liang
Zhang, Jie
Wang, Dan
Chen, Ying-Jiang
Zhan, Huan-Xing
Jiang, Zhi-Hong
Xie, Ying
author_facet Feng, Sen-Ling
Luo, Hai-Bin
Cai, Liang
Zhang, Jie
Wang, Dan
Chen, Ying-Jiang
Zhan, Huan-Xing
Jiang, Zhi-Hong
Xie, Ying
author_sort Feng, Sen-Ling
collection PubMed
description BACKGROUND: Multidrug resistance (MDR) to chemotherapy drugs remains a major challenge in clinical cancer treatment. Here we investigated whether and how ginsenoside Rg5 overcomes the MDR mediated by ABCB1 transporter in vitro and in vivo. METHODS: Cytotoxicity and colon formation as well as the intracellular accumulation of ABCB1 substrates were carried out in MDR cancer cells A2780/T and A549/T for evaluating the reversal effects of Rg5. The expressions of ABCB1 and Nrf2/AKT pathway were determined by Western blotting. An A549/T cell xenograft model was established to investigate the MDR reversal activity of Rg5 in vivo. RESULTS: Rg5 significantly reversed ABCB1-mediated MDR by increasing the intracellular accumulation of ABCB1 substrates without altering protein expression of ABCB1. Moreover, Rg5 activated ABCB1 ATPase and reduced verapamil-stimulated ATPase activity, suggesting a high affinity of Rg5 to ABCB1 binding site which was further demonstrated by molecular docking analysis. In addition, co-treatment of Rg5 and docetaxel (TXT) suppressed the expression of Nrf2 and phosphorylation of AKT, indicating that sensitizing effect of Rg5 associated with AKT/Nrf2 pathway. In nude mice bearing A549/T tumor, Rg5 and TXT treatment significantly suppressed the growth of drug-resistant tumors without increase in toxicity when compared to TXT given alone at same dose. CONCLUSION: Therefore, combination therapy of Rg5 and chemotherapy drugs is a strategy for the adjuvant chemotherapy, which encourages further pharmacokinetic and clinical studies.
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spelling pubmed-70317412020-03-06 Ginsenoside Rg5 overcomes chemotherapeutic multidrug resistance mediated by ABCB1 transporter: in vitro and in vivo study Feng, Sen-Ling Luo, Hai-Bin Cai, Liang Zhang, Jie Wang, Dan Chen, Ying-Jiang Zhan, Huan-Xing Jiang, Zhi-Hong Xie, Ying J Ginseng Res Pharmacology and Physiology BACKGROUND: Multidrug resistance (MDR) to chemotherapy drugs remains a major challenge in clinical cancer treatment. Here we investigated whether and how ginsenoside Rg5 overcomes the MDR mediated by ABCB1 transporter in vitro and in vivo. METHODS: Cytotoxicity and colon formation as well as the intracellular accumulation of ABCB1 substrates were carried out in MDR cancer cells A2780/T and A549/T for evaluating the reversal effects of Rg5. The expressions of ABCB1 and Nrf2/AKT pathway were determined by Western blotting. An A549/T cell xenograft model was established to investigate the MDR reversal activity of Rg5 in vivo. RESULTS: Rg5 significantly reversed ABCB1-mediated MDR by increasing the intracellular accumulation of ABCB1 substrates without altering protein expression of ABCB1. Moreover, Rg5 activated ABCB1 ATPase and reduced verapamil-stimulated ATPase activity, suggesting a high affinity of Rg5 to ABCB1 binding site which was further demonstrated by molecular docking analysis. In addition, co-treatment of Rg5 and docetaxel (TXT) suppressed the expression of Nrf2 and phosphorylation of AKT, indicating that sensitizing effect of Rg5 associated with AKT/Nrf2 pathway. In nude mice bearing A549/T tumor, Rg5 and TXT treatment significantly suppressed the growth of drug-resistant tumors without increase in toxicity when compared to TXT given alone at same dose. CONCLUSION: Therefore, combination therapy of Rg5 and chemotherapy drugs is a strategy for the adjuvant chemotherapy, which encourages further pharmacokinetic and clinical studies. Elsevier 2020-03 2018-11-08 /pmc/articles/PMC7031741/ /pubmed/32148406 http://dx.doi.org/10.1016/j.jgr.2018.10.007 Text en © 2018 The Korean Society of Ginseng, Published by Elsevier Korea LLC. http://creativecommons.org/licenses/by-nc-nd/4.0/ This is an open access article under the CC BY-NC-ND license (http://creativecommons.org/licenses/by-nc-nd/4.0/).
spellingShingle Pharmacology and Physiology
Feng, Sen-Ling
Luo, Hai-Bin
Cai, Liang
Zhang, Jie
Wang, Dan
Chen, Ying-Jiang
Zhan, Huan-Xing
Jiang, Zhi-Hong
Xie, Ying
Ginsenoside Rg5 overcomes chemotherapeutic multidrug resistance mediated by ABCB1 transporter: in vitro and in vivo study
title Ginsenoside Rg5 overcomes chemotherapeutic multidrug resistance mediated by ABCB1 transporter: in vitro and in vivo study
title_full Ginsenoside Rg5 overcomes chemotherapeutic multidrug resistance mediated by ABCB1 transporter: in vitro and in vivo study
title_fullStr Ginsenoside Rg5 overcomes chemotherapeutic multidrug resistance mediated by ABCB1 transporter: in vitro and in vivo study
title_full_unstemmed Ginsenoside Rg5 overcomes chemotherapeutic multidrug resistance mediated by ABCB1 transporter: in vitro and in vivo study
title_short Ginsenoside Rg5 overcomes chemotherapeutic multidrug resistance mediated by ABCB1 transporter: in vitro and in vivo study
title_sort ginsenoside rg5 overcomes chemotherapeutic multidrug resistance mediated by abcb1 transporter: in vitro and in vivo study
topic Pharmacology and Physiology
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7031741/
https://www.ncbi.nlm.nih.gov/pubmed/32148406
http://dx.doi.org/10.1016/j.jgr.2018.10.007
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