Cargando…

Hypoxia‐Induced Acidification Causes Mitoxantrone Resistance Not Mediated by Drug Transporters in Human Breast Cancer Cells

Hypoxia has clinically been associated with resistance to chemotherapy. The aim of this study was to investigate whether hypoxia induces resistance to doxorubicin and mitoxantrone, two common drugs in cancer treatment, in MCF‐7 breast cancer cells, and SW1573 non‐small lung cancer cells. In addition...

Descripción completa

Detalles Bibliográficos
Autores principales: Greijer, A. E., de Jong, M. C., Scheffer, G. L., Shvarts, A., van Diest, P. J., van der Wall, E.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: IOS Press 2005
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4617579/
https://www.ncbi.nlm.nih.gov/pubmed/15750206
http://dx.doi.org/10.1155/2005/236045
_version_ 1782396816859332608
author Greijer, A. E.
de Jong, M. C.
Scheffer, G. L.
Shvarts, A.
van Diest, P. J.
van der Wall, E.
author_facet Greijer, A. E.
de Jong, M. C.
Scheffer, G. L.
Shvarts, A.
van Diest, P. J.
van der Wall, E.
author_sort Greijer, A. E.
collection PubMed
description Hypoxia has clinically been associated with resistance to chemotherapy. The aim of this study was to investigate whether hypoxia induces resistance to doxorubicin and mitoxantrone, two common drugs in cancer treatment, in MCF‐7 breast cancer cells, and SW1573 non‐small lung cancer cells. In addition, the role of drug transporters P‐gp, BCRP and MRP1 was analysed. Hypoxia induced resistance in MCF‐7 cells to mitoxantrone shifted the IC(50) value from 0.09 μM (±0.01) to 0.54 μM (±0.06) under hypoxia, whereas survival of MCF‐7 and SW1573 cells in the presence of doxorubicin was not altered. Accumulation of mitoxantrone and daunorubicin, a doxorubicin fluorescent homologue, appeared to be 5.3 and 3.2 times lower in MCF‐7 cells, respectively. Cytotoxicity assays showed no increased functionality of the drug transporters P‐gp, BCRP and MRP1 under hypoxia. In addition, protein levels of these drug transporters were not changed. Medium of the MCF‐7 cells became more acidic under hypoxia thereby causing a decreased uptake of mitoxantrone. Hypoxia induces mitoxantrone resistance in MCF‐7 cells not mediated by the three major MDR transporters. Hypoxia‐induced acidification may cause this resistance by decreased cellular uptake together with a lowered cytotoxicity due to pH‐dependent topoisomerase type II activity.
format Online
Article
Text
id pubmed-4617579
institution National Center for Biotechnology Information
language English
publishDate 2005
publisher IOS Press
record_format MEDLINE/PubMed
spelling pubmed-46175792016-01-12 Hypoxia‐Induced Acidification Causes Mitoxantrone Resistance Not Mediated by Drug Transporters in Human Breast Cancer Cells Greijer, A. E. de Jong, M. C. Scheffer, G. L. Shvarts, A. van Diest, P. J. van der Wall, E. Cell Oncol Other Hypoxia has clinically been associated with resistance to chemotherapy. The aim of this study was to investigate whether hypoxia induces resistance to doxorubicin and mitoxantrone, two common drugs in cancer treatment, in MCF‐7 breast cancer cells, and SW1573 non‐small lung cancer cells. In addition, the role of drug transporters P‐gp, BCRP and MRP1 was analysed. Hypoxia induced resistance in MCF‐7 cells to mitoxantrone shifted the IC(50) value from 0.09 μM (±0.01) to 0.54 μM (±0.06) under hypoxia, whereas survival of MCF‐7 and SW1573 cells in the presence of doxorubicin was not altered. Accumulation of mitoxantrone and daunorubicin, a doxorubicin fluorescent homologue, appeared to be 5.3 and 3.2 times lower in MCF‐7 cells, respectively. Cytotoxicity assays showed no increased functionality of the drug transporters P‐gp, BCRP and MRP1 under hypoxia. In addition, protein levels of these drug transporters were not changed. Medium of the MCF‐7 cells became more acidic under hypoxia thereby causing a decreased uptake of mitoxantrone. Hypoxia induces mitoxantrone resistance in MCF‐7 cells not mediated by the three major MDR transporters. Hypoxia‐induced acidification may cause this resistance by decreased cellular uptake together with a lowered cytotoxicity due to pH‐dependent topoisomerase type II activity. IOS Press 2005 2005-02-28 /pmc/articles/PMC4617579/ /pubmed/15750206 http://dx.doi.org/10.1155/2005/236045 Text en Copyright © 2005 Hindawi Publishing Corporation and the authors.
spellingShingle Other
Greijer, A. E.
de Jong, M. C.
Scheffer, G. L.
Shvarts, A.
van Diest, P. J.
van der Wall, E.
Hypoxia‐Induced Acidification Causes Mitoxantrone Resistance Not Mediated by Drug Transporters in Human Breast Cancer Cells
title Hypoxia‐Induced Acidification Causes Mitoxantrone Resistance Not Mediated by Drug Transporters in Human Breast Cancer Cells
title_full Hypoxia‐Induced Acidification Causes Mitoxantrone Resistance Not Mediated by Drug Transporters in Human Breast Cancer Cells
title_fullStr Hypoxia‐Induced Acidification Causes Mitoxantrone Resistance Not Mediated by Drug Transporters in Human Breast Cancer Cells
title_full_unstemmed Hypoxia‐Induced Acidification Causes Mitoxantrone Resistance Not Mediated by Drug Transporters in Human Breast Cancer Cells
title_short Hypoxia‐Induced Acidification Causes Mitoxantrone Resistance Not Mediated by Drug Transporters in Human Breast Cancer Cells
title_sort hypoxia‐induced acidification causes mitoxantrone resistance not mediated by drug transporters in human breast cancer cells
topic Other
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4617579/
https://www.ncbi.nlm.nih.gov/pubmed/15750206
http://dx.doi.org/10.1155/2005/236045
work_keys_str_mv AT greijerae hypoxiainducedacidificationcausesmitoxantroneresistancenotmediatedbydrugtransportersinhumanbreastcancercells
AT dejongmc hypoxiainducedacidificationcausesmitoxantroneresistancenotmediatedbydrugtransportersinhumanbreastcancercells
AT scheffergl hypoxiainducedacidificationcausesmitoxantroneresistancenotmediatedbydrugtransportersinhumanbreastcancercells
AT shvartsa hypoxiainducedacidificationcausesmitoxantroneresistancenotmediatedbydrugtransportersinhumanbreastcancercells
AT vandiestpj hypoxiainducedacidificationcausesmitoxantroneresistancenotmediatedbydrugtransportersinhumanbreastcancercells
AT vanderwalle hypoxiainducedacidificationcausesmitoxantroneresistancenotmediatedbydrugtransportersinhumanbreastcancercells