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The Multidrug Resistance‐associated Protein Gene Confers Drug Resistance in Human Gastric and Colon Cancers

To determine the expression of multidrug resistance‐associated protein (MRP) gene and its role in gastric and colon cancers, we analyzed 10 gastric and 10 colon non‐drug‐selected cell lines and a similar number of tissue samples of these cancers. We compared the expression of MRP and mdr1 mRNA in ce...

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Autores principales: Tomonaga, Michio, Oka, Mikio, Narasaki, Fumihiko, Fukuda, Minoru, Nakano, Reiji, Takatani, Hiroshi, Ikeda, Koki, Terashi, Kenji, Matsuo, Isao, Soda, Hiroshi, Cowan, Kenneth H., Kohno, Shigeru
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Blackwell Publishing Ltd 1996
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5921022/
https://www.ncbi.nlm.nih.gov/pubmed/9045962
http://dx.doi.org/10.1111/j.1349-7006.1996.tb03142.x
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author Tomonaga, Michio
Oka, Mikio
Narasaki, Fumihiko
Fukuda, Minoru
Nakano, Reiji
Takatani, Hiroshi
Ikeda, Koki
Terashi, Kenji
Matsuo, Isao
Soda, Hiroshi
Cowan, Kenneth H.
Kohno, Shigeru
author_facet Tomonaga, Michio
Oka, Mikio
Narasaki, Fumihiko
Fukuda, Minoru
Nakano, Reiji
Takatani, Hiroshi
Ikeda, Koki
Terashi, Kenji
Matsuo, Isao
Soda, Hiroshi
Cowan, Kenneth H.
Kohno, Shigeru
author_sort Tomonaga, Michio
collection PubMed
description To determine the expression of multidrug resistance‐associated protein (MRP) gene and its role in gastric and colon cancers, we analyzed 10 gastric and 10 colon non‐drug‐selected cell lines and a similar number of tissue samples of these cancers. We compared the expression of MRP and mdr1 mRNA in cell lines and tissues using reverse‐transcriptase polymerase chain reaction. In mdr1‐negative cells, the relationship between the level of MRP gene expression and sensitivity to anticancer drugs was examined. The effect of verapamil, an MRP‐modulating agent, was also examined in these cells. The expression of MRP gene in gastric cancer cell lines varied from a low to a high level, but mdr1 was not detected in any of these cell lines. Colon cancer cell lines expressed low to intermediate levels of MRP gene, and half of the cells co‐expressed low to high levels of mdr1. In tissue samples, the expression pattern of the two multidrug resistance (MDR) genes was broadly similar to that described for the cell lines, except that most of the gastric cancer tissue samples did express low levels of mdr1. No significant correlation was observed between the level of MRP gene expression and sensitivity to anticancer drugs in gastric and colon cell lines. However, verapamil significantly increased the sensitivity to etoposide, doxorubicin and vincristine in cells highly expressing MRP gene. Our results indicate that MRP gene may be important in conferring MDR in gastric and colon cancer cells.
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spelling pubmed-59210222018-05-11 The Multidrug Resistance‐associated Protein Gene Confers Drug Resistance in Human Gastric and Colon Cancers Tomonaga, Michio Oka, Mikio Narasaki, Fumihiko Fukuda, Minoru Nakano, Reiji Takatani, Hiroshi Ikeda, Koki Terashi, Kenji Matsuo, Isao Soda, Hiroshi Cowan, Kenneth H. Kohno, Shigeru Jpn J Cancer Res Article To determine the expression of multidrug resistance‐associated protein (MRP) gene and its role in gastric and colon cancers, we analyzed 10 gastric and 10 colon non‐drug‐selected cell lines and a similar number of tissue samples of these cancers. We compared the expression of MRP and mdr1 mRNA in cell lines and tissues using reverse‐transcriptase polymerase chain reaction. In mdr1‐negative cells, the relationship between the level of MRP gene expression and sensitivity to anticancer drugs was examined. The effect of verapamil, an MRP‐modulating agent, was also examined in these cells. The expression of MRP gene in gastric cancer cell lines varied from a low to a high level, but mdr1 was not detected in any of these cell lines. Colon cancer cell lines expressed low to intermediate levels of MRP gene, and half of the cells co‐expressed low to high levels of mdr1. In tissue samples, the expression pattern of the two multidrug resistance (MDR) genes was broadly similar to that described for the cell lines, except that most of the gastric cancer tissue samples did express low levels of mdr1. No significant correlation was observed between the level of MRP gene expression and sensitivity to anticancer drugs in gastric and colon cell lines. However, verapamil significantly increased the sensitivity to etoposide, doxorubicin and vincristine in cells highly expressing MRP gene. Our results indicate that MRP gene may be important in conferring MDR in gastric and colon cancer cells. Blackwell Publishing Ltd 1996-12 /pmc/articles/PMC5921022/ /pubmed/9045962 http://dx.doi.org/10.1111/j.1349-7006.1996.tb03142.x Text en
spellingShingle Article
Tomonaga, Michio
Oka, Mikio
Narasaki, Fumihiko
Fukuda, Minoru
Nakano, Reiji
Takatani, Hiroshi
Ikeda, Koki
Terashi, Kenji
Matsuo, Isao
Soda, Hiroshi
Cowan, Kenneth H.
Kohno, Shigeru
The Multidrug Resistance‐associated Protein Gene Confers Drug Resistance in Human Gastric and Colon Cancers
title The Multidrug Resistance‐associated Protein Gene Confers Drug Resistance in Human Gastric and Colon Cancers
title_full The Multidrug Resistance‐associated Protein Gene Confers Drug Resistance in Human Gastric and Colon Cancers
title_fullStr The Multidrug Resistance‐associated Protein Gene Confers Drug Resistance in Human Gastric and Colon Cancers
title_full_unstemmed The Multidrug Resistance‐associated Protein Gene Confers Drug Resistance in Human Gastric and Colon Cancers
title_short The Multidrug Resistance‐associated Protein Gene Confers Drug Resistance in Human Gastric and Colon Cancers
title_sort multidrug resistance‐associated protein gene confers drug resistance in human gastric and colon cancers
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5921022/
https://www.ncbi.nlm.nih.gov/pubmed/9045962
http://dx.doi.org/10.1111/j.1349-7006.1996.tb03142.x
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