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Modulation of Multidrug Resistance by Cepharanthine in Fresh Human Gastrointestinal Tumor Cells

Tsukasa Hotta, Hiroshi Tanimura, Hiroki Yamaue, Makoto Iwahashi, Masaji Tani, Takuya Tsunoda, Mikiko Tamai, Kohei Noguchi, Shizuma Mizobata, Kazuo Arii, Hiroshi Terasawa

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Abstract

Resistance to doxorubicin (DOX) is mainly due to the effect of P-glycoprotein encoded by the multidrug resistance (MDR) gene. Cepharanthine (CEP) has been shown to circumvent multidrug resistance in P-glycoprotein-expressing cell lines. In the present study, we investigated the augmentation of DOX sensitivity by CEP using an MTT assay, and assessed the correlation between DOX sensitivity and P-glycoprotein expression by flow cytometry, in highly purified fresh human tumor cells obtained from 73 cancer patients. DOX sensitivity was decreased in proportion to P-glycoprotein expression. The cytotoxicity of DOX was increased by CEP in tumor cells possessing low DOX sensitivity. Moreover, there was a significant correlation between the effect of CEP on cytotoxicity and P-glycoprotein expression. Thus, CEP might be able to circumvent DOX resistance in cancer patients.

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What this paper is about

Resistance to doxorubicin (DOX) is mainly due to the effect of P-glycoprotein encoded by the multidrug resistance (MDR) gene. Cepharanthine (CEP) has been shown to circumvent multidrug resistance in P-glycoprotein-expressing cell lines. In the present study, we investigated the augmentation of DOX sensitivity by CEP using an MTT assay, and assessed the correlation between DOX sensitivity and P-glycoprotein expression by flow cytometry, in highly purified fresh human tumor cells obtained from 73 cancer patients. DOX sensitivity was decreased in proportion to P-glycoprotein expression. The cytotoxicity of DOX was increased by CEP in tumor cells possessing low DOX sensitivity. Moreover, there was a significant correlation between the effect of CEP on cytotoxicity and P-glycoprotein expression. Thus, CEP might be able to circumvent DOX resistance in cancer patients.

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Available abstract

Resistance to doxorubicin (DOX) is mainly due to the effect of P-glycoprotein encoded by the multidrug resistance (MDR) gene. Cepharanthine (CEP) has been shown to circumvent multidrug resistance in P-glycoprotein-expressing cell lines. In the present study, we investigated the augmentation of DOX sensitivity by CEP using an MTT assay, and assessed the correlation between DOX sensitivity and P-glycoprotein expression by flow cytometry, in highly purified fresh human tumor cells obtained from 73 cancer patients. DOX sensitivity was decreased in proportion to P-glycoprotein expression. The cytotoxicity of DOX was increased by CEP in tumor cells possessing low DOX sensitivity. Moreover, there was a significant correlation between the effect of CEP on cytotoxicity and P-glycoprotein expression. Thus, CEP might be able to circumvent DOX resistance in cancer patients.

Key concepts: P-glycoprotein, Multiple drug resistance, Doxorubicin, Cytotoxicity, MTT assay, Flow cytometry, Molecular biology, Glycoprotein

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