Cepharanthine is a potent reversal agent for MRP7(ABCC10)-mediated multidrug resistance |
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Authors: | Ying Zhou Tong Shen Zhi Shi Tatsuhiko Furukawa Xing-Xiang Peng Xiang Chen Zhe-Sheng Chen |
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Affiliation: | a Department of Pharmaceutical Sciences, College of Pharmacy and Allied Health Professions, St. John's University, Jamaica, NY, United States b Medical Science, Fox Chase Cancer Center, Philadelphia, PA, United States c Department of Dermatology, Xiang Ya Hospital, Central South University, Changsa, China d Department of Molecular Oncology, Kagoshima University Graduate School of Medical and Dental Sciences, Kagoshima, Japan e University of Illinois at Chicago, Department of Medicine, and Cancer Center, Chicago, IL, United States |
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Abstract: | ![]() Multidrug resistance protein 7 (MRP7; ABCC10) is an ABC transporter that confers resistance to anticancer agents such as the taxanes. We previously reported that several inhibitors of P-gp and MRP1 were able to inhibit the in vitro transport of E217βG by MRP7 in membrane vesicles transport assays. However, compounds that are able to reverse MRP7-mediated cellular resistance have not been identified. In this study, we examined the effects of cepharanthine (6′,12′-dimethoxy-2,2′-dimethyl-6,7-[methylenebis(oxy)]oxyacanthan), an herbal extract isolated from Stephania cepharantha Hayata, to reverse paclitaxel resistance in MRP7-transfected HEK293 cells. Cepharanthine, at 2 μM, completely reversed paclitaxel resistance in MRP7-transfected cells. In contrast, the effect of cepharanthine on the parental transfected cells was significantly less than that on the MRP7-transfected cells. In addition, cepharanthine significantly increased the accumulation of paclitaxel in MRP7-transfected cells almost to the level of control cells in the absence of cepharanthine. The efflux of paclitaxel from MRP7-transfected cells was also significantly inhibited by cepharanthine. The ability of cepharanthine to inhibit MRP7 was analyzed in membrane vesicle assays using E217βG, an established substrate of MRP7, as a probe. E217βG transport was competitively inhibited by cepharanthine with a Ki value of 4.86 μM. These findings indicate that cepharanthine reverses MRP7-mediated resistance to paclitaxel in a competitive manner. |
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Keywords: | MDR, multidrug resistance ABC, ATP-binding cassette BCRP/ABCG2/MXR, breast cancer resistance protein P-gp/MDR1/ABCB1, P-glycoprotein MRP7/ABCC10, multidrug resistance protein 7 cepharanthine, 6&prime ,12&prime -dimethoxy-2,2&prime -dimethyl-6,7-[methylenebis(oxy)oxyacan-than] E217βG, 17-β-estradiol-(17-beta-d-glucuronide) VCR, vincristine VBL, vinblastine MTT, (3-(4,5-dimethylthiazol-2-yl)-3, 5-diphenylformazan |
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