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Phytoestrogens/flavonoids reverse breast cancer resistance protein/ABCG2-mediated multidrug resistance
Yasuo Imai1, Satomi Tsukahara, Sakiyo Asada
1Division of Molecular Biotherapy, Japanese Foundation for Cancer Research, Tokyo, Japan.
Abstract:
Breast cancer resistance protein (BCRP), also called ABCG2, confers resistance to anticancer agents such as 7-ethyl-10-hydroxycamptothecin (SN-38), mitoxantrone, and topotecan. We found previously that sulfated estrogens are physiologic substrates of BCRP. Flavonoids with weak estrogenic activities are called phytoestrogens. In this study, we show that phytoestrogens/flavonoids, such as genistein, naringenin, acacetin, and kaempferol, potentiated the cytotoxicity of SN-38 and mitoxantrone in BCRP-transduced K562 (K562/BCRP) cells. Some glycosylated flavonoids, such as naringenin-7-glucoside, also effectively inhibited BCRP. These flavonoids showed marginal effect on the drug sensitivity of K562 cells. Genistein and naringenin reversed neither P-glycoprotein-mediated vincristine resistance nor multidrug resistance-related protein 1-mediated VP-16 resistance. Genistein and naringenin increased cellular accumulation of topotecan in K562/BCRP cells. K562/BCRP cells also accumulated less [(3)H]genistein than K562 cells. [(3)H]genistein transport in the basal-to-apical direction was greater in BCRP-transduced LLC-PK1 (LLC/BCRP) cells, which express exogenous BCRP in the apical membrane, than in parental cells. Fumitremorgin C abolished the increased transport of [(3)H]genistein in LLC/BCRP cells compared with parental cells. TLC analysis revealed that genistein was transported in its native form but not in its metabolized form. These results suggest that genistein is among the natural substrates of BCRP and competitively inhibits BCRP-mediated drug efflux. The results have two important clinical implications: (a) flavonoids and glycosylated flavonoids may be useful in overcoming BCRP-mediated drug resistance in tumor cells; and (b) coadministration of flavonoids with BCRP-substrate antitumor agents may alter the pharmacokinetics and consequently increase the toxicity of specific antitumor agents in cancer patients.
Insights
Flavonoids like genistein can overcome cancer drug resistance mediated by Breast cancer resistance protein (BCRP). These compounds may enhance chemotherapy effectiveness by inhibiting BCRP drug efflux.
Area of Science:
- Pharmacology
- Biochemistry
- Cancer Biology
Background:
- Breast cancer resistance protein (BCRP/ABCG2) is a transporter protein.
- BCRP confers resistance to several anticancer drugs.
- Phytoestrogens are flavonoids with weak estrogenic activity.
Purpose of the Study:
- To investigate the interaction between flavonoids and BCRP.
- To determine if flavonoids can overcome BCRP-mediated drug resistance.
- To explore the clinical implications of flavonoids in cancer therapy.
Main Methods:
- Utilized BCRP-transduced K562 (K562/BCRP) and LLC-PK1 (LLC/BCRP) cell lines.
- Assessed the cytotoxicity of anticancer agents (SN-38, mitoxantrone, topotecan) in the presence of flavonoids.
- Measured cellular drug accumulation and [(3)H]genistein transport.
- Used Fumitremorgin C to inhibit BCRP function.
- Analyzed genistein transport using TLC.
Main Results:
- Flavonoids (genistein, naringenin, acacetin, kaempferol) potentiated SN-38 and mitoxantrone cytotoxicity in K562/BCRP cells.
- Some flavonoids and glycosylated flavonoids inhibited BCRP.
- Genistein and naringenin increased topotecan accumulation in K562/BCRP cells.
- Genistein is a substrate of BCRP and competitively inhibits BCRP-mediated drug efflux.
- Flavonoids did not affect P-glycoprotein or MRP1-mediated resistance.
Conclusions:
- Flavonoids, including genistein, are natural substrates of BCRP and can inhibit its drug efflux function.
- Flavonoids may be valuable in overcoming BCRP-mediated drug resistance in cancer cells.
- Coadministration of flavonoids with BCRP-substrate anticancer drugs could alter pharmacokinetics and potentially increase toxicity.
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