首页> 外文期刊>Biochemical Pharmacology >Contribution of an unidentified sodium-dependent nucleoside transport system to the uptake and cytotoxicity of anthracycline in mouse M5076 ovarian sarcoma cells.
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Contribution of an unidentified sodium-dependent nucleoside transport system to the uptake and cytotoxicity of anthracycline in mouse M5076 ovarian sarcoma cells.

机译:一个未知的钠依赖性核苷转运系统对小鼠M5076卵巢肉瘤细胞中蒽环类吸收和细胞毒性的贡献。

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摘要

In the present study, we investigated whether an unidentified system for Na(+)-dependent nucleoside transport is expressed by mouse M5076 ovarian sarcoma cells, besides concentrative nucleoside transporter 2 (CNT2(M)), and is involved in the uptake and cytotoxicity of anthracyclines. In a transport assay involving CNT2(M)-transfectants, CNT2(M) was found to transport [(3)H]cytidine in a Na(+)-dependent manner, and 500 microM cytidine completely inhibited the Na(+)-dependent uptake of [(3)H]uridine via the transporter. In contrast, the Na(+)-dependent [(3)H]uridine uptake by M5076 cells decreased with 500 microM cytidine only to 70% of the control level. Furthermore, transfection of CNT2(M)-specific siRNAs into M5076 cells resulted in a reduction in the Na(+)-dependent uptake of [(3)H]uridine by only 23%, although the expression of CNT2(M) mRNA and Na(+)-dependent uptake of [(3)H]cytidine disappeared in the cells. The uptake of pirarubicin (THP), an anthracycline, by M5076 cells requiring extracellular Na(+) was significantly inhibited by 500 microM uridine, but not 500 microM cytidine. The Na(+)-dependent and cytidine-insensitive uptake of [(3)H]uridine and the that of THP by M5076 cells significantly increased on cotreatment with both cholate and taurocholate, and the enhancement of THP uptake by the bile acids was reversed by cotreatment with 500 microM uridine. Furthermore, the cytotoxicity of THP and doxorubicin, which were previously reported to be taken up via the same transporter, toward M5076 cells was enhanced by cotreatment with both the bile acids. Therefore, it was indicated that an unidentified Na(+)-dependent transport system for nucleosides is expressed by M5076 cells, and contributes to the uptake and cytotoxicity of the anthracyclines.
机译:在本研究中,我们调查了小鼠M5076卵巢肉瘤细胞除浓缩核苷转运蛋白2(CNT2(M))之外是否还表达了Na(+)依赖性核苷转运的未知系统,并参与了其摄取和细胞毒性。蒽环类药物。在涉及CNT2(M)-转染子的运输测定中,发现CNT2(M)以Na(+)依赖的方式运输[(3)H]胞苷,而500 microM胞苷完全抑制了Na(+)依赖通过转运蛋白吸收[(3)H]尿苷。相反,M5076细胞对Na(+)依赖性的[(3)H]尿苷摄取随500 microM胞嘧啶核苷的含量降低至对照水平的70%。此外,将CNT2(M)特异性siRNA转染到M5076细胞中导致[(3)H] uridine的Na(+)依赖性摄取减少了23%,尽管CNT2(M)mRNA和Na(+)依赖性的[(3)H]胞苷的摄取在细胞中消失。 500 microM尿苷可显着抑制需要细胞外Na(+)的M5076细胞对吡柔比星(THP)的吸收。 Na(+)依赖性和胞苷不敏感的[(3)H]尿苷和M5076细胞对THP的摄取在与胆酸盐和牛磺胆酸盐共同处理时显着增加,并且胆汁酸对THP摄取的增强被逆转通过与500 microM尿苷共同处理。此外,以前报道通过相同的转运蛋白吸收的THP和阿霉素对M5076细胞的细胞毒性通过与两种胆汁酸的共同处理得以增强。因此,表明M5076细胞表达了一个不确定的Na(+)依赖核苷的转运系统,并有助于蒽环类药物的摄取和细胞毒性。

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