首页> 美国卫生研究院文献>Drug Metabolism and Disposition >Calcitriol and Calcipotriol Modulate Transport Activity of ABC Transporters and Exhibit Selective Cytotoxicity in MRP1-overexpressing Cells
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Calcitriol and Calcipotriol Modulate Transport Activity of ABC Transporters and Exhibit Selective Cytotoxicity in MRP1-overexpressing Cells

机译:骨化三醇和骨化三醇调节ABC转运蛋白的转运活性并在MRP1过表达的细胞中表现出选择性的细胞毒性。

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摘要

Efflux transporters P-glycoprotein (P-gp/ABCB1), multidrug resistance protein 1 (MRP1/ABCC1), and breast cancer resistance protein (BCRP/ABCG2) can affect the efficacy and toxicity of a wide variety of drugs and are implicated in multidrug resistance (MDR). Eight test compounds, recently identified from an intramolecular FRET-based high throughput screening, were characterized for their interaction with MRP1. We report that the active metabolite of vitamin D , calcitriol, and its analog calcipotriol are selectively cytotoxic to MRP1-overexpressing cells, besides inhibiting transport function of P-gp, MRP1, and BCRP. Calcitriol and calcipotriol consistently displayed a potent inhibitory activity on MRP1-mediated doxorubicin and calcein efflux in MRP1-overexpressing H69AR and HEK293/MRP1 cells. Vesicular transport studies confirmed a strong inhibitory effect of calcitriol and calcipotriol on MRP1-mediated uptake of tritium-labeled estradiol glucuronide and leukotriene C . In cytotoxicity assays, MRP1-overexpressing cells exhibited hypersensitivity toward calcitriol and calcipotriol. Such collateral sensitivity, however, was not observed in HEK293/P-gp and HEK293/BCRP cells, although the vitamin D analogs inhibited calcein efflux in P-gp-overexpressing cells, and mitoxantrone efflux in BCRP-overexpressing cells. The selective cytotoxicity of calcitriol and calpotriol toward MRP1 over-expressing cells can be eliminated with MRP1 inhibitor MK571. Our data indicate a potential role of calcitriol and its analogs in targeting malignancies in which MRP1 expression is prominent and contributes to MDR.
机译:外排转运蛋白P糖蛋白(P-gp / ABCB1),多药抗性蛋白1(MRP1 / ABCC1)和乳腺癌抗药性蛋白(BCRP / ABCG2)可能影响多种药物的功效和毒性,并涉及多药抵抗力(MDR)。最近从基于分子内FRET的高通量筛选中鉴定出的八种测试化合物的特征在于它们与MRP1的相互作用。我们报道维生素D,骨化三醇及其类似物卡泊三醇的活性代谢产物对MRP1过表达的细胞具有选择性的细胞毒性,此外还抑制了P-gp,MRP1和BCRP的转运功能。骨化三醇和卡泊三醇在过表达MRP1的H69AR和HEK293 / MRP1细胞中始终表现出对MRP1介导的阿霉素和钙黄绿素外排的有效抑制活性。囊泡运输研究证实了骨化三醇和骨化三醇对MRP1介导的tri标记的雌二醇葡糖醛酸和白三烯C的摄取具有强烈的抑制作用。在细胞毒性测定中,过表达MRP1的细胞对骨化三醇和骨化三醇表现出超敏性。然而,尽管维生素D类似物抑制过表达P-gp的细胞中的钙黄绿素外排和抑制过表达BCRP的细胞中的米托蒽醌外排,但在HEK293 / P-gp和HEK293 / BCRP细胞中未观察到这种附带敏感性。用MRP1抑制剂MK571可以消除骨化三醇和骨化三醇对MRP1过表达细胞的选择性细胞毒性。我们的数据表明骨化三醇及其类似物在靶向恶性肿瘤中的潜在作用,在恶性肿瘤中MRP1表达突出并有助于MDR。

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