首页> 美国卫生研究院文献>Frontiers in Chemistry >Relevance of Copper and Organic Cation Transporters in the Activity and Transport Mechanisms of an Anticancer Cyclometallated Gold(III) Compound in Comparison to Cisplatin
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Relevance of Copper and Organic Cation Transporters in the Activity and Transport Mechanisms of an Anticancer Cyclometallated Gold(III) Compound in Comparison to Cisplatin

机译:与顺铂比较铜和有机阳离子转运蛋白在抗癌环金属化金(III)化合物的活性和转运机理中的相关性

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摘要

The molecular mechanisms of toxicity and cellular transport of anticancer metallodrugs, including platinum-based agents, have not yet been fully elucidated. The aim of our study was to investigate the relevance of copper transporters (CTR1 and ATP7A/B), organic cation transporters (OCT2) and the multidrug and toxin extrusion proteins (MATE) in the intracellular accumulation of a novel organometallic cytotoxic Au(III) compound in cancer cells in comparison to cisplatin. Specifically, the synthesis and characterization of the gold complex [Au(pyb-H)(PPh2Ar)Cl]PF6 (PPh2Ar = 3-[4-(diphenylphosphino)phenyl]-7-methoxy-2H-chromen-2-one] (>1), featuring a coumarin ligand endowed with “smart” fluorescence properties, have been achieved. Initially, the cytotoxic effects of both cisplatin and >1 were studied in a small panel of human cancer cells, and against a non-tumorigenic cell line in vitro. Thus, the human ovarian cancer cell line A2780 and its cisplatin resistant variant A2780cisR, were selected, being most sensitive to the treatment of the gold complex. Co-incubation of the metallodrugs with CuCl2 (a CTR1 substrate) increased the cytotoxic effects of both the Au(III) complex and cisplatin; while co-incubation with cimetidine (inhibitor of OCT2 and MATE) showed some effect only after 72 h incubation. ICP-MS (Inductively Coupled Plasma Mass Spectrometry) analysis of the cell extracts showed that co-incubation with CuCl2 increases Au and Cu accumulation in both cancer cell lines, in accordance with the enhanced antiproliferative effects. Conversely, for cisplatin, no increase in Pt content could be observed in both cell lines after co-incubation with either CuCl2 or cimetidine, excluding the involvement of CTR1, OCT2, and MATE in drug accumulation and overall anticancer effects. This result, together with the evidence for increased Cu content in A2780 cells after cisplatin co-treatment with CuCl2, suggests that copper accumulation is the reason for the observed enhanced anticancer effects in this cell line. Moreover, metal uptake studies in the same cell lines indicate that both >1 and cisplatin are not transported intracellularly by CTR1 and OCT2. Finally, preliminary fluorescence microscopy studies enabled the visualization of the sub-cellular distribution of the gold compound in A2780 cells, suggesting accumulation in specific cytosolic components/organelles.
机译:包括铂类药物在内的抗癌金属药物的毒性和细胞转运的分子机制尚未完全阐明。我们的研究目的是研究新型有机金属细胞毒性Au(III)在细胞内积累中铜转运蛋白(CTR1和ATP7A / B),有机阳离子转运蛋白(OCT2)以及多药和毒素挤出蛋白(MATE)的相关性。与顺铂相比,这种化合物在癌细胞中的作用更大。具体来说,金配合物[Au(py b -H)(PPh2Ar)Cl] PF6(PPh2Ar = 3- [4-(二苯基膦基)苯基] -7-甲氧基-2H -chromen-2-one](> 1 ),具有香豆素配体,具有“智能”荧光特性,最初具有顺铂和> 1 的细胞毒性作用在一个小小组人类癌细胞中研究了非肿瘤细胞系,从而选择了对卵巢癌最敏感的人类卵巢癌细胞系A2780及其对顺铂耐药的变体A2780cisR。金属药物与CuCl2(CTR1底物)的共同孵育增加了Au(III)络合物和顺铂的细胞毒性作用;而与西咪替丁(OCT2和MATE的抑制剂)共同孵育仅在72细胞提取物的ICP-MS(电感耦合等离子体质谱法)分析表明,共培养h根据增强的抗增殖作用,CuCl2可增加两种癌细胞系中的Au和Cu积累。相反,对于顺铂,在与CuCl2或西咪替丁共孵育后,两种细胞系中均未观察到Pt含量增加,但CTR1,OCT2和MATE与药物蓄积和总体抗癌作用无关。该结果以及在顺铂与CuCl2共同处理后A2780细胞中Cu含量增加的证据表明,铜积累是该细胞系中观察到的增强抗癌作用的原因。此外,在同一细胞系中对金属的吸收研究表明,> 1 和顺铂均不被CTR1和OCT2胞内转运。最后,初步的荧光显微镜研究使A2780细胞中金化合物的亚细胞分布可视化,表明在特定的细胞质组分/细胞器中积累。

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