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铜螯合物N-(2-羟基苯乙酮)甘氨酸铜在表达ABC转运蛋白的细胞系中的调节活性

Modulatory Activity of the Copper Chelate, Copper N-(2-Hydroxy Acetophenone) Glycinate, in ABC-transporter-expressing Cell Lines.

作者信息

Hartinger Eva-Maria, Mahringer Anne, Choudhuri Soumitra Kumar, Fricker Gert, Efferth Thomas

机构信息

Department of Pharmaceutical Technology, Institute of Pharmacy and Molecular Biotechnology, Ruprecht Karls University, Heidelberg, Germany.

Department of Pharmaceutical Biology, Institute of Pharmaceutical and Biomedical Sciences, Johannes Gutenberg University, Mainz, Germany.

出版信息

Anticancer Res. 2023 Mar;43(3):1031-1041. doi: 10.21873/anticanres.16248.

Abstract

BACKGROUND/AIM: Metal-containing compounds (e.g., platinum complexes) belong to the standard armamentarium of cancer chemotherapy. Copper N-(2-hydroxy acetophenone) glycinate (CuNG) exerts anticancer activity in vitro and in vivo and modulates drug resistance related to glutathione or P-glycoprotein. The potential of CuNG to interact with ATP-binding cassette (ABC) transporters has not been fully explored yet. This study focused on the modulatory effects of CuNG on four ABC transporters (MRP1, MRP1, BCRP, and P-glycoprotein).

MATERIALS AND METHODS

Cell viability, drug uptake and ABC transporter expression were measured by resazurin assays, flow cytometry, and ELISA in HL60AR, MDCKII-hBCRP, and Caco-2 cells.

RESULTS

CuNG increased doxorubicin sensitivity of MRP1-over-expressing HL60AR with a similar efficacy as the control MRP1 inhibitor MK571. CuNG also increased MRP1's efflux activity. Comparable results were obtained with MDCKII cells over-expressing hBCRP. ELISA assays revealed that the expression of MRP1 in HL60AR cells and BCRP in MDCKII- cells was predominant but other ABC-transporters were also expressed at lower levels. Caco-2 cells expressed high levels of MRP2, but MRP1, BCRP, and P-glycoprotein were also expressed. In contrast to the two former cell lines, CuNG increased doxorubicin resistance and decreased efflux activity in Caco-2 cells.

CONCLUSION

CuNG exerted different modulatory activities towards ABC-transporter-expressing cells. While CuNG-mediated ABC-transporter inhibition may improve tumor chemotherapy (like in HL60AR and MDCKII-hBCRP cells), CuNG-mediated enhanced ABC-transport (like in Caco-2 cells) may be a new strategy to ameliorate inflammatory diseases associated with decreased ABC-transporter expression such as ulcerative colitis.

摘要

背景/目的:含金属化合物(如铂配合物)属于癌症化疗的标准药物库。甘氨酸 - N -(2 - 羟基苯乙酮)铜(CuNG)在体外和体内均具有抗癌活性,并能调节与谷胱甘肽或P - 糖蛋白相关的耐药性。CuNG与ATP结合盒(ABC)转运蛋白相互作用的潜力尚未得到充分探索。本研究聚焦于CuNG对四种ABC转运蛋白(MRP1、MRP1、BCRP和P - 糖蛋白)的调节作用。

材料与方法

通过刃天青法、流式细胞术和酶联免疫吸附测定法(ELISA)在HL60AR、MDCKII - hBCRP和Caco - 2细胞中测量细胞活力、药物摄取和ABC转运蛋白表达。

结果

CuNG提高了过表达MRP1的HL60AR细胞对多柔比星的敏感性,其效果与对照MRP1抑制剂MK571相似。CuNG还增强了MRP1的外排活性。在过表达hBCRP的MDCKII细胞中也获得了类似结果。ELISA分析显示,HL60AR细胞中MRP1和MDCKII细胞中BCRP的表达占主导,但其他ABC转运蛋白也有较低水平的表达。Caco - 2细胞高水平表达MRP2,但也表达MRP1、BCRP和P - 糖蛋白。与前两种细胞系不同,CuNG增加了Caco - 2细胞对多柔比星的耐药性并降低了外排活性。

结论

CuNG对表达ABC转运蛋白的细胞具有不同的调节活性。虽然CuNG介导的ABC转运蛋白抑制可能改善肿瘤化疗(如在HL60AR和MDCKII - hBCRP细胞中),但CuNG介导的ABC转运增强(如在Caco - 2细胞中)可能是改善与ABC转运蛋白表达降低相关的炎症性疾病(如溃疡性结肠炎)的新策略。

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