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乙二醛双(缩硫代氨基甲酸盐)铜(II)配合物结构修饰对细胞铜摄取、铜介导的 ATP7A 转运和 P-糖蛋白介导外排的影响。

Effect of Structural Modifications to Glyoxal-bis(thiosemicarbazonato)copper(II) Complexes on Cellular Copper Uptake, Copper-Mediated ATP7A Trafficking, and P-Glycoprotein Mediated Efflux.

机构信息

Olivia Newton-John Cancer Research Institute , Heidelberg, Victoria 3084, Australia.

Centre for PET, Department of Molecular Imaging & Therapy, Austin Health , 145 Studley Road, Heidelberg, Victoria 3084, Australia.

出版信息

J Med Chem. 2018 Feb 8;61(3):711-723. doi: 10.1021/acs.jmedchem.7b01158. Epub 2018 Jan 8.

Abstract

Bis(thiosemicarbazonato)copper(II) complexes are of interest as potential therapeutics for cancer and neurodegenerative diseases as well as imaging agents for positron emission tomography (PET). The cellular uptake of six bis(thiosemcarbazonato)copper(II)complexes derived from glyoxal, with different functional groups Cu(gtsx) where x = different functional groups, was investigated in SKOV-3, HEK293, and HEK293 P-gp cell lines. Treatment of the cells with the copper complexes increased intracellular copper and increased levels of p-ERK due to activation of the Ras-Raf-MEK-ERK pathway. Treatment of SKOV-3 cells with low concentrations (μM) of two of the copper complexes led to trafficking of the endogenous copper transporter ATP7A from the Golgi network to the cell membrane. Experiments in HEK293 and HEK293-P-gp cells suggest that Cu(gtsm) and Cu(gtse) are substrates for the P-gp efflux protein but the complex with a pyrrolidine functional group, Cu(gtspyr), is not. A PET experiment in mice showed that [Cu]Cu(gtspyr) has reasonable brain uptake but high liver uptake.

摘要

双(硫代氨基甲酸盐)铜(II)配合物作为癌症和神经退行性疾病的潜在治疗药物以及正电子发射断层扫描(PET)的成像剂而受到关注。研究了六种衍生自乙二醛的双(硫代半卡巴唑)铜(II)配合物 Cu(gtsx),其中 x 为不同的官能团,在 SKOV-3、HEK293 和 HEK293 P-gp 细胞系中的细胞摄取。用铜配合物处理细胞会增加细胞内铜的含量,并由于 Ras-Raf-MEK-ERK 途径的激活而增加 p-ERK 的水平。用两种铜配合物的低浓度(μM)处理 SKOV-3 细胞会导致内源性铜转运蛋白 ATP7A 从高尔基体网络转运到细胞膜。在 HEK293 和 HEK293-P-gp 细胞中的实验表明,Cu(gtsm)和 Cu(gtse)是 P-gp 外排蛋白的底物,但具有吡咯烷官能团的配合物 Cu(gtspyr)则不是。在小鼠中的 PET 实验表明,[Cu]Cu(gtspyr)具有合理的脑摄取但肝摄取量高。

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