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Determination of the Relationship between Expression and Functional Activity of Multidrug Resistance-Associated Protein 1 using Scanning Electrochemical Microscopy

机译:使用扫描电化学显微镜测定多药抗性相关蛋白1的表达与功能活性的关系

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摘要

Cancer cells can develop multidrug resistance (MDR) after prolonged exposure to chemotherapeutic drugs, which is a severe impediment to successful treatment. MDR is typically associated with transmembrane proteins mediating efflux of administered drugs, thereby keeping their intracellular concentration below the threshold required to kill cells. Although expression assays based on flow cytometry and immunostaining have shown that multidrug resistance associated protein 1 (MRP1) is prevalent in many cancer types, the functional activity of this efflux pump is more difficult to elucidate, especially at the single-cell level. Herein, we report the measurement of MRP1 functional activity in individual cancer cells using scanning electrochemical microscopy (SECM). Cells were cultured onto plastic substrates containing selective adhesion sites. Optical microscopy and SECM revealed that cells adapt to the underlying surface, while MRP1 functional activity increases once the dimensions of the adhesive islands become smaller than those of the cell itself. Timelapse SECM imaging revealed a suitable window of 30 min to complete each measurement before the cell undergoes blebbing, which is associated with a considerable increase in functional activity. Distinct cell populations were produced by performing a doxorubicin drug challenge on two parental cell lines (e.g., wild-type HeLa cells and MRP1-overexpressing HeLa-R cells). Expression and functional activity of MRP1 were determined using flow cytometry and SECM, and our findings show that these parameters do not directly correlate. This suggests that functional activity may represent a powerful indicator of a cancer cell's response to chemotherapeutic treatment and should improve our understanding of efflux mechanisms based on MRP1.
机译:癌细胞可以在长时间暴露于化学治疗药物后发育多药耐药性(MDR),这是成功治疗的严重障碍。 MDR通常与介导给药药物的流出的跨膜蛋白质相关,从而将它们的细胞内浓度保持低于杀灭细胞所需的阈值。尽管基于流式细胞术和免疫染色的表达测定表明,在许多癌症类型中,多药耐药相关蛋白1(MRP1)普遍,但这种流出泵的功能活性更难以阐明,尤其是在单细胞水平上。在此,我们使用扫描电化学显微镜(SECM)报告在单个癌细胞中MRP1功能活性的测量。将细胞培养到含有选择性粘合位点的塑料基材上。光学显微镜和SECM显示细胞适应下面的表面,而MRP1功能活性一旦粘合剂岛的尺寸变得小于细胞本身的尺寸就会增加。 Timelapse SECM成像显示出30分钟的合适窗口,以在细胞经历BLEBbing之前完成每次测量,这与功能性活动相当大的增加。通过对两种亲本细胞系(例如,野生型HELA细胞和MRP1过表达Hela-R细胞)进行多柔比蛋白药物攻击来产生不同的细胞群。使用流式细胞术和SECM测定MRP1的表达和功能活性,我们的研究结果表明这些参数不直接相关。这表明功能活性可以代表癌细胞对化学治疗的反应的强大指标,并应提高我们对MRP1的影响机制的理解。

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  • 来源
    《Analytical chemistry》 |2017年第17期|共7页
  • 作者单位

    McGill Univ Dept Chem 801 Sherbrooke St West Montreal PQ H3A 0B8 Canada;

    Natl Res Council Canada Div Life Sci 75 Mortagne Blvd Boucherville PQ J4B 6Y4 Canada;

    Natl Res Council Canada Div Life Sci 75 Mortagne Blvd Boucherville PQ J4B 6Y4 Canada;

    Natl Res Council Canada Div Life Sci 75 Mortagne Blvd Boucherville PQ J4B 6Y4 Canada;

    McGill Univ Dept Chem 801 Sherbrooke St West Montreal PQ H3A 0B8 Canada;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 分析化学;
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