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Electrochemical System for the Study of Trans-Plasma Membrane Electron Transport in Whole Eukaryotic Cells

机译:全核细胞跨血浆膜电子传输研究的电化学系统

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摘要

The study of trans-plasma membrane electron transport (tPMET) in oncogenic systems is paramount to the further understanding of cancer biology. The current literature provides methodology to study these systems that hinges upon mitochondrial knockout genotypes?in conjunction with cell surface oxygen consumption, or the detection of an electron acceptor using colorimetric methods. However, when using an iron redox based system to probe tPMET, there is yet to be a method that allows for the simultaneous quantification of iron redox states while providing an exceptional level of sensitivity. Developing a method to simultaneously analyze the redox state of a reporter molecule would give advantages in probing the underlying biology. Herein, we present an electrochemical based method that allows for the quantification of both ferricyanide and ferrocyanide redox states to a highly sensitive degree. We have applied this system to a novel application of assessing oncogenic cell-driven iron reduction and have shown that it can effectively quantitate and identify differences in iron reduction capability of three lung epithelial cell lines.
机译:致癌系统中的跨血浆膜电子传输(TPMet)的研究对于进一步了解癌症生物学至关重要。目前的文献提供了研究这些系统的方法,这些系统铰接在线粒体敲除基因型上?结合细胞表面氧气消耗,或使用比色方法检测电子受体。然而,当使用基于铁氧化还原的系统来探测TPMet时,尚未存在一种方法,其允许同时定量铁氧化还原状态,同时提供卓越的灵敏度水平。开发一种同时分析报告分子的氧化还原状态的方法将在探测潜在生物学方面具有优势。在此,我们提出了一种基于电化学的方法,其允许将铁氰化物和亚铁氰化钠氧化还原的氧化钠定量为高度敏感度。我们已经将该系统应用于评估致癌电池驱动的铁还原的新型应用,并且已经表明它可以有效地定量和识别三种肺上皮细胞系的铁还原能力的差异。

著录项

  • 来源
    《Analytical chemistry》 |2018年第4期|共7页
  • 作者单位

    Division of Regenerative Medicine and Cellular Therapies School of Pharmacy University of Nottingham Nottingham NG7 2RD United Kingdom;

    Walgreens Boots Alliance Nottingham NG2 3AA United Kingdom;

    Division of Molecular Therapeutics and Formulation School of Pharmacy University of Nottingham Nottingham NG7 2RD United Kingdom;

    Division of Regenerative Medicine and Cellular Therapies School of Pharmacy University of Nottingham Nottingham NG7 2RD United Kingdom;

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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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