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Porous Graphene Oxide Decorated Ion Selective Electrode for Observing Across-Cytomembrane Ion Transport

机译:多孔氧化石墨烯修饰的离子选择性电极用于观察跨细胞膜离子迁移。

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摘要

The technology for measuring cytomembrane ion transport is one of the necessities in modern biomedical research due to its significance in the cellular physiology, the requirements for the non-invasive and easy-to-operate devices have driven lots of efforts to explore the potential electrochemical sensors. Herein, we would like to evidence the exploitation of the porous graphene oxide (PGO) decorated ion selective electrode (ISE) as a detector to capture the signal of cytomembrane ion transport. The tumor cells (MDAMB231, A549 and HeLa) treated by iodide uptake operation, with and without the sodium-iodide-symporter (NIS) expression, are used as proofs of concept. It is found that under the same optimized experimental conditions, the changed output voltages of ISEs before and after the cells’ immobilization are in close relation with the NIS related ion’s across-membrane transportation, including I , Na and Cl . The explanation for the measured results is proposed by clarifying the function of the PGO scaffold interfacial micro-environment (IME), that is, in this spongy-like micro-space, the NIS related minor ionic fluctuations can be accumulated and amplified for ISE to probe. In conclusion, we believe the integration of the microporous graphene derivatives-based IME and ISE may pave a new way for observing the cytomembrane ionic activities.
机译:由于其在细胞生理学中的重要性,用于测量细胞膜离子转运的技术是现代生物医学研究的必要条件之一,对无创且易于操作的设备的要求推动了许多努力来探索潜在的电化学传感器。在这里,我们想证明使用多孔氧化石墨烯(PGO)装饰的离子选择电极(ISE)作为检测器来捕获细胞膜离子迁移的信号。通过碘化物摄取操作处理的肿瘤细胞(MDAMB231,A549和HeLa),无论是否具有碘化钠-转运体(NIS)表达,都可以用作概念证明。研究发现,在相同的优化实验条件下,固定化前后ISE的变化输出电压与NIS相关离子的跨膜运输(包括I,Na和Cl)密切相关。通过阐明PGO支架界面微环境(IME)的功能,提出了对测量结果的解释,也就是说,在这种海绵状的微空间中,可以将NIS相关的微小离子涨落累积起来,并放大以用于ISE。探测。总之,我们认为基于微孔石墨烯衍生物的IME和ISE的整合可能为观察细胞膜离子活性铺平了新途径。

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