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Novel Membrane-Based Electrochemical Sensor for Real-Time Bio-Applications

机译:用于实时生物应用的新型基于膜的电化学传感器

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摘要

This article presents a novel membrane-based sensor for real-time electrochemical investigations of cellular- or tissue cultures. The membrane sensor enables recording of electrical signals from a cell culture without any signal dilution, thus avoiding loss of sensitivity. Moreover, the porosity of the membrane provides optimal culturing conditions similar to existing culturing techniques allowing more efficient nutrient uptake and molecule release. The patterned sensor electrodes were fabricated on a porous membrane by electron-beam evaporation. The electrochemical performance of the membrane electrodes was characterized by cyclic voltammetry and chronoamperometry, and the detection of synthetic dopamine was demonstrated down to a concentration of 3.1 pM. Furthermore, to present the membrane-sensor functionality the dopamine release from cultured PC12 cells was successfully measured. The PC12 cells culturing experiments showed that the membrane-sensor was suitable as a cell culturing substrate for bio-applications. Real-time measurements of dopamine exocytosis in cell cultures were performed, where the transmitter release was recorded at the point of release. The developed membrane-sensor provides a new functionality to the standard culturing methods, enabling sensitive continuous in vitro monitoring and closely mimicking the in vivo conditions.
机译:本文介绍了一种新型的基于膜的传感器,用于细胞或组织培养物的实时电化学研究。膜传感器可以记录细胞培养物中的电信号,而无需稀释任何信号,从而避免了灵敏度的损失。而且,膜的孔隙率提供了类似于现有培养技术的最佳培养条件,从而允许更有效的营养吸收和分子释放。通过电子束蒸发将图案化的传感器电极制造在多孔膜上。膜电极的电化学性能通过循环伏安法和计时安培法进行表征,合成多巴胺的检测低至3.1 pM。此外,为了呈现膜传感器功能,成功地测量了从培养的PC12细胞中释放的多巴胺。 PC12细胞培养实验表明,该膜传感器适合作为生物应用的细胞培养基质。进行细胞培养物中多巴胺胞吐作用的实时测量,在释放点记录发射器的释放。研发的膜传感器为标准的培养方法提供了新功能,可实现连续的敏感体外监测并紧密模拟体内条件。

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