首页> 外文期刊>Journal of Microelectromechanical Systems >Precision Plating of Human Electrogenic Cells on Microelectrodes Enhanced With Precision Electrodeposited Nano-Porous Platinum for Cell-Based Biosensing Applications
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Precision Plating of Human Electrogenic Cells on Microelectrodes Enhanced With Precision Electrodeposited Nano-Porous Platinum for Cell-Based Biosensing Applications

机译:在基于细胞的生物传感应用中,用精密电沉积的纳米多孔铂增强的微电极上的人类电生成细胞的精密电镀

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摘要

Microelectrode Arrays are established platforms for biosensing applications; however, limitations in electrode impedance and cell-electrode coupling still exist. In this paper, the SNR of 25 mu m diameter gold (Au) microelectrodes was improved by decreasing the impedance with precision electrodeposition. SEM determined that N-P Pt. microelectrodes had nanoporous structures that filled the insulation cylinders. EIS, CV, and RMS noise measurements concluded that the optimized electrodeposition of N-P Pt. led to a lowered impedance of 18.36 k Omega +/- 2.6 k Omega at 1 kHz, a larger double layer capacitance of 73 nF, and lowered RMS noise of 2.08 +/- 0.16 mu V as compared to the values for Au of 159 k Omega +/- 28 k Omega at 1 kHz, 17nF, and 3.14 +/- 0.42 mu V, respectively. Human motoneurons and human cardiomyocytes were cultured on N-P Pt. devices to assess their biocompatibility and signal quality. In order to improve the cell-electrode coupling, a precision plating technique was used. Both cell types were electrically active on devices for up to 10 weeks, demonstrated improved SNR, and expected responses to precision chemical and electrical stimulation. The modification of Au microelectrodes with nanomaterials in combination with precision culturing of human cell types provides cost effective, highly sensitive, well coupled and relevant biosensing platforms for medical and pharmaceutical research.
机译:微电极阵列是建立用于生物传感应用的平台;然而,电极阻抗和电池-电极耦合仍然受到限制。本文通过采用精密电沉积降低阻抗来改善直径为25μm的金(Au)微电极的SNR。 SEM确定为N-P Pt。微电极具有填充绝缘圆柱体的纳米孔结构。 EIS,CV和RMS噪声测量得出的结论是,优化了N-P Pt的电沉积。与Au值159 k相比,在1 kHz时阻抗降低了18.36 k Omega +/- 2.6 k Omega,双层电容更大了73 nF,RMS噪声降低了2.08 +/- 0.16μV。分别在1 kHz,17nF和3.14 +/- 0.42μV时的Ω+/- 28 kΩ。在N-P Pt上培养人运动神经元和人心肌细胞。评估其生物相容性和信号质量的设备。为了改善电池-电极耦合,使用了精密电镀技术。两种细胞类型在设备上的电激活时间长达10周,显示出改善的SNR,以及对精确化学和电刺激的预期响应。纳米材料对金微电极的修饰与人类细胞类型的精确培养相结合,为医学和药物研究提供了经济高效,高度灵敏,耦合良好的相关生物传感平台。

著录项

  • 来源
    《Journal of Microelectromechanical Systems》 |2019年第1期|50-62|共13页
  • 作者单位

    Univ Cent Florida, NanoSci Technol Ctr, Orlando, FL 32816 USA|Univ Cent Florida, Dept Chem, Orlando, FL 32816 USA;

    Univ Cent Florida, NanoSci Technol Ctr, Orlando, FL 32816 USA|Univ Cent Florida, Dept Mat Sci & Engn, Orlando, FL 32816 USA;

    Univ Cent Florida, NanoSci Technol Ctr, Orlando, FL 32816 USA;

    Univ Cent Florida, NanoSci Technol Ctr, Orlando, FL 32816 USA|Univ Cent Florida, Dept Mat Sci & Engn, Orlando, FL 32816 USA;

    Univ Cent Florida, NanoSci Technol Ctr, Orlando, FL 32816 USA|Univ Cent Florida, Dept Chem, Orlando, FL 32816 USA|Univ Cent Florida, Dept Mat Sci & Engn, Orlando, FL 32816 USA|Univ Cent Florida, Dept Elect & Comp Engn, Orlando, FL 32816 USA;

    Univ Cent Florida, NanoSci Technol Ctr, Dept Mat Sci & Engn, Orlando, FL 32816 USA|Univ Cent Florida, NanoSci Technol Ctr, Dept Elect & Comp Engn, Orlando, FL 32816 USA|Univ Cent Florida, Bridging Innovat Dev Gap, Orlando, FL 32816 USA;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Biosensing; MEA; microelectrodes; nano-porous platinum; precision plating of nanomaterials; human cardiomyocytes; human electrogenic cells; human motoneurons; precision plating of cells;

    机译:生物传感;MEA;微电极;纳米多孔铂;纳米材料的精密电镀;人类心肌细胞;人类电细胞;人类运动神经元;细胞的精密电镀;

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