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Design and Implementation of Functional Nanoelectronic Interfaces With Biomolecules, Cells, and Tissue Using Nanowire Device Arrays

机译:使用纳米线设备阵列设计和实现具有生物分子,细胞和组织的功能性纳米电子接口

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摘要

Nanowire FETs (NWFETs) are promising building blocks for nanoscale bioelectronic interfaces with cells and tissue since they are known to exhibit exquisite sensitivity in the context of chemical and biological detection, and have the potential to form strongly coupled interfaces with cell membranes. We present a general scheme that can be used to assemble NWs with rationally designed composition and geometry on either planar inorganic or biocompatible flexible plastic surfaces. We demonstrate that these devices can be used to measure signals from neurons, cardiomyocytes, and heart tissue. Reported signals are in millivolts range, which are equal to or substantially greater than those recorded with either planar FETs or multielectrode arrays, and demonstrate one unique advantage of NW-based devices. Basic studies showing the effect of device sensitivity and cell/substrate junction quality on signal magnitude are presented. Finally, our demonstrated ability to design high-density arrays of NWFETs enables us to map signal at the subcellular level, a functionality not enabled by conventional microfabricated devices. These advances could have broad applications in high-throughput drug assays, fundamental biophysical studies of cellular function, and development of powerful prosthetics.
机译:纳米线FET(NWFET)是有前途的构建单元,用于与细胞和组织的纳米级生物电子界面,因为已知它们在化学和生物检测的背景下显示出极高的灵敏度,并且具有与细胞膜形成牢固耦合的界面的潜力。我们提出了一种通用方案,可用于在平面无机或生物相容性柔性塑料表面上组装具有合理设计的成分和几何形状的NW。我们证明了这些设备可用于测量来自神经元,心肌细胞和心脏组织的信号。报告的信号在毫伏范围内,等于或实质上大于用平面FET或多电极阵列记录的信号,并证明了基于NW的设备的一个独特优势。提出了一些基础研究,这些研究表明了器件灵敏度和单元/基板结质量对信号强度的影响。最后,我们展示出的设计NWFET高密度阵列的能力使我们能够在亚细胞水平上映射信号,而这是常规微制造设备无法实现的功能。这些进展可能在高通量药物测定,细胞功能的基本生物物理研究以及强大的修复剂的开发中具有广泛的应用。

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