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用于控制溶液中局部蛋白质浓度的导电聚合物纳米线。

Conducting polymer nanowires for control of local protein concentration in solution.

作者信息

Morris Joshua D, Thourson Scott B, Panta Krishna, Flanders Bret N, Payne Christine K

机构信息

School of Science and Technology, Georgia Gwinnett College, Lawrenceville, GA 30043, USA.

George W. Woodruff School of Mechanical Engineering (BioEngineering Graduate Program), Georgia Institute of Technology, Atlanta, GA 30332, USA.

出版信息

J Phys D Appl Phys. 2017 May 4;50(17). doi: 10.1088/1361-6463/aa60b0. Epub 2017 Mar 31.

Abstract

Interfacing devices with cells and tissues requires new nanoscale tools that are both flexible and electrically active. We demonstrate the use of PEDOT:PSS conducting polymer nanowires for the local control of protein concentration in water and biological media. We use fluorescence microscopy to compare the localization of serum albumin in response to electric fields generated by narrow (760 nm) and wide (1.5 μm) nanowires. We show that proteins in deionized water can be manipulated over a surprisingly large micron length scale and that this distance is a function of nanowire diameter. In addition, white noise can be introduced during the electrochemical synthesis of the nanowire to induce branches into the nanowire allowing a single device to control multiple nanowires. An analysis of growth speed and current density suggests that branching is due to the Mullins-Sekerka instability, ultimately controlled by the roughness of the nanowire surface. These small, flexible, conductive, and biologically compatible PEDOT:PSS nanowires provide a new tool for the electrical control of biological systems.

摘要

将设备与细胞和组织连接需要新型的纳米级工具,这些工具既要具备灵活性,又要具有电活性。我们展示了使用聚(3,4-乙撑二氧噻吩):聚苯乙烯磺酸盐(PEDOT:PSS)导电聚合物纳米线来局部控制水和生物介质中的蛋白质浓度。我们利用荧光显微镜比较了血清白蛋白在由窄(760纳米)和宽(1.5微米)纳米线产生的电场作用下的定位情况。我们发现,去离子水中的蛋白质能够在令人惊讶的大微米长度尺度上被操控,并且这个距离是纳米线直径的函数。此外,在纳米线的电化学合成过程中可以引入白噪声,从而使纳米线产生分支,使得单个设备能够控制多条纳米线。对生长速度和电流密度的分析表明,分支现象是由穆林斯-谢尔克卡不稳定性引起的,最终由纳米线表面的粗糙度控制。这些小型、灵活、导电且具有生物相容性的PEDOT:PSS纳米线为生物系统的电控制提供了一种新工具。

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