结合微流控系统的ZnO纳米线/薄膜生物传感器实时蛋白质检测

Jin Liu, J. Goud, P. Raj, M. Iyer, Z. Wang, R. Tummala
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引用次数: 14

摘要

设计、制作并测试了一种集成微流体的纳米级半导体ZnO生物传感器,用于检测链霉亲和素,这是一种常用的蛋白质。安培(I-t)测量用于检测电导率随时间的变化。通过与对照实验比较,检测生物素与链霉亲和素的特异性结合事件。数据表明,蛋白质杂交后电导率变化超过20%。第二部分介绍了一种结合微流控系统的ZnO薄膜生物传感器。采用相同的实验方案,观察到相似的I-t特性变化。这是将ZnO纳米线和薄膜与微流体系统集成在一起的实时生物传感的首次演示。这可以进一步扩展到制造可以实时检测任何蛋白质的生物传感器。安培传感的结果是一个无标签的检测系统,因为它检测蛋白质杂交事件电。当集成在系统级封装(SOP)平台上时,该技术可以产生便携式,可靠且具有成本效益的生物传感器,可应用于许多领域。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Real-time protein detection using ZnO nanowire/thin film bio-sensor integrated with microfluidic system
A nanoscale semiconducting ZnO based biosensor with integrated microfluidics is designed, fabricated and tested to demonstrate the detection of streptavidin, a commonly used protein. Amperometric (I-t) measurement is utilized to detect the change of conductivity over time. By comparing with the control experiment, the specific binding event between biotin and streptavidin is detected. The data indicates a conductivity change by more than 20% after the protein hybridization. The second part of the papers presents a ZnO thin film based biosensor which is integated with a microfluidic system. Same experiment protocols are carried and similar change in I-t characteristics is observed. This is the first demonstration of real time biosensing with ZnO nanowires and thin films that are integrated with microfluidic systems. This can be further extended to fabricate bio-sensors which can potentially detect any protein in real time. Amperometric sensing results in a label-free detection system as it detects the protein hybridization events electrically. when integrated on the system-on-package (SOP) platform, this technology can lead to portable, reliable and cost effective biosensors with applications in many areas.
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