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利用光流控技术主动传输类似病毒的分析物,实现快速和超灵敏的生物检测。

Actively transporting virus like analytes with optofluidics for rapid and ultrasensitive biodetection.

机构信息

Electrical and Computer Engineering Department, Boston University, Boston, MA, USA.

出版信息

Lab Chip. 2013 Dec 21;13(24):4841-7. doi: 10.1039/c3lc50814e.

Abstract

Effective analyte delivery is essential to achieve rapid and sensitive biodetection systems. In this article, we present an actively controlled fluidic system integrated with a suspended plasmonic nanohole sensor to achieve superior analyte delivery efficiency and ultrafast sensor response, as compared to conventional fluidic systems. 70 nm sized virus like analyte solution is used to experimentally demonstrate the system performance improvements. Sensor response time is reduced by one order of magnitude as compared to the conventional methods. A seven orders of magnitude dynamic concentration range from 10(3) to 10(9) particles mL(-1) is quantified, corresponding to a concentration window relevant to clinical diagnosis and drug screening. Our non-destructive detection system, by enabling efficient analyte delivery, fast sensing response and minimal sample volume, opens up opportunities for sensitive, rapid and real-time virus detection in infectious disease control and point-of-care applications.

摘要

有效传递分析物对于实现快速和敏感的生物检测系统至关重要。在本文中,我们提出了一种主动控制的流体系统,该系统与悬浮等离子体纳米孔传感器集成,与传统的流体系统相比,可实现更高的分析物传递效率和超快的传感器响应。使用 70nm 大小的类似病毒的分析物溶液来实验证明系统性能的改善。与传统方法相比,传感器响应时间降低了一个数量级。从 10(3)到 10(9)个粒子 mL(-1)定量检测到了七个数量级的动态浓度范围,对应于临床诊断和药物筛选相关的浓度窗口。我们的非破坏性检测系统通过实现高效的分析物传递、快速的传感响应和最小的样品体积,为传染病控制和即时护理应用中的敏感、快速和实时病毒检测开辟了机会。

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