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Recent Developments in Optical Detection Technologies in Lab-on-a-Chip Devices for Biosensing Applications

机译:用于生物传感应用的芯片实验室设备中的光学检测技术的最新发展

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摘要

The field of microfluidics has yet to develop practical devices that provide real clinical value. One of the main reasons for this is the difficulty in realizing low-cost, sensitive, reproducible, and portable analyte detection microfluidic systems. Previous research has addressed two main approaches for the detection technologies in lab-on-a-chip devices: (a) study of the compatibility of conventional instrumentation with microfluidic structures, and (b) integration of innovative sensors contained within the microfluidic system. Despite the recent advances in electrochemical and mechanical based sensors, their drawbacks pose important challenges to their application in disposable microfluidic devices. Instead, optical detection remains an attractive solution for lab-on-a-chip devices, because of the ubiquity of the optical methods in the laboratory. Besides, robust and cost-effective devices for use in the field can be realized by integrating proper optical detection technologies on chips. This review examines the recent developments in detection technologies applied to microfluidic biosensors, especially addressing several optical methods, including fluorescence, chemiluminescence, absorbance and surface plasmon resonance.
机译:微流体领域尚未开发提供实际临床价值的实用设备。造成这种情况的主要原因之一是难以实现低成本,灵敏,可重现和便携式的分析物检测微流控系统。先前的研究已经针对芯片实验室设备中的检测技术提出了两种主要方法:(a)研究常规仪器与微流体结构的兼容性,以及(b)集成在微流体系统中的创新传感器。尽管基于电化学和机械的传感器最近取得了进步,但是它们的缺点对其在一次性微流体装置中的应用提出了重要的挑战。取而代之的是,由于光学方法在实验室中无处不在,因此光学检测对于片上实验室设备仍然是有吸引力的解决方案。此外,通过在芯片上集成适当的光学检测技术,可以实现用于该领域的坚固且具有成本效益的设备。这篇综述检查了应用于微流体生物传感器的检测技术的最新发展,特别是解决了几种光学方法,包括荧光,化学发光,吸收和表面等离子体共振。

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