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A Fluorescent Biosensors for Detection Vital Body Fluids’ Agents

机译:一种荧光生物传感器用于检测重要的体液代理商

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摘要

The clinical applications of sensing tools (i.e., biosensors) for the monitoring of physiologically important analytes are very common. Nowadays, the biosensors are being increasingly used to detect physiologically important analytes in real biological samples (i.e., blood, plasma, urine, and saliva). This review focuses on biosensors that can be applied to continuous, time-resolved measurements with fluorescence. The material presents the fluorescent biosensors for the detection of neurotransmitters, hormones, and other human metabolites as glucose, lactate or uric acid. The construction of microfluidic devices based on fluorescence uses a variety of materials, fluorescent dyes, types of detectors, excitation sources, optical filters, and geometrical systems. Due to their small size, these devices can perform a full analysis. Microfluidics-based technologies have shown promising applications in several of the main laboratory techniques, including blood chemistries, immunoassays, nucleic-acid amplification tests. Of the all technologies that are used to manufacture microfluidic systems, the LTCC technique seems to be an interesting alternative. It allows easy integration of electronic and microfluidic components on a single ceramic substrate. Moreover, the LTCC material is biologically and chemically inert, and is resistant to high temperature and pressure. The combination of all these features makes the LTCC technology particularly useful for implementation of fluorescence-based detection in the ceramic microfluidic systems.
机译:用于监测生理重要分析物的传感工具(即生物传感器)的临床应用是非常普遍的。如今,生物传感器正越来越多地用于检测真实生物样品(即血液,血浆,尿液和唾液)中具有重要生理意义的分析物。这篇综述着重于可应用于连续的,时间分辨的荧光测量的生物传感器。该材料提供了荧光生物传感器,用于检测神经递质,激素和其他人体代谢产物,例如葡萄糖,乳酸或尿酸。基于荧光的微流体装置的构造使用多种材料,荧光染料,检测器类型,激发源,光学滤光片和几何系统。由于体积小,这些设备可以执行完整的分析。基于微流体技术的技术已在包括血液化学,免疫测定,核酸扩增测试在内的几种主要实验室技术中显示出有希望的应用。在用于制造微流体系统的所有技术中,LTCC技术似乎是一种有趣的选择。它可以轻松地将电子和微流体组件集成在单个陶瓷基板上。而且,LTCC材料在生物学和化学上是惰性的,并且耐高温和高压。所有这些功能的结合使得LTCC技术对于在陶瓷微流体系统中实施基于荧光的检测特别有用。

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