用于分析和生物传感器的微反应器和微装置

L. Fonseca, V. Martins, P. Freitas
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引用次数: 2

摘要

据认为,全世界现在每天进行超过109次分析,并以两位数的速度增长。由于分析速度快、灵敏度高,微反应器、分析微装置和生物传感器在环境控制、生物过程、加工食品、生物医学分析等方面发挥着重要作用。这项工作设想展示微反应器和生物传感器在两个主要应用上的潜力:i)开发酶基分析微反应器,用于检测多分析物化合物(如糖、醇、氨基酸、有机酸等),该微反应器基于酶固定,在FIA/SIA系统中集成CPG微球上进行,在玻璃毛细管和微通道中集成溶胶-凝胶基质。ii)用功能顺磁纳米和微珠对单个微生物细胞和单链DNA分子进行操作,并用磁阻传感器对其进行检测,证明了这些生物传感器通过两种不同的策略(DNA分子杂交(DNA芯片)和抗体-抗原生物识别(免疫芯片))对病原微生物(如沙门氏菌)检测的适用性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Microreactors and microdevices for analytical and biosensors applications
It is thought that worldwide more than 109 analyses are now performed every day with a double-digit growth rate. Microreactors and analytical microdevices and biosensors can provide important role on the control of environment, bioprocesses, processed food, biomedical analysis, among others due to rapid analysis and high sensitivity. This work envisages showing the potential of microreactors and biosensors on two mainly applications: i) The development of enzyme-base analytical microreactors for detection of multi-analyte compounds (e.g. sugars, alcohols, aminoacids, organic acids, among others) based on enzyme immobilization carried out on CPG beads integrated in FIA/SIA systems and sol-gel matrix integrated in glass capillary and microchannels. ii) The manipulation of individual microbial cells and single strand DNA molecules with functional paramagnetic nano-and micro-beads and their detection with magneto-resistive sensors demonstrates the applicability of these biosensors for the detection of pathogen microorganisms (e.g. Salmonella) through two different strategies: hybridization of DNA molecules (DNA-chips) and antibody-antigen biorecognition (immuno-chips).
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