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Porous Membrane-Based Sensor Devices for Biomolecules and Bacteria Detection

机译:用于生物分子和细菌检测的基于多孔膜的传感器设备

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摘要

Biological/biochemistry analyses traditionally require bulky instruments and a great amount of volume of biological/chemical agents, and many procedures have to be performed in certain locations such as medical centers or research institutions. These limitations usually include time delay in testing. The delays may be critical for some aspects such as disease prevention or patient treatment. One solution to this issue is the realization of point-of-care (POC) testings for patients, a domain in public health, meaning that health cares are provided near the sites of patients using well-designed and portable medical devices. Transportation of samples between local and central institutions can therefore be reduced, facilitating early and fast diagnosis. A closely related topic in engineering, lab-on-a-chip (LOC), has been discussed and practiced in recent years. LOC emphasizes integrating several functions of laboratory processes in a small portable device and performing analysis using only a very small amount of sample volume, to achieve low-cost and rapid analysis. From an engineer's point of view, LOC is the strategy to practice the idea of POC testing.This dissertation aimed at exploring the POC potentials of porous membrane-base LOC devices, which can be used to simplify traditional and standard laboratory procedures. In this study, three LOC prototypes are shown and discussed. First the protein sensor incorporating with silica nanofiber membrane, which has shown 32 times more improvement of sensitivity than a conventional technique and a much shorter detection time; secondly the bacteria filter chip that uses a sandwiched aluminum oxide membrane to stabilize the bacteria and monitor the efficacy of antibiotics, which has reduced the test time from 1 day of the traditional methods to 1 hour; the third is the sensor combining microfluidics and silica nanofiber membrane to realize Surface Enhanced Raman Spectroscopy on bio-molecules, which has enhancement factor 10^9 and detection limit down to nanomolar, but simple manufacturing procedures and reduced fabrication cost. These results show the porous-base membrane LOC devices may have potentials in improving and replacing traditional detection methods and eventually be used in POC applications.
机译:传统上,生物/生物化学分析需要笨重的仪器和大量的生物/化学试剂,并且必须在某些位置(例如医疗中心或研究机构)执行许多程序。这些限制通常包括测试中的时间延迟。延误对于某些方面(例如疾病预防或患者治疗)可能至关重要。解决此问题的一种方法是实现针对患者的即时护理(POC)测试,这是公共卫生领域,这意味着可以使用精心设计的便携式医疗设备在患者所在地附近提供保健服务。因此,可以减少样本在地方和中央机构之间的运输,从而促进早期和快速诊断。近年来,已经讨论并实践了一个与工程紧密相关的主题,即片上实验室(LOC)。 LOC强调将实验室过程的多种功能集成到小型便携式设备中,并仅使用非常少量的样品量进行分析,以实现低成本和快速分析。从工程师的角度来看,LOC是实践POC测试思想的策略。本论文旨在探索多孔膜基LOC设备的POC潜力,可用于简化传统和标准实验室程序。在这项研究中,显示并讨论了三个LOC原型。首先,带有二氧化硅纳米纤维膜的蛋白质传感器的灵敏度比传统技术提高了32倍,并且检测时间更短。其次,细菌过滤芯片采用夹层氧化铝膜稳定细菌并监测抗生素的功效,将检测时间从传统方法的1天减少到1小时。第三是结合微流控技术和二氧化硅纳米纤维膜的传感器,对生物分子进行表面增强拉曼光谱分析,其增强因子为10 ^ 9,检测限低至纳摩尔,但制造工艺简单,降低了制造成本。这些结果表明,多孔基膜LOC装置可能具有改善和替代传统检测方法的潜力,最终可用于POC应用。

著录项

  • 作者

    Tsou Pei-Hsiang;

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  • 年度 2012
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  • 原文格式 PDF
  • 正文语种 en_US
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