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Development of Point-of-Care Testing Sensors for Biomarker Detection

机译:开发用于生物标志物检测的即时检测传感器

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摘要

Point-of-care testing (POCT) is defined as medical testing at or near the site of patient care and has become a critical component of the diagnostic industry. POCT has many advantages over tests in centralized laboratories including small reagent volumes, small size, rapid turnaround time, cost-effectiveness, low power consumption and functional integration of multiple devices. Paper-based POCT sensors are a new alternative technology for fabricating simple, low-cost, portable and disposable analytical devices for clinical diagnosis.The focus of this dissertation was to develop simple, rapid and low cost paper-based POCT sensors with high sensitivity and portability for disease biomarker detection. Lateral flow strips (LFS) were used as the basic platform as it provides several key advantages such as simplicity, fast response time, on site and cost-effectiveness, and it can be used to detect specific substances including small molecules, large proteins and even whole pathogens, in a sample by immunological reactions. Earlier designs of paper strips lacked the quantitative information of the analyte concentration and could only provide single analyte detection at a time. In this study, a series of modifications were made to upgrade the platform to compensate for these limitations.First, we developed a gold nanoparticle based LFS for qualitative colorimetrical detection of bladder cancer related biomarkers in standard solutions and in urine samples. Second, by incorporating an image processing program “ImageJ”, a semi-quantitative LFS platform was established. The capability of the strip was evaluated by testing a small DNA oxidative damage biomarker in urine and cell culture models. Third, we combined the electrochemical method and colorimetrical method for quantitative biomarker detection. Finally, we integrated a commercialized blood glucose meter to quantitatively detection of two non-glucose biomarkers by converting their signals to that of glucose. The upgraded sensor could provide a noninvasive, rapid, visual, quantitative and convenient detection platform for various disease biomarkers. In addition, this platform does not require expensive equipments or trained personnel, deeming it suitable for use as a simple, economical and portable field kit for on-site biomarker monitoring in a variety of clinical settings.
机译:即时检验(POCT)被定义为在患者护理现场或附近进行的医学检验,已经成为诊断行业的重要组成部分。与集中式实验室中的测试相比,POCT具有许多优势,包括试剂体积小,体积小,周转时间短,成本效益,低功耗以及多个设备的功能集成。纸基POCT传感器是一种新的替代技术,可用于制造简单,低成本,便携式和一次性的临床诊断分析设备。本论文的重点是开发具有高灵敏度和高灵敏度的简单,快速,低成本的纸基POCT传感器。疾病生物标志物检测的便携性。横向流动条(LFS)被用作基本平台,因为它具有简单,响应时间短,现场使用和成本效益高等几个关键优势,并且可以用于检测特定物质,包括小分子,大蛋白质甚至整个病原体,通过免疫反应在样品中进行。早期的纸带设计缺乏分析物浓度的定量信息,并且一次只能提供单个分析物检测。在这项研究中,进行了一系列修改以升级平台以弥补这些限制。首先,我们开发了基于金纳米粒子的LFS,用于定性比色法检测标准溶液和尿液样品中与膀胱癌相关的生物标志物。其次,通过合并图像处理程序“ ImageJ”,建立了半定量LFS平台。通过在尿液和细胞培养模型中测试小的DNA氧化损伤生物标志物来评估试纸条的能力。第三,我们结合了电化学方法和比色法进行定量生物标志物检测。最后,我们集成了一种商用血糖仪,通过将两种非葡萄糖生物标记物的信号转换为葡萄糖信号来定量检测它们。升级后的传感器可以为各种疾病生物标记物提供无创,快速,可视,定量和方便的检测平台。另外,该平台不需要昂贵的设备或训练有素的人员,认为它适合用作简单,经济和便携式的现场工具包,用于在各种临床环境中进行现场生物标记监测。

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    Zhu Xuena;

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  • 年度 2015
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