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Biosensor development for environmental monitoring, food safety, and secondary education applications.

机译:用于环境监测,食品安全和中等教育应用的生物传感器开发。

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摘要

This dissertation develops biosensors for rapid detection of pathogens for environmental monitoring and food safety applications and utilizes the multidisciplinary and multi-application characteristics of biosensors to develop a lesson plan that can be implemented in secondary education classrooms. The detection methods evolve from particle immunoagglutination assay, PDMS optofluidic lab-on-a-chip, and spectrum analysis to smartphone and image analysis without any reagent; the potential application in secondary education also underlines the extended value of biosensors.;In the first paper presented here, an optofluidic lab-on-a-chip system and subsequent sampling procedure were developed for detecting bacteria from soil samples utilizing Mie scattering detection of particle immunoagglutination assay. This system and protocol detected the presence of Escherichia coli K12 from soil particles in near real-time (10 min) with a detection limit down to 1 CFU mL-1 and has the potential to be implemented in the field. We also compared the interaction between E. coli and soil particles to the two-step protein-surface interaction.;In the second paper, a smartphone-utilized biosensor consisting of a near-infrared (NIR) LED (wavelength of 880 nm) and a digital camera of a smartphone was developed for detecting microbial spoilage on ground beef, without using any reagents. The method was further improved by programming a smartphone application that allows the user to position the smartphone at an optimum distance and a range of angles utilizing its internal gyro sensor to measure a series of scatter intensities against the detection angle. This handheld device can be used as a preliminary screening tool to monitor microbial contamination on meat products.;In the third paper, we designed a lesson plan for secondary education classrooms using biosensors as a core and branching out to different applications and fields of study with the goal of heightening students' interest and motivation toward attaining degrees and careers in STEM fields. Results revealed that the lesson was more effective in affecting younger students than older students, and more effective in teaching about the applications of biosensors than about the techniques of biosensor development.
机译:本论文开发了用于环境监测和食品安全应用中病原体快速检测的生物传感器,并利用生物传感器的多学科和多用途特性来制定可在中学教育课堂中实施的教学计划。检测方法从颗粒免疫凝集分析,PDMS芯片上光流体实验室,光谱分析到无任何试剂的智能手机和图像分析,应运而生。 ;在中学教育中的潜在应用也突显了生物传感器的扩展价值。;在本文的第一篇论文中,开发了一种光流芯片实验室系统和随后的采样程序,用于利用粒子的Mie散射检测来检测土壤样品中的细菌免疫凝集测定。该系统和协议可在近实时(10分钟)内从土壤颗粒中检测到大肠杆菌K12,检测限低至1 CFU mL-1,并有可能在现场实施。我们还比较了大肠杆菌和土壤颗粒之间的相互作用以及蛋白质与表面的两步相互作用。在第二篇论文中,智能手机使用的生物传感器由近红外(NIR)LED(波长为880 nm)和开发了智能手机的数码相机,无需使用任何试剂即可检测碎牛肉上的微生物变质。通过对智能手机应用程序进行编程,该方法得到了进一步改进,该应用程序允许用户利用其内部陀螺仪传感器针对检测角度测量一系列散射强度,从而将智能手机定位在最佳距离和角度范围内。该手持设备可用作监测肉类产品上微生物污染的初步筛查工具。;在第三篇论文中,我们设计了针对以生物传感器为核心的中学教育教室的教学计划,并将其扩展到不同的应用和研究领域。目标是提高学生对获得STEM领域学位和职业的兴趣和动力。结果表明,本课程对年幼学生的影响要比年长学生更有效,并且在讲授生物传感器的应用方面比在讲授生物传感器的技术上更有效。

著录项

  • 作者

    Liang, Pei-Shih.;

  • 作者单位

    The University of Arizona.;

  • 授予单位 The University of Arizona.;
  • 学科 Engineering Agricultural.;Engineering Environmental.;Agriculture Food Science and Technology.
  • 学位 Ph.D.
  • 年度 2013
  • 页码 116 p.
  • 总页数 116
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

  • 入库时间 2022-08-17 11:41:14

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