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Lab-on-a-chip biosensors for the rapid detection of pathogens in clinical and field samples.

机译:芯片实验室生物传感器,用于快速检测临床和现场样品中的病原体。

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摘要

In the United States and other developed countries, despite great efforts in time and funding for the prevention of foodborne and airborne diseases, there is still an unacceptable level of common pathogens spread via food, water, and air. To this end, lab-on-a-chip (LOC) technologies were developed for field-deployable assays and point of care diagnostics. These devices have potential applications in hospitals, agricultural farms, processing plants, and even on fields of battle. Two successful types of assays in the recent years towards point of care diagnostics are immunoassays and nucleic acid detection assays. In the Appendix A, we demonstrated a complete, field-deployable particle immunoassay encased within a microfluidic chip that detects small quantities of Salmonella Typhimurium in poultry fluid samples. Because the necessary reagents are pre-loaded and the test and negative control channels are fed by a single sample inlet, single pipetting of sample is possible. This assay demonstrated a 10 CFU/mL limit of detection, which is considerably lower than PCR and enzyme-linked immunosorbent assay (ELISA). Total assay time, including sample reading in an integrated handheld device, was 10 minutes, which was much lower than conventional methods. Because of the simplified protocol and assay time, this biosensor has potential in clinical and field diagnostic applications. In Appendix B, we fit the particle immunoassay to test for Influenza A H1N1/2009 virus and included aerosol sampling from a scaled-down mock classroom. To make the assay field deployable, we used an iPhone for signal detection. The detection limit of the assay was 1 pg/mL (10 pg/mL using the iPhone), which is well below the limit of detection for RT-PCR. This protocol demonstrated that immunoassays can be effective in the presence of interfering dust particles and that viruses can be collected from aerosol with minimal sample preparation. In Appendix C, we demonstrated that paper microfluidics, a newer vision of microfluidics, is a cheap and easy method to extract nucleic acid from S. Typhimurium in a variety of samples, including poultry packaging liquid, whole blood, and feces. Fluorescent detection with an iPhone allows for field and clinical testing. This protocol interfaces with rapid PCR and is a true diagnostic tool.
机译:在美国和其他发达国家,尽管在预防食源性和空气传播疾病方面付出了巨大的时间和资金,但通过食物,水和空气传播的常见病原体仍然存在不可接受的水平。为此,开发了片上实验室(LOC)技术,用于可现场部署的测定和即时诊断。这些设备在医院,农业农场,加工厂,甚至在战场上都有潜在的应用。近年来,针对护理点诊断的两种成功的测定类型是免疫测定和核酸检测测定。在附录A中,我们展示了一种完整的,可现场部署的微粒免疫测定法,该测定法装在微流控芯片中,可检测家禽体液样品中的少量鼠伤寒沙门氏菌。由于预装了必要的试剂,并且测试通道和阴性对照通道通过单个样品入口进料,因此可以单次吸取样品。该测定法显示出10 CFU / mL的检测下限,大大低于PCR和酶联免疫吸附测定(ELISA)。包括集成手持设备中的样本读取在内的总测定时间为10分钟,比传统方法要低得多。由于简化的方案和测定时间,该生物传感器在临床和现场诊断应用中具有潜力。在附录B中,我们将粒子免疫测定法适合于测试甲型H1N1 / 2009流感病毒,包括从缩小的模拟教室进行的气溶胶采样。为了使分析现场可部署,我们使用iPhone进行信号检测。该测定的检出限为1 pg / mL(使用iPhone时为10 pg / mL),远低于RT-PCR的检出限。该方案证明免疫测定在存在尘埃干扰颗粒的情况下可能是有效的,并且可以通过最少的样品制备就可以从气溶胶中收集病毒。在附录C中,我们证明了纸微流控技术(一种新型的微流控技术)是一种廉价,简便的方法,可从鼠伤寒沙门氏菌的各种样品中提取核酸,包括家禽包装液,全血和粪便。使用iPhone进行荧光检测可以进行现场和临床测试。该协议与快速PCR配合使用,是真正的诊断工具。

著录项

  • 作者

    Fronczek, Christopher F.;

  • 作者单位

    The University of Arizona.;

  • 授予单位 The University of Arizona.;
  • 学科 Engineering Biomedical.
  • 学位 Ph.D.
  • 年度 2013
  • 页码 125 p.
  • 总页数 125
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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