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Disposable Cartridge Based Platform for Real-Time Detection of Single Viruses in Solution

机译:基于一次性墨盒的平台,可实时检测解决方案中的单个病毒

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摘要

Label-free imaging of viruses and nanoparticles directly in complex solutions is important for virology, vaccine research, and rapid diagnostics. These fields would all benefit from tools that allow for more rapid and sensitive characterization of viruses. Traditionally, light microscopy has been used in laboratories for detection of parasites, fungi, and bacteria for both research and clinical diagnosis because it is portable and simple to use. However, virus particles typically cannot be explored using light microscopy without the use of secondary labels due to their small size and low contrast. Characterization and detection of virus particles therefore rely on more complex approaches such as electron microscopy, ELISA, or plaque assay. These approaches require a significant level of expertise, purification of the virus from its natural environment, and often offer indirect verification of the virus presence. A successful virus visualization technique should be rapid, sensitive, and inexpensive, while needing minimal sample preparation or user expertise. We have developed a disposable cartridge based platform for real-time, sensitive, and label free visualization of viruses and nanoparticles directly in complex solutions such as serum. To create this platform we combined an interference reflectance imaging technique (SP-IRIS) with a sealable microfluidic cartridge. Through empirical testing and numeric modelling, the cartridge parameters were optimized and a flow rate of ~3 microL/min was established as optimal. A complex 2-dimensional paper based capillary pump was incorporated into the polymer cartridge to achieve a constant flow rate. Using this platform we were able to reliably show virus detection in a 20 minute experiment. We demonstrate sensitivity comparable to laboratory-based assays such as ELISA and plaque assay, and equal or better sensitivity compared to paper based rapid diagnostic tests. These results display a platform technology that is capable of rapid multiplexed detection and visualization of viruses and nanoparticles directly in solution. This disposable cartridge based platform represents a new approach for sample-to-answer label-free detection and visualization of viruses and nanoparticles. This technology has the potential to enable rapid and high-throughput investigation of virus particle morphology, as well as be used as a rapid point-of-care diagnostic tool where imaging viruses directly in biological samples would be valuable.
机译:直接在复杂溶液中对病毒和纳米颗粒进行无标签成像对于病毒学,疫苗研究和快速诊断非常重要。这些领域都将受益于可以更快速,更敏感地表征病毒的工具。传统上,光学显微镜已便携式且易于使用,因此已在实验室中用于检测寄生虫,真菌和细菌,以进行研究和临床诊断。但是,由于病毒颗粒尺寸小,对比度低,因此通常无法在不使用二级标记的情况下使用光学显微镜对病毒颗粒进行探索。因此,病毒颗粒的表征和检测依赖于更复杂的方法,例如电子显微镜,ELISA或噬菌斑测定。这些方法需要大量的专业知识,需要从自然环境中纯化病毒,并且通常可以间接验证病毒的存在。成功的病毒可视化技术应快速,灵敏且便宜,同时需要最少的样品制备或用户专业知识。我们已经开发了一个基于一次性墨盒的平台,可直接在复杂的溶液(例如血清)中实时,敏感和无标签地显示病毒和纳米颗粒。为了创建这个平台,我们将干涉反射成像技术(SP-IRIS)与可密封的微流控滤芯相结合。通过经验测试和数值建模,优化了滤芯参数,并确定〜3 microL / min的流速为最佳。将复杂的二维纸基毛细管泵结合到聚合物盒中,以实现恒定的流速。使用此平台,我们能够在20分钟的实验中可靠地显示病毒检测。我们证明了其灵敏度可与基于实验室的测定(如ELISA和噬菌斑测定)媲美,并且与基于纸质的快速诊断测试相比,具有同等或更高的灵敏度。这些结果显示了一种平台技术,该技术能够在溶液中直接对病毒和纳米颗粒进行快速多重检测和可视化。这个基于一次性药筒的平台代表了一种新的方法,用于无样品到答案的无标签检测以及病毒和纳米颗粒的可视化。该技术具有实现对病毒颗粒形态的快速,高通量研究的潜力,并可用作直接在生物样本中对病毒进行成像的有价值的快速即时诊断工具。

著录项

  • 作者

    Scherr, Steven M.;

  • 作者单位

    Boston University.;

  • 授予单位 Boston University.;
  • 学科 Mechanical engineering.;Engineering.
  • 学位 Ph.D.
  • 年度 2017
  • 页码 114 p.
  • 总页数 114
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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