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Design and characterization of a microfluidic flow cytometer.

机译:微流式细胞仪的设计与表征。

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摘要

The development and characterization of a microfluidic flow cytometer is described in this dissertation for rapid, inexpensive fluorescence and scatter based cellular enumeration for biomedical diagnostic and monitoring applications. Microfluidic cytometry enables a portable, economical platform for performing point-of-care cellular assays that are impractical with large conventional flow cytometry systems. Microchips were fabricated from glass using standard photolithography and wet chemical etching techniques. These chips were used in conjunction with static optical and electronic components to construct a robust instrument capable of accepting disposable microchips.;Flow cytometry measurements on-chip have demonstrated cellular analysis at rates greater than 2 kHz using vacuum driven flow, and positive pressure driven flow cytometry has been performed to measure cells at 12 kHz. Measurement precision has been investigated using commercially available calibration beads, and results demonstrate that the precision of chip based cytometry measurements is close to that seen using conventional instrumentation.;Cell discrimination based on immunophenotyping has been demonstrated in mixtures of cultured cells, peripheral blood mononuclear cells, and whole blood to demonstrate the applicability of this instrument for clinical cellular diagnostic and monitoring applications. Comparison studies have been performed using conventional cytometry instrumentation to assess the accuracy of our microfluidic system for immunophenotyping applications.;Efforts have also been made to incorporate erythrocyte lysis on-chip in order to rapidly analyze whole blood in an automated fashion. Chemical erythrocyte lysis followed by leukocyte cytometry has been integrated on a single monolithic device to demonstrate the ability to accurately measure cell subtype ratios from a whole blood sample while reducing off-chip sample processing steps. Further, applications in blood dosimetry are described to reveal potential advantages of performing rapid blood cell counts for therapeutic monitoring and bioterrorism applications using only a fingerstick of whole blood.;The technology described in this dissertation may be applied to numerous applications requiring the measurement of relative cell populations from biological fluids. Further development and optimization of this instrument has the potential to increase the accessibility of clinical cellular analyses in resource poor settings by providing rapid, low-volume, inexpensive clinical testing at the point-of-care.
机译:本文针对生物医学诊断和监测应用中快速,廉价的基于荧光和散射的细胞计数技术,描述了微流式细胞仪的开发和表征。微流式细胞术提供了一种便携式,经济的平台来执行即时护理细胞分析,而大型常规流式细胞仪系统则不可行。使用标准光刻和湿法化学蚀刻技术,由玻璃制成微芯片。这些芯片与静态光学和电子组件结合使用,构成了一种能够接受一次性微芯片的坚固仪器。芯片上的流式细胞仪测量已证明使用真空驱动流和正压驱动流以大于2 kHz的速率进行细胞分析已经进行了细胞计数术以测量12 kHz的细胞。已经使用市售的校准珠对测量精度进行了研究,结果表明基于芯片的细胞计数法的测量精度接近于使用常规仪器所见的精度;;已在培养细胞,外周血单核细胞的混合物中证明了基于免疫表型的细胞区分以及全血来证明该仪器在临床细胞诊断和监测应用中的适用性。已使用常规细胞仪对仪器进行了比较研究,以评估我们的微流控系统在免疫表型分析中的准确性。还努力将红细胞裂解法整合到芯片上,以便以自动化方式快速分析全血。化学红细胞裂解和白细胞流式细胞仪已集成在单个整体设备上,以证明能够在减少芯片外样品处理步骤的同时准确测量全血样品中细胞亚型比率的能力。此外,描述了在血液剂量测定中的应用,以揭示仅使用全血的指尖即可进行快速血细胞计数用于治疗监测和生物恐怖主义应用的潜在优势。本论文中描述的技术可应用于需要测量相对血脂的众多应用中来自生物体液的细胞群。通过在护理点提供快速,小批量,廉价的临床测试,该仪器的进一步开发和优化具有增加资源贫乏地区临床细胞分析的可及性的潜力。

著录项

  • 作者

    Herr, Joshua K.;

  • 作者单位

    The University of North Carolina at Chapel Hill.;

  • 授予单位 The University of North Carolina at Chapel Hill.;
  • 学科 Chemistry Analytical.;Chemistry Biochemistry.
  • 学位 Ph.D.
  • 年度 2010
  • 页码 169 p.
  • 总页数 169
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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