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Optical cell monitoring system for underwater targets

机译:水下目标的光学电池监视系统

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摘要

We demonstrate a cell based detection system that could be used for monitoring an underwater target volume and environment using a microfluidic chip and charge-coupled-device (CCD). This technique allows us to capture specific cells and enumerate these cells on a large area on a microchip. The microfluidic chip and a lens-less imaging platform were then merged to monitor cell populations and morphologies as a system that may find use in distributed sensor networks. The chip, featuring surface chemistry and automatic cell imaging, was fabricated from a cover glass slide, double sided adhesive film and a transparent Polymethlymetacrylate (PMMA) slab. The optically clear chip allows detecting cells with a CCD sensor. These chips were fabricated with a laser cutter without the use of photolithography. We utilized CD4~+ cells that are captured on the floor of a microfluidic chip due to the ability to address specific target cells using antibody-antigen binding. Captured CD4~+ cells were imaged with a fluorescence microscope to verify the chip specificity and efficiency. We achieved 70.2 ± 6.5% capturing efficiency and 88.8 ± 5.4% specificity for CD4~+ T lymphocytes (n = 9 devices). Bright field images of the captured cells in the 24 mm × 4 mm × 50 μm microfluidic chip were obtained with the CCD sensor in one second. We achieved an inexpensive system that rapidly captures cells and images them using a lens-less CCD system. This microfluidic device can be modified for use in single cell detection utilizing a cheap light-emitting diode (LED) chip instead of a wide range CCD system.
机译:我们演示了基于细胞的检测系统,该系统可用于使用微流控芯片和电荷耦合器件(CCD)监测水下目标体积和环境。这种技术使我们能够捕获特定的细胞,并在微芯片上的大面积上枚举这些细胞。然后将微流控芯片和无透镜成像平台合并在一起,以监视细胞种群和形态,以此作为可在分布式传感器网络中使用的系统。该芯片具有表面化学和自动细胞成像功能,由盖玻片,双面胶膜和透明的聚甲基丙烯酸甲酯(PMMA)平板制成。光学透明的芯片允许使用CCD传感器检测细胞。这些芯片是在不使用光刻的情况下用激光切割机制造的。我们利用捕获在微流控芯片底部的CD4 +细胞,因为能够使用抗体-抗原结合来定位特定的靶细胞。用荧光显微镜对捕获的CD4 +细胞进行成像,以验证芯片的特异性和效率。我们对CD4〜+ T淋巴细胞(n = 9个装置)的捕获效率达到70.2±6.5%,特异性为88.8±5.4%。用CCD传感器在一秒钟内获得了24 mm×4 mm×50μm微流控芯片中捕获的细胞的明场图像。我们实现了一种廉价的系统,可以使用无透镜CCD系统快速捕获细胞并对其成像。可以将这种微流体设备修改为使用便宜的发光二极管(LED)芯片而不是大范围的CCD系统,用于单细胞检测。

著录项

  • 来源
    《Unmanned/Unattended sensors and sensor networks V》|2008年|71120Q.1-71120Q.12|共12页
  • 会议地点 Cardiff(GB)
  • 作者单位

    Bio-Acoustic-MEMS in Medicine (BAMM) Laboratory, HST Center for Bioengineering, Brigham and Women's Hospital, Harvard Medical School, Boston, MA, USA;

    Bio-Acoustic-MEMS in Medicine (BAMM) Laboratory, HST Center for Bioengineering, Brigham and Women's Hospital, Harvard Medical School, Boston, MA, USA;

    Naval Undersea Warfare Center (NUWC) Division, Newport, RI, USA;

    Bio-Acoustic-MEMS in Medicine (BAMM) Laboratory, HST Center for Bioengineering, Brigham and Women's Hospital, Harvard Medical School, Boston, MA, USA Harvard-MIT Health Sciences and Technology, Cambridge, MA, USA;

  • 会议组织
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 TP212;
  • 关键词

    optical cell monitoring; CD4~+ cell capture; lens-less CCD system;

    机译:光学电池监控; CD4〜+细胞捕获;无镜头CCD系统;

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