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首页> 外文期刊>Sensors Journal, IEEE >High-Throughput Immunomagnetic Cell Detection Using a Microaperture Chip System
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High-Throughput Immunomagnetic Cell Detection Using a Microaperture Chip System

机译:使用微孔芯片系统的高通量免疫磁性细胞检测

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摘要

We report a microchip system based on a combination of immunomagnetic separation, microfluidics, and size-based filtration for high-throughput detection of rare cells. In this system, target cells bind to magnetic beads in vitro and flow parallel to a microchip with flow rates of milliliters/minute. A magnetic field draws the bead-bound cells toward the microchip, which contains apertures that allow passage of unbound beads while trapping the target cells. The cells captured on the chip can be investigated clearly under a microscope and released from the chip for further analysis. We first characterize the system by detecting cancer cell lines (MCF-7 and A549) in culture media. We then demonstrate detection of 100 MCF-7 cells spiked in 7.5 mL of human blood to simulate detection of circulating tumor cells present in cancer patient blood samples. On average, 85% of the spiked cells were detected. We expect this system to be highly useful in a wide variety of clinical as well as other applications that seek rare cells.
机译:我们报告了基于免疫磁分离,微流控和基于大小的过滤相结合的微芯片系统的高通量检测稀有细胞。在该系统中,靶细胞体外与磁珠结合,并以微毫升/分钟的流速平行于微芯片流动。磁场将微珠结合的细胞吸引向微芯片,微芯片的微孔包含孔,可在捕获靶细胞的同时使未结合的微珠通过。捕获在芯片上的细胞可以在显微镜下清楚地检查并从芯片上释放出来以进行进一步分析。我们首先通过检测培养基中的癌细胞系(MCF-7和A549)来表征系统。然后,我们演示了在7.5 mL人体血液中掺入的100个MCF-7细胞的检测,以模拟检测癌症患者血液样本中存在的循环肿瘤细胞。平均而言,检出了85%的加标细胞。我们希望该系统在各种临床以及寻找稀有细胞的其他应用中非常有用。

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