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Electromagnetic microfluidic cell labeling device using on-chip microelectromagnet and multi-layered channels

机译:使用片上微电磁体和多层通道的电磁微流控细胞标记装置

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摘要

We present a new design for a microfluidic cell sorting system in which microelectromagnets are implemented and the Joule heating energy is dissipated to maintain a biocompatible temperature. The microfluidic channel has a multi-layered structure for rapid separation in a high gradient magnetic field. The top and bottom layers of our device both contribute to separate the magnetically labeled bio-particles, such as animal cells and bacteria, in the vertical direction. Joule heat was exploited to supply the thermal energy to an active area of cell sample channels, and the channel temperature was maintained in the biocompatible range (37℃) using cooling channels embedded in the top channel layer.rnWe numerically analyzed heat transfer for an on-chip electromagnet and solved the Joule heat problem of the device. Experimentally, we demonstrated the separation of a T-cell leukemia line, human Jurkat cells, utilizing immune-magnetophoresis. Magnetic beads with a characteristic polymer surface for coupling with CD3 T-cells made it possible to sort the human Jurkat cells with a labeling efficiency of greater than 95%. According to the cell viability test, the number of dead cells did not exceed 10% of the total, indicating that our cell sorting system did not cause any heat damage to the cells, despite utilizing electromagnets.
机译:我们提出了一种微流控细胞分选系统的新设计,其中实施了微电磁体,并消耗了焦耳热能以维持生物相容性温度。微流体通道具有用于在高梯度磁场中快速分离的多层结构。我们设备的顶层和底层都有助于在垂直方向上分离磁性标记的生物颗粒,例如动物细胞和细菌。利用焦耳热将热能提供给细胞样品通道的有效区域,并使用顶部通道层中嵌入的冷却通道将通道温度保持在生物相容性范围内(37℃)。芯片电磁铁,解决了设备的焦耳热问题。在实验上,我们证明了利用免疫磁泳法分离T细胞白血病系人Jurkat细胞的方法。具有特征性聚合物表面以与CD3 T细胞偶联的磁珠使得可以以大于95%的标记效率对人Jurkat细胞进行分选。根据细胞活力测试,死细胞的数量不超过总数的10%,这表明我们的细胞分选系统即使利用电磁体也不会对细胞造成任何热损伤。

著录项

  • 来源
    《Sensors and Actuators》 |2009年第1期|210-216|共7页
  • 作者单位

    Lab. of Biochip Technology, School of Mechanical Engineering, Yonsei University, Seoul, Republic of Korea;

    Lab. of Biochip Technology, School of Mechanical Engineering, Yonsei University, Seoul, Republic of Korea;

    Department of Internal Medicine, Yonsei University College of Medicine, Seoul, Republic of Korea;

    Lab. of Biochip Technology, School of Mechanical Engineering, Yonsei University, Seoul, Republic of Korea;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    electromagnet; multi-layered; joule heating; cell labeling; magnetophoresis;

    机译:电磁铁多层焦耳加热细胞标记;磁泳;

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