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Fabrication of microdevices for separation of circulating tumor cell using lateral magnetophoresis and immunomagnetic nanobeads

机译:利用侧向磁泳和免疫磁纳米珠分离循环肿瘤细胞的微型装置的制造

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This paper presents the design and fabrication of the microdevice for separation of circulating tumor cells (CTCs) from human whole blood based on lateral magnetophoresis principle and immunomagnetic nanobeads with the antiepithelial cell adhesive molecule (EpCAM) antibodies that selectively bind to epithelial cancer cells. We designed damascene v-shaped 60 μm-thick Nickel-Cobalt (Ni-Co) ferromagnetic wires with a flat zone and fabricated with micromachining technologies. The separation is carried out through lateral magnetophoresis, stimulated by magnetic field gradient-based isolation technologies. Experimentally, first, we observed the effect of external static magnetic intensity on the isolation rates. And we showed that microdevices isolates about 93% of the spiked CTCs cancer cells (MCF-7, a breast cancer cell line) in human whole blood at a flow rate of 40/100 μL/min with respect to human whole blood/buffer solution. For the overall isolation, it takes 15 min to process and analyze 500 μL of human whole blood.
机译:本文介绍了基于横向磁泳原理和具有选择性结合上皮癌细胞的抗上皮细胞粘附分子(EpCAM)抗体的免疫磁性纳米珠,从人全血中分离循环肿瘤细胞(CTC)的微装置的设计和制造。我们设计了具有平坦区域的镶嵌v型60微米厚的镍钴(Ni-Co)铁磁线,并采用微加工技术制造。分离是通过基于磁场梯度的隔离技术激发的横向磁泳进行的。在实验上,首先,我们观察到外部静态磁强度对隔离率的影响。而且我们证明,相对于人全血/缓冲液,微设备以40/100μL/ min的流速分离了人全血中约93%的加标CTCs癌细胞(MCF-7,乳腺癌细胞系) 。对于整体隔离,需要花费15分钟来处理和分析500μL人类全血。

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