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Microdevice for Separation of Circulating Tumor Cells Using Embedded Magnetophoresis with V-shaped Ni-Co Nanowires and Immuno-nanomagnetic Beads

机译:微型设备分离的循环肿瘤细胞使用V型镍钴纳米线和免疫纳米磁珠的嵌入式磁浮法。

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The novelty of this study resides in a 6”-wafer-level microfabrication protocol for a microdevice with a fluidic control system for the separation of circulating tumor cells (CTCs) from human whole blood cells. The microdevice utilizes a lateral magnetophoresis method based on immunomagnetic nanobeads with anti-epithelial cell adhesive molecule antibodies that selectively bind to epithelial cancer cells. The device consists of a top polydimethylsiloxane substrate for microfluidic control and a bottom substrate for lateral magnetophoretic force generation with embedded v-shaped soft magnetic microwires. The microdevice can isolate about 93% of the spiked cancer cells (MCF-7, a breast cancer cell line) at a flow rate of 40/100 mL/min with respect to a whole human blood/buffer solution. For all isolation, it takes only 10 min to process 400 mL of whole human blood. The fabrication method is sufficiently simple and easy, allowing the microdevice to be a mass-producible clinical tool for cancer diagnosis, prognosis, and personalized medicine.
机译:这项研究的新颖性在于微器件的6英寸晶圆级微制造方案,该协议具有用于从人全血细胞中分离循环肿瘤细胞(CTC)的流体控制系统。微型设备利用基于免疫磁性纳米珠的横向磁泳方​​法,该方法具有选择性结合上皮癌细胞的抗上皮细胞粘附分子抗体。该设备由用于微流控的顶部聚二甲基硅氧烷基材和用于嵌入横向V形软磁微丝的横向磁致发力的底部基材组成。相对于全人类血液/缓冲液,微型设备可以40/100 mL / min的流速分离出约93%的加标癌细胞(MCF-7,乳腺癌细胞系)。对于所有隔离,仅需10分钟即可处理400 mL全人类血液。该制造方法足够简单和容易,从而使得该微型设备成为用于癌症诊断,预后和个性化医学的可大量生产的临床工具。

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