Graphical abstract<'/> Sorting of tumour cells in a microfluidic device by multi-stage surface acoustic waves
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Sorting of tumour cells in a microfluidic device by multi-stage surface acoustic waves

机译:通过多阶段表面声波对微流体装置中的肿瘤细胞进行分选

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Graphical abstractDisplay OmittedHighlightsA multi-stage acoustic microfluidic is developed.Cell dilution is avoided through the first SSAW field utilised for enrichment process.Performance of sorting is improved by unidirectional movement of particles in the second TSAW field.AbstractDetection of circulating tumour cells (CTCs) plays a crucial role in the diagnosis of tumour metastasis and evaluation of therapeutic effect on prognosis. The low number of the CTCs, however, makes their isolation from the peripheral blood very difficult. In this paper, a microfluidic device has been developed, which consists of a pair of straight interdigital transducers (IDTs) and focused interdigital transducers (FIDTs), to separate tumour cells from red blood cells (RBCs) in the blood stream by surface acoustic waves (SAWs). The standing SAWs (SSAW) generated by the straight IDTs enabled placing the CTCs and RBCs at the pressure nodes while the FIDTs generated the focused travelling pulsed SAWs (TSAWs) to push the CTCs away from the blood cells to achieve the isolation of CTCs. Using this mechanism, this device was capable of concentrating and separating 2μm and 5μm polystyrene particles and about 94.2% of particles with the diameter of 5μm could be collected at the outlet. Moreover, 90%±2.4% of U87 glioma cells could be isolated from the RBCs when the cycle number of the TSAWs was 720k. In the enrichment process, this microfluidic device totally relied on the SSAW without any additional assistance of the flow focusing. For the separation, unlike the bidirectional acoustic radiation force in SSAW, the unidirectional force generated by TSAWs consistently pushed the particles along the wave propagation, improving the sorting performance. This multi-stage device may provide an alternative method for sorting CTCs in a reliable and flexible manner.
机译: 图形摘要 < ce:simple-para>省略显示 突出显示 一个多阶段 通过用于富集过程的第一个SSAW字段避免了细胞稀释。 排序性能得到改善 摘要 循环肿瘤细胞(CTC)的检测在肿瘤转移的诊断和评估预后的治疗作用中起着至关重要的作用。但是,CTC的数量很少,很难将其与外周血隔离。本文开发了一种微流体装置,该装置由一对直指叉指换能器(IDT)和聚焦指叉指换能器(FIDT)组成,通过表面声波将血液中的肿瘤细胞与红细胞(RBC)分离(SAW)。直型IDT产生的站立SAW(SSAW)可以将CTC和RBC放置在压力节点上,而FIDT产生聚焦的行进脉冲SAW(TSAW)来将CTC推离血细胞以实现CTC的隔离。利用这种机制,该装置能够浓缩和分离2μm和5μm的聚苯乙烯颗粒,并且在出口处可以收集到约94.2%的直径为5μm的颗粒。此外,当TSAW的周期数为720k时,可以从RBC中分离出90%±2.4%的U87神经胶质瘤细胞。在富集过程中,这种微流体装置完全依靠SSAW,而无需任何额外的流动聚焦帮助。对于分离,与SSAW中的双向声辐射力不同,TSAW产生的单向力始终将粒子沿波传播推动,从而提高了分选性能。这种多阶段设备可以提供一种可靠且灵活的方式对CTC进行分类的替代方法。

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  • 来源
    《Sensors and Actuators》 |2018年第4期|1174-1183|共10页
  • 作者单位

    Institute of Biomedical and Health Engineering, Shenzhen Institutes of Advanced Technology, Chinese Academy of Sciences,Sino-Dutch Biomedical and Information Engineering School, Northeastern University,Interdisciplinary Institute of Neuroscience and Technology, Qiushi Academy for Advanced Studies, Zhejiang University;

    Institute of Biomedical and Health Engineering, Shenzhen Institutes of Advanced Technology, Chinese Academy of Sciences;

    Institute of Biomedical and Health Engineering, Shenzhen Institutes of Advanced Technology, Chinese Academy of Sciences;

    Institute of Biomedical and Health Engineering, Shenzhen Institutes of Advanced Technology, Chinese Academy of Sciences;

    Institute of Biomedical and Health Engineering, Shenzhen Institutes of Advanced Technology, Chinese Academy of Sciences;

    Department of Physics, University of Vermont;

    Institute of Biomedical and Health Engineering, Shenzhen Institutes of Advanced Technology, Chinese Academy of Sciences;

    Institute of Biomedical and Health Engineering, Shenzhen Institutes of Advanced Technology, Chinese Academy of Sciences;

    Institute of Biomedical and Health Engineering, Shenzhen Institutes of Advanced Technology, Chinese Academy of Sciences,Key Laboratory for Magnetic Resonance and Multimodality Imaging of Guangdong Province;

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

    Acoustic radiation force; Acoustic manipulation; Cell separation; Microfluidics; Surface acoustic waves;

    机译:声辐射力;声处理;细胞分离;微流控;表面声波;

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