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基于双极电极的无鞘聚焦和连续声分选集成微流控装置中的颗粒和细胞。

Bipolar Electrode-based Sheath-Less Focusing and Continuous Acoustic Sorting of Particles and Cells in an Integrated Microfluidic Device.

机构信息

School of Microelectronics, Northwestern Polytechnical University, Xi'an 710072, PR China.

Research & Development Institute of Northwestern Polytechnical University in Shenzhen, Shenzhen 518000, PR China.

出版信息

Anal Chem. 2024 Feb 27;96(8):3627-3635. doi: 10.1021/acs.analchem.3c05755. Epub 2024 Feb 12.

Abstract

Sheath-less focusing and sorting of cells or particles is an important preprocessing step in a variety of biochemical applications. Most of the previous sorting methods depend on the use of sheath flows to realize efficient cell focusing. The sheath flow dilutes the sample and requires precise flow control via additional channels. We, for the first time, reported a method of bipolar electrode (BPE)-based sheath-less focusing, switching, and tilted-angle standing surface acoustic wave-based sorting of cells and particles in continuous flow. The device consists of a piezoelectric substrate with a pair of BPEs for focusing and switching, and a pair of interdigitated transducers for cell sorting. Smaller cells experience a weak acoustic force and reach the lower outlet, whereas larger cells are subjected to a strong acoustic force such that they are propelled toward the upper outlet. We first validate the device functionality by sorting 5 and 8 μm PS beads with a high sorting efficiency. The working and deflection regions were increased by propelling the particle beam toward the bottom edge of BPE via changing the applied voltage of BPE, further improving the sorting performance with high efficiency (94%) and purity (92%). We then conducted a verification for sorting THP-1 and yeast cells, and the efficiency and purity reached 90.7 and 91.5%, respectively. This integrated device eliminates the requirement of balancing the flow of several sheath inlets and provides a robust and unique approach for cell sorting applications, showing immense promise in various applications, such as medical diagnosis, drug delivery, and personalized medicine.

摘要

无鞘聚焦和分选细胞或颗粒是各种生化应用中的重要预处理步骤。大多数先前的分选方法依赖于鞘流来实现高效的细胞聚焦。鞘流会稀释样品,并需要通过附加通道进行精确的流量控制。我们首次报道了一种基于双极电极(BPE)的无鞘聚焦、切换和倾斜角驻波声表面波分选细胞和颗粒的方法,该方法在连续流中实现。该装置由一个带有一对 BPE 的压电基板组成,用于聚焦和切换,以及一对叉指换能器用于细胞分选。较小的细胞受到较弱的声场力,到达较低的出口,而较大的细胞则受到较强的声场力,从而被推向较高的出口。我们首先通过对 5 和 8 μm PS 珠进行高分选效率的分选来验证器件的功能。通过改变 BPE 的施加电压,将粒子束推向 BPE 的底边,增加了工作和偏转区域,进一步提高了分选性能,具有高效率(94%)和高纯度(92%)。然后,我们对 THP-1 和酵母细胞进行了分选验证,效率和纯度分别达到 90.7%和 91.5%。这种集成的器件消除了对多个鞘流入口的流量平衡的要求,并为细胞分选应用提供了一种强大而独特的方法,在医疗诊断、药物输送和个性化医疗等各种应用中具有巨大的潜力。

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