Fazelkhah Azita, Afshar Samaneh, Durham Nicholas, Butler Michael, Salimi Elham, Bridges Greg, Thomson Douglas
Department of Electrical and Computer Engineering, University of Manitoba, Winnipeg, Canada.
Department of Electrical and Computer Engineering, Faculty of Applied Science, University of British Columbia, Vancouver, Canada.
Electrophoresis. 2020 May;41(9):720-728. doi: 10.1002/elps.201900393. Epub 2020 Feb 19.
In this work, we present an optical transit DEP flow cytometer for parallel single-cell analysis. Each cell's dielectric property is inferred from velocity perturbations due to DEP actuation in a microfluidic channel. Dual LED sources facilitate velocity measurement by producing two transit shadows for each cell passing through the channel. These shadows are detected using a 256-pixel linear optical array detector. Massively parallel analysis is possible as each pixel of the detector can independently analyze the passing cells. A wide channel (∼18 mm) was employed to carry many particles simultaneously, and the system was capable of detecting the velocity of over 200 cells simultaneously. We have achieved analysis rates for 10 µm diameter polystyrene spheres response exceeding 250 per second. With appropriate calibration, this DEP cytometer can quantitatively measure the dielectric response. The dielectric response (Clausius-Mossotti factor) of viable CHO cells was measured over the frequency range of 100 kHz to 6 MHz, and the obtained response matches the previously measured values by our group. The DEP cytometer uses simple modular components to achieve high throughput label-free single-cell dielectric analysis and can begin analyzing particles within 10 s after starting to pump the sample into the channel.
在这项工作中,我们展示了一种用于并行单细胞分析的光学透射介电泳流式细胞仪。通过微流控通道中介电泳驱动引起的速度扰动来推断每个细胞的介电特性。双LED光源通过为每个通过通道的细胞产生两个透射阴影来促进速度测量。使用256像素线性光学阵列探测器检测这些阴影。由于探测器的每个像素都可以独立分析通过的细胞,因此可以进行大规模并行分析。采用宽通道(约18毫米)来同时携带许多颗粒,并且该系统能够同时检测200多个细胞的速度。我们实现了对直径10μm聚苯乙烯微球的分析速率超过每秒250个。经过适当校准后,这种介电泳细胞仪可以定量测量介电响应。在100kHz至6MHz的频率范围内测量了活的CHO细胞的介电响应(克劳修斯-莫索蒂因子),获得的响应与我们小组之前测量的值相匹配。该介电泳细胞仪使用简单的模块化组件来实现高通量无标记单细胞介电分析,并且在开始将样品泵入通道后10秒内即可开始分析颗粒。