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A microfluidic device with focusing and spacing control for resistance-based sorting of droplets and cells

机译:具有聚焦和间距控制的微流体装置,用于基于阻力的液滴和细胞分选

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This paper reports a novel hydrodynamic technique for sorting of droplets and cells based on size and deformability. The device comprises two modules: a focusing and spacing control module and a sorting module. The focusing and spacing control module enables focusing of objects present in a sample onto one of the side walls of a channel with controlled spacing between them using a sheath fluid. A 3D analytical model is developed to predict the sheath-to-sample flow rate ratio required to facilitate singlefile focusing and maintain the required spacing between a pair of adjacent objects. Experiments are performed to demonstrate focusing and spacing control of droplets (size 5-40 mu m) and cells (HL60, size 10-25 mu m). The model predictions compare well with experimental data in terms of focusing and spacing control within 9%. In the sorting module, the main channel splits into two branch channels (straight and side branches) with the flow into these two channels separated by a "dividing streamline". A sensing channel and a bypass channel control the shifting of the dividing streamline depending on the object size and deformability. While resistance offered by individual droplets of different sizes has been studied in our previous work (P. Sajeesh, M. Doble and A. K. Sen, Biomicrofluidics, 2014, 8, 1-23), here we present resistance of individual cells (HL60) as a function of size. A theoretical model is developed and used for the design of the sorter. Experiments are performed for size-based sorting of droplets (sizes 25 and 40 mu m, 10 and 15 mu m) and HL60 cells (sizes 11 mu m and 19 mu m) and deformability-based sorting of droplets (size 10 +/- 1.0 mu m) and polystyrene microbeads (size 10 +/- 0.2 mu m). The performance of the device for size-and deformability-based sorting is characterized in terms of sorting efficiency. The proposed device could be potentially used as a diagnostic tool for sorting of larger tumour cells from smaller leukocytes.
机译:本文报道了一种基于大小和可变形性对液滴和细胞进行分选的新型流体力学技术。该设备包括两个模块:聚焦和间距控制模块和分类模块。聚焦和间距控制模块使样品中存在的物体能够通过鞘液聚焦在通道的侧壁之一上,并在它们之间具有受控的间距。开发了3D分析模型,以预测所需的鞘液与样品流速之比,以促进单文件聚焦并保持一对相邻物体之间所需的间距。进行实验以证明对液滴(5-40微米)和细胞(HL60,10-25微米)的聚焦和间距控制。在聚焦和间距控制在9%以内的情况下,模型预测与实验数据具有良好的对比。在分拣模块中,主通道分为两个分支通道(直分支和侧分支),流入这两个通道的流由“划分流线”分开。感测通道和旁路通道根据物体的大小和可变形性控制分割流线的移动。虽然在我们之前的工作中已经研究了不同大小的小液滴提供的抗性(P. Sajeesh,M。Doble和AK Sen,Biomicrofluidics,2014年第8期,第1-23页),但在此我们将单个细胞的抗性(HL60)表示为大小的函数。理论模型已开发出来,并用于分拣机的设计。进行基于大小的液滴(25和40微米,10和15微米)和HL60细胞(大小11微米和19微米)的基于大小的分类以及基于变形性的液滴(10 +/-大小)的分类的实验1.0微米)和聚苯乙烯微珠(尺寸10 +/- 0.2微米)。用于基于尺寸和可变形性的分类的设备的性能以分类效率为特征。所提出的装置可以潜在地用作从较小的白细胞中分选较大的肿瘤细胞的诊断工具。

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