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Time Sequential Single-Cell Patterning with High Efficiency and High Density

机译:具有高效率和高密度的时间顺序单细胞图案

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摘要

Single-cell capture plays an important role in single-cell manipulation and analysis. This paper presents a microfluidic device for deterministic single-cell trapping based on the hydrodynamic trapping mechanism. The device is composed of an S-shaped loop channel and thousands of aligned trap units. This arrayed structure enables each row of the device to be treated equally and independently, as it has row periodicity. A theoretical model was established and a simulation was conducted to optimize the key geometric parameters, and the performance was evaluated by conducting experiments on MCF-7 and Jurkat cells. The results showed improvements in single-cell trapping ability, including loading efficiency, capture speed, and the density of the patterned cells. The optimized device can achieve a capture efficiency of up to 100% and single-cell capture efficiency of up to 95%. This device offers 200 trap units in an area of 1 mm2, which enables 100 single cells to be observed simultaneously using a microscope with a 20× objective lens. One thousand cells can be trapped sequentially within 2 min; this is faster than the values obtained with previously reported devices. Furthermore, the cells can also be recovered by reversely infusing solutions. The structure can be easily extended to a large scale, and a patterned array with 32,000 trap sites was accomplished on a single chip. This device can be a powerful tool for high-throughput single-cell analysis, cell heterogeneity investigation, and drug screening.
机译:单细胞捕获在单细胞操作和分析中起重要作用。本文提出了一种基于流体动力捕集机理的用于确定性单细胞捕集的微流体装置。该设备由一个S形环形通道和成千上万个对齐的陷阱单元组成。这种阵列结构使设备的每一行都具有行周期性,因此可以平等且独立地得到处理。建立了理论模型,并进行了仿真以优化关键的几何参数,并通过在MCF-7和Jurkat细胞上进行实验来评估性能。结果显示单细胞捕获能力的改善,包括加载效率,捕获速度和图案化细胞的密度。经过优化的设备可实现高达100%的捕获效率和高达95%的单细胞捕获效率。该设备在1 mm 2 的区域中提供200个捕获单元,从而可以使用带有20倍物镜的显微镜同时观察100个单细胞。 2分钟内可以依次捕获1,000个细胞;这比以前报告的设备获得的值更快。此外,还可以通过反向输注溶液来回收细胞。该结构可以轻松地大规模扩展,并且在单个芯片上完成了具有32,000个陷阱位点的图案化阵列。该设备可以成为用于高通量单细胞分析,细胞异质性研究和药物筛选的强大工具。

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