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首页> 外文期刊>Nature Communications >Two-dimensional single-cell patterning with one cell per well driven by surface acoustic waves
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Two-dimensional single-cell patterning with one cell per well driven by surface acoustic waves

机译:由表面声波驱动的每孔一个单元的二维单单元图案

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摘要

In single-cell analysis, cellular activity and parameters are assayed on an individual, rather than population-average basis. Essential to observing the activity of these cells over time is the ability to trap, pattern and retain them, for which previous single-cell-patterning work has principally made use of mechanical methods. While successful as a long-term cell-patterning strategy, these devices remain essentially single use. Here we introduce a new method for the patterning of multiple spatially separated single particles and cells using high-frequency acoustic fields with one cell per acoustic well. We characterize and demonstrate patterning for both a range of particle sizes and the capture and patterning of cells, including human lymphocytes and red blood cells infected by the malarial parasite Plasmodium falciparum. This ability is made possible by a hitherto unexplored regime where the acoustic wavelength is on the same order as the cell dimensions.
机译:在单细胞分析中,细胞活性和参数是根据个体而不是群体平均进行分析的。观察这些细胞随时间推移的活动所必需的是捕获,构图和保留它们的能力,为此,以前的单细胞构图工作主要利用机械方法。尽管作为一种长期的单元格构图策略是成功的,但这些设备基本上只能使用一次。在这里,我们介绍了一种使用高频声场对每个空间分离的单个粒子和细胞进行构图的新方法,每个声井一个细胞。我们表征并演示了一系列粒径以及细胞捕获和模式化的图案,其中包括由疟原虫恶性疟原虫感染的人淋巴细胞和红细胞。迄今未开发的方案使此功能成为可能,在该方案中,声波波长与像元尺寸处于同一数量级。

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