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High-throughput, deterministic single cell trapping and long-term clonal cell culture in microfluidic devices

机译:微流控设备中的高通量,确定性单细胞捕获和长期克隆细胞培养

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摘要

We report the design and validation of a two-layered microfluidic device platform for single cell capture, culture and clonal expansion. Under manual injection of a cell suspension, deterministic trapping of hundreds to thousands of single cells (adherent and non-adherent) in a high throughput manner and at high trapping efficiency was achieved simply through the incorporation of a U-shaped hydrodynamic trap into the downstream wall of each micro-well. Post single cell trapping, we confirmed that these modified micro-wells permit the attachment, spreading and proliferation of the trapped single cells for multiple generations over extended periods of time (>7 days) under media perfusion. Due to its a) low cost, b) simplicity in fabrication and operation, c) high trapping efficiency, d) reliable and repeatable trapping mechanism, e) cell size selection and f) capability to provide perfused long-term culture and continuous time-lapse imaging, the microfluidic device developed and validated in this study is seen to have significant potential application in high-throughput single cell quality assessment and clonal analysis.
机译:我们报告了单细胞捕获,培养和克隆扩展的两层微流控设备平台的设计和验证。在手动注入细胞悬液的情况下,只需将U型流体动力捕集器并入下游,即可以高通量方式并以高捕集效率,确定性地捕集数百至数千个单细胞(贴壁和非贴壁)每个微孔的壁。在单细胞捕获后,我们证实了这些修饰的微孔可以在培养基灌流的延长时间段(> 7天)内使捕获的单细胞在多代中附着,扩散和增殖。由于其a)成本低,b)制造和操作简单,c)捕集效率高,d)可靠且可重复的捕集机制,e)细胞大小选择和f)提供灌注长期培养和连续时间的能力,失效成像技术,在本研究中开发和验证的微流体装置被认为在高通量单细胞质量评估和克隆分析中具有重要的潜在应用。

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