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A microfluidic platform for trapping releasing and super-resolution imaging of single cells

机译:用于捕获释放和超分辨率成像单细胞的微流体平台

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摘要

A multi-layer device, combining hydrodynamic trapping with microfluidic valving techniques, has been developed for on-chip manipulation and imaging of single cells and particles. Such a device contains a flow layer with trapping channels to capture single particles or cells and a control layer with valve channels to selectively control the trap and release processes. Particles and cells have been successfully trapped and released using the proposed device. The device enables the trapping of single particles with a trapping efficiency of greater than 95%, and allows for single particles and cells to be trapped, released and manipulated by simply controlling corresponding valves. Moreover, the trap and release processes are found to be compatible with biological samples like cells. Our device allows stable immobilisation of large numbers of single cells in a few minutes, significantly easing the experiment setup for single-cell characterisation and offering a stable platform for both single-molecule and super-resolution imaging. Proof-of-concept super- resolution imaging experiments with mouse embryonic stem cells (mESCs) have been conducted by exploiting super-resolution photoactivated localisation microscopy (PALM). Cells and nuclei were stably trapped and imaged. Centromeres of ∼200 nm size could be identified with a localisation precision of <15 nm.
机译:已经开发出一种将流体动力捕集与微流体阀技术相结合的多层设备,用于单细胞和颗粒的芯片上操作和成像。这样的装置包含具有捕获通道以捕获单个颗粒或细胞的流动层和具有阀通道以选择性地控制捕获和释放过程的控制层。使用所提出的装置已经成功地捕获和释放了颗粒和细胞。该设备能够以大于95%的捕获效率捕获单个颗粒,并允许通过简单地控制相应的阀来捕获,释放和操纵单个颗粒和细胞。此外,发现捕获和释放过程与诸如细胞的生物样品相容。我们的设备允许在几分钟内稳定固定大量单细胞,从而大大简化了单细胞表征的实验设置,并为单分子和超分辨率成像提供了稳定的平台。已经通过利用超分辨率光激活定位显微镜(PALM)进行了小鼠胚胎干细胞(mESC)的概念验证超分辨率成像实验。细胞和细胞核被稳定捕获并成像。可以鉴定到〜200 nm大小的着丝粒,定位精度为<15 nm。

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