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微流体探针:操作及用于局部表面处理

The microfluidic probe: operation and use for localized surface processing.

作者信息

Perrault Cecile M, Qasaimeh Mohammad A, Juncker David

机构信息

Department of Biomedical Engineering, McGill University.

出版信息

J Vis Exp. 2009 Jun 4(28):1418. doi: 10.3791/1418.

Abstract

Microfluidic devices allow assays to be performed using minute amounts of sample and have recently been used to control the microenvironment of cells. Microfluidics is commonly associated with closed microchannels which limit their use to samples that can be introduced, and cultured in the case of cells, within a confined volume. On the other hand, micropipetting system have been used to locally perfuse cells and surfaces, notably using push-pull setups where one pipette acts as source and the other one as sink, but the confinement of the flow is difficult in three dimensions. Furthermore, pipettes are fragile and difficult to position and hence are used in static configuration only. The microfluidic probe (MFP) circumvents the constraints imposed by the construction of closed microfluidic channels and instead of enclosing the sample into the microfluidic system, the microfluidic flow can be directly delivered onto the sample, and scanned across the sample, using the MFP. . The injection and aspiration openings are located within a few tens of micrometers of one another so that a microjet injected into the gap is confined by the hydrodynamic forces of the surrounding liquid and entirely aspirated back into the other opening. The microjet can be flushed across the substrate surface and provides a precise tool for localized deposition/delivery of reagents which can be used over large areas by scanning the probe across the surface. In this video we present the microfluidic probe (MFP). We explain in detail how to assemble the MFP, mount it atop an inverted microscope, and align it relative to the substrate surface, and finally show how to use it to process a substrate surface immersed in a buffer.

摘要

微流控设备能够使用微量样本进行分析,并且最近已被用于控制细胞的微环境。微流控通常与封闭的微通道相关联,这限制了它们仅用于能够在有限体积内引入并(对于细胞而言)培养的样本。另一方面,微量移液系统已被用于局部灌注细胞和表面,特别是使用推挽设置,其中一个移液管作为源,另一个作为汇,但在三维空间中很难限制流体流动。此外,移液管很脆弱,难以定位,因此仅以静态配置使用。微流控探针(MFP)规避了封闭微流控通道结构所带来的限制,微流控流不是被封闭在微流控系统中,而是可以使用MFP直接输送到样本上,并在样本上进行扫描。注射口和吸入口彼此相距几十微米,这样注入间隙的微射流会受到周围液体的流体动力限制,并完全被吸回到另一个开口中。微射流可以冲洗过基底表面,并提供了一种精确的工具,用于通过在表面扫描探针在大面积上局部沉积/输送试剂。在本视频中,我们展示了微流控探针(MFP)。我们详细解释了如何组装MFP,将其安装在倒置显微镜上,并相对于基底表面进行对齐,最后展示了如何使用它来处理浸没在缓冲液中的基底表面。

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