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用于直接定量跨内皮电阻的集成电极芯片器官系统的制造与验证

Fabrication and Validation of an Organ-on-chip System with Integrated Electrodes to Directly Quantify Transendothelial Electrical Resistance.

作者信息

van der Helm Marinke W, Odijk Mathieu, Frimat Jean-Philippe, van der Meer Andries D, Eijkel Jan C T, van den Berg Albert, Segerink Loes I

机构信息

BIOS Lab on a Chip group, MIRA Institute for Biomedical Technology and Technical Medicine, MESA+ Institute for Nanotechnology and Max Planck Center for Complex Fluid Dynamics, University of Twente;

BIOS Lab on a Chip group, MIRA Institute for Biomedical Technology and Technical Medicine, MESA+ Institute for Nanotechnology and Max Planck Center for Complex Fluid Dynamics, University of Twente.

出版信息

J Vis Exp. 2017 Sep 26(127):56334. doi: 10.3791/56334.

Abstract

Organs-on-chips, in vitro models involving the culture of (human) tissues inside microfluidic devices, are rapidly emerging and promise to provide useful research tools for studying human health and disease. To characterize the barrier function of cell layers cultured inside organ-on-chip devices, often transendothelial or transepithelial electrical resistance (TEER) is measured. To this end, electrodes are usually integrated into the chip by micromachining methods to provide more stable measurements than is achieved with manual insertion of electrodes into the inlets of the chip. However, these electrodes frequently hamper visual inspection of the studied cell layer or require expensive cleanroom processes for fabrication. To overcome these limitations, the device described here contains four easily integrated electrodes that are placed and fixed outside of the culture area, making visual inspection possible. Using these four electrodes the resistance of six measurement paths can be quantified, from which the TEER can be directly isolated, independent of the resistance of culture medium-filled microchannels. The blood-brain barrier was replicated in this device and its TEER was monitored to show the device applicability. This chip, the integrated electrodes and the TEER determination method are generally applicable in organs-on-chips, both to mimic other organs or to be incorporated into existing organ-on-chip systems.

摘要

器官芯片是一种微流控设备内培养(人类)组织的体外模型,正在迅速兴起,并有望为研究人类健康和疾病提供有用的研究工具。为了表征在器官芯片设备内培养的细胞层的屏障功能,通常会测量跨内皮或跨上皮电阻(TEER)。为此,通常通过微加工方法将电极集成到芯片中,以提供比手动将电极插入芯片入口更稳定的测量。然而,这些电极经常妨碍对所研究细胞层的目视检查,或者需要昂贵的洁净室制造工艺。为克服这些限制,此处描述的设备包含四个易于集成的电极,这些电极放置并固定在培养区域之外,从而实现目视检查。使用这四个电极,可以量化六个测量路径的电阻,从中可以直接分离出TEER,而与充满培养基的微通道的电阻无关。在该设备中复制了血脑屏障,并监测其TEER以展示该设备的适用性。这种芯片、集成电极和TEER测定方法通常适用于器官芯片,既可以模拟其他器官,也可以并入现有的器官芯片系统。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5034/5752338/8a3e27113c5c/jove-127-56334-12.jpg

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