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Chips-on-a-plate device for monitoring cellular migration in a microchannel-based intestinal follicle-associated epithelium model

机译:用于监测基于微通道的肠卵泡相关的上皮模型中的细胞迁移的芯片型装置

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摘要

This paper describes a chips-on-a-plate (COP) device for monitoring the migration of Raji cells in the Caco-2/Raji coculture. To generate a model of the human intestinal follicle-associated epithelium (FAE), the coculture method using a conventional Transwell cell culture insert was established. Due to the structural limitations of the Transwell insert, live-cell tracking studies have not been performed previously using the existing FAE model. In this study, we designed a COP device to conduct long-term live-cell tracking of Raji cell migration using a microchannel-based FAE model. The COP device incorporates microfluidic chips integrated on a standard well plate, consistent humidity control to allow live-cell microscopy for 2 days, and microchannels connecting the two cell culture chambers of the COP device, which serve as a monitoring area for cellular migration. Using the COP device, we provide the first analysis of various migratory characteristics of Raji cells, including their chemotactic index in the microchannel-based FAE model. We showed that the migration of Raji cells could be controlled by modulating the geometry of the connecting microchannels. Cellular treatments with cytokines revealed that the cytokines increased the permeability of an FAE model with a detachment of Caco-2 cells. Live-cell monitoring of Raji cells treated with a fluorescent reagent also indicated exocytosis as a key agent of the Caco-2/Raji interaction. The COP device allows live-cell tracking analyses of cocultured cells in the microchannel-based FAE model, providing a promising tool for investigating cellular behavior associated with the recruitment of Raji to Caco-2 cells.
机译:本文描述了用于监测的Caco-2 /共培养的Raji Raji细胞的迁移一个芯片上-A-板(COP)的设备。为了产生人肠促卵泡相关上皮(FAE)的模型,建立使用常规的Transwell细胞培养插入物共培养方法。由于Transwell小插件的结构的限制,活细胞的跟踪研究尚未以前使用现有的FAE模型执行。在这项研究中,我们设计了一个COP设备使用基于微-FAE模型进行的Raji细胞迁移的长期活细胞跟踪。该COP器件集成集成在标准孔板中,一致的湿度控制,以允许活细胞显微术2天的微流体芯片,以及连接所述COP装置的两个细胞培养室,其用作用于细胞迁移的监视区域的微通道。使用COP设备中,我们提供的Raji细胞的各种洄游特性,包括在基于微通道-FAE模型他们的趋化指数的第一分析。我们发现,Raji细胞的迁移可以通过调节连接微通道的几何形状来控制。用细胞因子处理的细胞,发现该细胞因子与Caco-2细胞的分离增加的FAE模型的渗透性。活细胞监视与荧光试剂也指示的胞吐作用作为的Caco-2 /的Raji相互作用的关键试剂处理Raji细胞。缔约方会议设备允许共培养细胞在基于微-FAE模型,为研究用的Raji的招聘Caco-2细胞相关的细胞行为的一个行之有效的手段的活细胞的跟踪分析。

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