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Evaluating cell migration in vitro by the method based on cell patterning within microfluidic channels

机译:通过基于微流体通道内细胞模式的方法评估体外细胞迁移

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摘要

Cell migration is an early-stage and critical step for cancer metastasis. The most common approach to monitor this process is wound-healing assay. However, this traditional method has some unavoidable limitations. We observed that simply scratching the monolayer of cultured cells might cause local cell damage around the injury line. The cells along the scratched border seemed to be irritated and exhibited abnormal distribution of cytoskeleton reassembly with protruding "cell islands" and "pseudopodia" during wound healing, which might potentially affect the assessment of cell migration behavior. Herein, we applied a microfluidic device that mechanically constrained cells seeded in a designed pattern inside microchannels, and monitored cell movement in a way of mimicking the natural microenvironment of cancerous tissues. We illustrated the capacity of this simple method to probe cellular migration behaviors and to screen some biological active agents that reflected in their influence on cellular motility.
机译:细胞迁移是癌症转移的早期关键步骤。监视此过程的最常见方法是伤口愈合分析。但是,这种传统方法有一些不可避免的局限性。我们观察到,仅刮擦培养细胞的单层可能会导致损伤线周围的局部细胞损伤。沿划痕边界的细胞似乎受到刺激,并且在伤口愈合过程中表现出细胞骨架重组的异常分布,突出了“细胞岛”和“假足”,这可能会影响对细胞迁移行为的评估。在本文中,我们应用了一种微流控设备,该设备以机械方式约束微通道内以设计模式播种的细胞,并以模仿癌性组织自然微环境的方式监测细胞运动。我们说明了这种简单方法探测细胞迁移行为和筛选一些生物活性剂的能力,这些活性剂反映了它们对细胞运动性的影响。

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