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Use Microfluidic Chips to Study the Phototaxis of Lung Cancer Cells

机译:使用微流控芯片研究肺癌细胞的趋光性

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摘要

Cell migration is an important process involved in wound healing, tissue development, and so on. Many studies have been conducted to explore how certain chemicals and electric fields induce cell movements in specific directions, which are phenomena termed chemotaxis and electrotaxis, respectively. However, phototaxis, the directional migration of cells or organisms toward or away from light, is rarely investigated due to the difficulty of generating a precise and controllable light gradient. In this study, we designed and fabricated a microfluidic chip for simultaneously culturing cells and generating a blue light gradient for guiding cell migration. A concentration gradient was first established inside this chip, and by illuminating it with a blue light-emitting diode (LED), a blue light gradient was generated underneath. Cell migration in response to this light stimulus was observed. It was found that lung cancer cells migrated to the dark side of the gradient, and the intracellular reactive oxygen species (ROS) was proportional to the intensity of the blue light.
机译:细胞迁移是涉及伤口愈合,组织发育等的重要过程。已经进行了许多研究以探索某些化学物质和电场如何诱导细胞在特定方向上运动,这些方向分别称为趋化性和电动性。然而,由于难以产生光致精确的可控光梯度,因此很少研究趋光性,即细胞或生物体朝向或远离光的定向迁移。在这项研究中,我们设计和制造了一种微流控芯片,用于同时培养细胞并产生蓝光梯度来指导细胞迁​​移。首先在此芯片内部建立浓度梯度,然后用蓝色发光二极管(LED)对其进行照明,从而在其下方生成蓝色光梯度。观察到响应于该光刺激的细胞迁移。发现肺癌细胞迁移至梯度的暗侧,并且细胞内活性氧(ROS)与蓝光的强度成比例。

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