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Development of a Microfluidic Chip for 3D Cancer Cell Migration Assay

机译:用于3D癌细胞迁移分析的微流控芯片的开发

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Metastasis is a serious disease caused by primary tumor cell dissemination to different organs. Although, invasion of primary tumor cell is the initial step required in tumor metastasis, migration is also the important key elements activity in cancer cell detach from the primary tumor and spreading to other extracellular matrix. Currently, various cell migration assays have been developed to investigate the motility behavior of the multicellular, including wound healing / scratch assay and transwell assay. However, most of the in vitro researches of cell motility are based on two-dimensional (2D) culture systems, which limit our understanding of the mechanisms of cell motility. Thus, three dimensional culture (3D) model is necessary which is able to mimic conditions and microenvironments of in vivo. In this study, a microfluidic chip was developed and matrigel was used as cell scaffold. In order to perform 3D cell migration assay, cells cultured in 3D environment and invaded through a matrigel filled microchannel. In addition, we determine the motility of the cancer cell correlated to the interleukin 6 (IL-6) concentration. Here, we successfully developed a prototype of visualizing and quantifying 3D cell migration assay.
机译:转移是由原发性肿瘤细胞扩散到不同器官引起的严重疾病。尽管侵袭原发性肿瘤细胞是肿瘤转移所需的第一步,但迁移也是癌细胞脱离原发性肿瘤并扩散到其他细胞外基质中的重要关键要素。当前,已经开发了各种细胞迁移测定法以研究多细胞的运动行为,包括伤口愈合/刮擦测定法和transwell测定法。但是,大多数细胞运动的体外研究都是基于二维(2D)培养系统,这限制了我们对细胞运动机制的理解。因此,必须能够模拟体内条件和微环境的三维培养(3D)模型。在这项研究中,开发了一种微流控芯片,并将Matrigel用作细胞支架。为了执行3D细胞迁移测定,在3D环境中培养并通过基质胶填充的微通道侵入细胞。此外,我们确定与白细胞介素6(IL-6)浓度相关的癌细胞的运动性。在这里,我们成功开发了可视化和量化3D细胞迁移测定的原型。

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