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A 3D Microfluidic Model to Recapitulate Cancer Cell Migration and Invasion

机译:概括癌细胞迁移和侵袭的3D微流模型

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摘要

We have developed a microfluidic-based culture chip to simulate cancer cell migration and invasion across the basement membrane. In this microfluidic chip, a 3D microenvironment is engineered to culture metastatic breast cancer cells (MX1) in a 3D tumor model. A chemo-attractant was incorporated to stimulate motility across the membrane. We validated the usefulness of the chip by tracking the motilities of the cancer cells in the system, showing them to be migrating or invading (akin to metastasis). It is shown that our system can monitor cell migration in real time, as compare to Boyden chambers, for example. Thus, the chip will be of interest to the drug-screening community as it can potentially be used to monitor the behavior of cancer cell motility, and, therefore, metastasis, in the presence of anti-cancer drugs.
机译:我们已经开发了一种基于微流体的培养芯片,可以模拟癌细胞在基底膜上的迁移和侵袭。在该微流控芯片中,设计了3D微环境以在3D肿瘤模型中培养转移性乳腺癌细胞(MX1)。引入化学吸引剂以刺激整个膜的运动。我们通过追踪系统中癌细胞的功能性来验证该芯片的实用性,表明它们正在迁移或侵入(类似于转移)。结果表明,与博伊登室相比,我们的系统可以实时监控细胞迁移。因此,该芯片将引起药物筛选界的关注,因为它可以潜在地用于监测癌细胞运动的行为,从而在存在抗癌药物的情况下监测其转移情况。

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