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Entrapment of microparticles in a microfluidic device: A model for isolation of circulating tumor cells

机译:微流体装置中的微粒截留:用于分离循环肿瘤细胞的模型

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Circulating tumor cells (CTCs) are shed from cancerous tumors even in the initial phase of malignant progression, enter the circulatory system, and migrate to distant organs to form metastases which lead to the death of most patients with cancer. Identification and characterization of CTCs provides a great opportunity to study, monitor, and potentially interfere with the metastatic process. The efficient entrapment of CTCs from whole blood means dealing with rare events and is still a challenging research field even nowadays. Using microfluidic devices, the efficiency of cell entrapment can be increased significantly. For this purpose we have developed a microfluidic device capable of isolation of microparticles and/or cells based on size exclusion technique. In the present work, we show our results on filtration of fluorescent microbeads as model particles in PBS and in human EDTA-blood as well, to determine the capturing efficiency of our microfluidic device with a novel geometric structure.
机译:即使在恶性进展的初始阶段,循环肿瘤细胞(CTC)仍会从癌性肿瘤中脱落,进入循环系统,然后迁移到远处器官形成转移灶,导致大多数癌症患者死亡。 CTC的鉴定和表征为研究,监测和潜在地干扰转移过程提供了绝佳的机会。从全血中有效捕获四氯化碳意味着处理罕见事件,即使在当今,这仍然是一个充满挑战的研究领域。使用微流体装置,可以显着提高细胞截留的效率。为了这个目的,我们已经开发了一种基于尺寸排阻技术能够分离微粒和/或细胞的微流体装置。在当前的工作中,我们展示了我们在PBS和人EDTA血液中作为模型颗粒的荧光微珠过滤的结果,以确定具有新型几何结构的微流控设备的捕获效率。

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