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High-Purity Isolation and Recovery of Circulating Tumor Cells using Conducting Polymer-deposited Microfluidic Device

机译:导电聚合物沉积微流控装置的高纯度分离和循环肿瘤细胞的回收。

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We have developed a conductive nano-roughened microfluidic device and demonstrated its use as an electrically modulated capture and release system for studying rare circulating tumor cells (CTCs). The microchannel surfaces were covalently decorated with epithelial cancer-specific anti-EpCAM antibody by electrochemical deposition of biotin-doped polypyrrole (Ppy), followed by the assembly of streptavidin and biotinylated antibody. Our method utilizes the unique topographical features and excellent electrical activity of Ppy for i) surface-induced preferential recognition and release of CTCs, and ii) selective elimination of non-specifically immobilized white blood cells (WBCs), which are capable of high-purity isolation of CTCs. In addition, the direct incorporation of biotin molecules offers good flexibility, because it allows the modification of channel surfaces with diverse antibodies, in addition to anti-EpCAM, for enhanced detection of multiple types of CTCs. By engineering a series of electrical, chemical, and topographical cues, this simple yet efficient device provides a significant advantage to CTC detection technology as compared with other conventional methods.
机译:我们已经开发出一种导电纳米粗化微流控设备,并展示了其作为电调制捕获和释放系统的用途,用于研究稀有循环肿瘤细胞(CTC)。通过对生物素掺杂的聚吡咯(Ppy)进行电化学沉积,然后组装链霉亲和素和生物素化抗体,用上皮癌特异性抗EpCAM抗体共价修饰微通道表面。我们的方法利用了Ppy的独特地形特征和出色的电活性,用于i)表面诱导的四氯化碳优先识别和释放,以及ii)选择性消除非特异性固定的白细胞(WBC),这些白细胞具有很高的纯度四氯化碳的隔离。另外,生物素分子的直接掺入提供了良好的灵活性,因为除了抗EpCAM以外,它还允许使用多种抗体修饰通道表面,以增强对多种类型CTC的检测。通过设计一系列电气,化学和地形线索,与其他常规方法相比,这种简单而有效的设备为CTC检测技术提供了显着优势。

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