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Immunomagnetic separation of circulating tumor cells with microfluidic chips and their clinical applications

机译:微流体芯片循环肿瘤细胞免疫磁性分离及其临床应用

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摘要

Circulating tumor cells (CTCs) are tumor cells detached from the original lesion and getting into the blood and lymphatic circulation systems. They potentially establish new tumors in remote areas, namely, metastasis. Isolation of CTCs and following biological molecular analysis facilitate investigating cancer and coming out treatment. Since CTCs carry important information on the primary tumor, they are vital in exploring the mechanism of cancer, metastasis, and diagnosis. However, CTCs are very difficult to separate due to their extreme heterogeneity and rarity in blood. Recently, advanced technologies, such as nanosurfaces, quantum dots, and Raman spectroscopy, have been integrated with microfluidic chips. These achievements enable the next generation isolation technologies and subsequent biological analysis of CTCs. In this review, we summarize CTCs’ separation with microfluidic chips based on the principle of immunomagnetic isolation of CTCs. Fundamental insights, clinical applications, and potential future directions are discussed.
机译:循环肿瘤细胞(CTC)是从原始病变中脱离并进入血液和淋巴循环系统的肿瘤细胞。它们可能在偏远地区建立新的肿瘤,即转移。分离CTC和后期生物分子分析有助于研究癌症和出来治疗。由于CTCS携带关于原发性肿瘤的重要信息,因此它们对探索癌症,转移和诊断的机制至关重要。然而,由于它们的极端异质性和血液中的稀有性,CTC非常难以分离。最近,先进的技术,如纳米核,量子点和拉曼光谱,已与微流体芯片集成。这些成就使下一代隔离技术和随后的CTC生物学分析能够。在本综述中,我们基于CTC的免疫磁性分离原理,总结CTCS与微流体芯片的分离。讨论了基本洞察,临床应用和潜在的未来方向。

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