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Microfluidic devices for the isolation of circulating rare cells: A focus on affinity-based, dielectrophoresis, and hydrophoresis

机译:用于隔离循环稀有细胞的微流体装置:专注于亲和基础,介电流量和水流性

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Circulating rare cells have attracted interest because they can be good indicators of various types of diseases. For example, enumeration of circulating tumor cells is used for cancer diagnosis and prognosis, while DNA analysis or enumeration of nucleated red blood cells is useful for prenatal diagnosis or hypoxic anemia, and that of circulating stem cells to diagnose cancer metastasis. Isolation of these cells and their downstream analyses can provide significant information such as the origin and characteristics of a disease. Novel approaches based on microfluidics have many advantages, including the continuous process and integration with other components for analysis. For these reasons, a variety of microfluidic devices have been developed to isolate and characterize rare cells. In this article, we review several microfluidic devices, with a focus on affinity-based isolation (e.g. antigen-antibody reaction) and label-free separation (DEP and hydrophoresis).
机译:循环稀有细胞引起了兴趣,因为它们可以是各种类型的疾病的良好指标。 例如,循环肿瘤细胞的枚举用于癌症诊断和预后,而DNA分析或核肉红细胞的计量可用于产前诊断或缺氧贫血,以及循环干细胞诊断癌转移的血液缺血。 这些细胞的分离及其下游分析可以提供显着的信息,例如疾病的起源和特征。 基于微流体的新方法具有许多优点,包括与其他组件的连续过程和集成进行分析。 由于这些原因,已经开发出各种微流体装置来分离和表征稀有细胞。 在本文中,我们审查了几种微流体装置,重点关注基于亲和的分离(例如抗原 - 抗体反应)和无标记分离(Dep和Hydophoresis)。

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