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Label-Free Microfluidic Manipulation of Particles and Cells in Magnetic Liquids

机译:磁性液体中颗粒和细胞的无标记微流控

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摘要

Manipulating particles and cells in magnetic liquids through so-called “negative magnetophoresis” is a new research field. It has resulted in label-free and low-cost manipulation techniques in microfluidic systems and many exciting applications. It is the goal of this review to introduce the fundamental principles of negative magnetophoresis and its recent applications in microfluidic manipulation of particles and cells. We will first discuss the theoretical background of three commonly used specificities of manipulation in magnetic liquids, which include the size, density and magnetic property of particles and cells. We will then review and compare the media used in negative magnetophoresis, which include paramagnetic salt solutions and ferrofluids. Afterwards, we will focus on reviewing existing microfluidic applications of negative magnetophoresis, including separation, focusing, trapping and concentration of particles and cells, determination of cell density, measurement of particles' magnetic susceptibility, and others. We will also examine the need for developing biocompatible magnetic liquids for live cell manipulation and analysis, and its recent progress. Finally, we will conclude this review with a brief outlook for this exciting research field.
机译:通过所谓的“负磁泳”处理磁性液体中的颗粒和细胞是一个新的研究领域。它在微流体系统和许多令人兴奋的应用中产生了无标签且低成本的处理技术。这篇综述的目的是介绍负磁泳的基本原理及其在微粒和细胞微流控中的最新应用。我们将首先讨论磁性液体中三种常用操纵特性的理论背景,包括颗粒和细胞的大小,密度和磁性。然后,我们将审查和比较用于负磁泳的介质,包括顺磁盐溶液和铁磁流体。之后,我们将重点研究负磁泳的现有微流体应用,包括颗粒和细胞的分离,聚焦,捕获和浓缩,细胞密度的确定,颗粒磁化率的测量等。我们还将研究开发用于活细胞操作和分析的生物相容性磁性液体的需求及其最新进展。最后,我们将以对这一激动人心的研究领域的简要展望来结束本综述。

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