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Microfluidic cell sorting: a review of the advances in the separation of cells from debulking to rare cell isolation

机译:微流控细胞分选:从分离到稀有细胞分离的细胞分离研究进展综述

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Accurate and high throughput cell sorting is a critical enabling technology in molecular and cellular biology, biotechnology, and medicine. While conventional methods can provide high efficiency sorting in short timescales, advances in microfluidics have enabled the realization of miniaturized devices offering similar capabilities that exploit a variety of physical principles. We classify these technologies as either active or passive. Active systems generally use external fields (e.g., acoustic, electric, magnetic, and optical) to impose forces to displace cells for sorting, whereas passive systems use inertial forces, filters, and adhesion mechanisms to purify cell populations. Cell sorting on microchips provides numerous advantages over conventional methods by reducing the size of necessary equipment, eliminating potentially biohazardous aerosols, and simplifying the complex protocols commonly associated with cell sorting. Additionally, microchip devices are well suited for parallelization, enabling complete lab-on-a-chip devices for cellular isolation, analysis, and experimental processing. In this review, we examine the breadth of microfluidic cell sorting technologies, while focusing on those that offer the greatest potential for translation into clinical and industrial practice and that offer multiple, useful functions. We organize these sorting technologies by the type of cell preparation required (i.e., fluorescent label-based sorting, bead-based sorting, and label-free sorting) as well as by the physical principles underlying each sorting mechanism.
机译:准确和高通量的细胞分选是分子和细胞生物学,生物技术和医学中一项至关重要的使能技术。尽管常规方法可以在短时间范围内提供高效率的分类,但微流体技术的进步使得能够实现提供利用多种物理原理的类似功能的小型化设备。我们将这些技术分为主动技术或被动技术。主动系统通常使用外部场(例如,声,电,磁和光学)施加力来置换细胞以进行分类,而被动系统则使用惯性力,过滤器和粘附机制来纯化细胞群。微芯片上的细胞分选通过减小必要设备的尺寸,消除潜在的具有生物危害性的气溶胶以及简化通常与细胞分选相关的复杂协议,提供了优于常规方法的众多优势。此外,微芯片设备非常适合并行化,从而使完整的芯片实验室设备能够进行细胞分离,分析和实验处理。在这篇综述中,我们研究了微流体细胞分选技术的广度,同时侧重于那些具有最大潜力转化为临床和工业实践并提供多种有用功能的技术。我们根据所需的细胞制备类型(即基于荧光标记的分类,基于珠子的分类和无标记的分类)以及每种分类机制背后的物理原理来组织这些分类技术。

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