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Recent advances and perspectives on capture and concentration of label-free rare cells for biomedical science and engineering research

机译:生物医学科学与工程研究的无标签稀有细胞捕获和浓度的最新进展和观点

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Capture and concentration of the rare cells from a heterogeneous population plays an important role in the development of disease diagnostics, therapeutics, and biomedical research/applications. Phenotypic and genetic characterization of these rare cells can provide important information to guide cancer therapy and regenerative medicine. Large-scale supply of the rare cells at high purity and viability is essential, especially on stem cells, cancer stem cells (CSCs), and circulating tumor cells (CTCs). Conventional capture and concentration methods providing efficient and high throughput isolations are introduced; however, most of them require well-defined biochemical markers and immunolabeling procedures which are complicated, uneconomical, and often unreliable. In contrast, the emerging label-free cell capture methods based on biophysical and biomechanical properties of the desired cell population are growing. In this review, we aim to describe the status of label-free rare cell capture and concentration techniques and to highlight exciting new approaches in this field. Label-free rare cell isolation methods using intrinsic biophysical properties such as filtration, size, electrical polarizability, dielectrophoresis, optical di-electrophoresis, and hydrodynamic chromatography are introduced. Moreover, the microfluidic systems adopted to precisely handle cells and interface with other tools have been described earlier; thus, new approaches dealing with merging label-free selection methods and microfluidic systems are merely summarized. Furthermore, the capture and concentration methods using biochemical and materials properties such as cell-materials interaction, spheroid formation, and stem cells/CSCs niche mimicking are highlighted particularly. Advancing cell isolation technique provides the opportunity to avoid the shortcoming of using biochemical labels and presents better flexibility for subsequent characterization, such as on site screening, high throughput
机译:来自异质群体的稀有细胞的捕获和浓缩在疾病诊断,治疗和生物医学研究/应用方面发挥着重要作用。这些稀有细胞的表型和遗传表征可以提供引导癌症治疗和再生医学的重要信息。在高纯度和活力下大规模供应稀有细胞是必不可少的,特别是在干细胞,癌症干细胞(CSC)和循环肿瘤细胞(CTC)上。介绍了提供有效和高通量隔离的常规捕获和浓缩方法;然而,大多数人需要明确定义的生化标志物和免疫标记程序,这些程序复杂,不经常,通常不可靠。相反,基于所需细胞群的生物物理和生物力学性质的新出现的无标记细胞捕获方法正在生长。在这篇综述中,我们的目标是描述无标签稀有细胞捕获和浓缩技术的状态,并突出这个领域的激动人心的新方法。使用内在生物物理性质如过滤,尺寸,电极化性,电泳,光学二电泳和流体动力学色谱法,引入无标记的稀有细胞分离方法。此外,采用精确处理细胞和与其他工具的微流体系统已经进行了描述;因此,仅总结了处理合并无标签选择方法和微流体系统的新方法。此外,特别是使用生物化学和材料特性的捕获和浓缩方法,例如细胞 - 材料相互作用,球状形成和干细胞/ CSCSIMIMICINING。推进细胞隔离技术提供了避免使用生物化学标签的缺点的机会,并对随后的表征提供更好的灵活性,例如现场筛选,高吞吐量

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