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基于微流控阻抗的流式细胞术。

Microfluidic impedance-based flow cytometry.

机构信息

Department of Electrical and Computer Engineering, University of British Columbia, Vancouver, Canada.

出版信息

Cytometry A. 2010 Jul;77(7):648-66. doi: 10.1002/cyto.a.20910.

Abstract

Microfabricated flow cytometers can detect, count, and analyze cells or particles using microfluidics and electronics to give impedance-based characterization. Such systems are being developed to provide simple, low-cost, label-free, and portable solutions for cell analysis. Recent work using microfabricated systems has demonstrated the capability to analyze micro-organisms, erythrocytes, leukocytes, and animal and human cell lines. Multifrequency impedance measurements can give multiparametric, high-content data that can be used to distinguish cell types. New combinations of microfluidic sample handling design and microscale flow phenomena have been used to focus and position cells within the channel for improved sensitivity. Robust designs will enable focusing at high flowrates while reducing requirements for control over multiple sample and sheath flows. Although microfluidic impedance-based flow cytometers have not yet or may never reach the extremely high throughput of conventional flow cytometers, the advantages of portability, simplicity, and ability to analyze single cells in small populations are, nevertheless, where chip-based cytometry can make a large impact.

摘要

微流控芯片流式细胞仪可以使用微流控和电子技术来检测、计数和分析细胞或颗粒,从而进行基于阻抗的特性分析。此类系统正在被开发出来,以提供用于细胞分析的简单、低成本、无标记和便携式解决方案。最近使用微流控系统的工作已经证明了分析微生物、红细胞、白细胞以及动物和人类细胞系的能力。多频阻抗测量可以提供多参数、高内涵的数据,可用于区分细胞类型。微流控样品处理设计和微尺度流动现象的新组合已被用于在通道内聚焦和定位细胞,以提高灵敏度。稳健的设计将能够在高流速下实现聚焦,同时减少对多个样品和鞘流的控制要求。尽管基于微流体阻抗的流式细胞仪尚未或可能永远无法达到传统流式细胞仪的极高通量,但便携性、简单性和分析小群体中单细胞的能力仍然是基于芯片的细胞术可以产生重大影响的地方。

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