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用于细胞分析和颗粒粒度测量的微机电阻抗谱流式细胞仪。

Micromachined impedance spectroscopy flow cytometer for cell analysis and particle sizing.

作者信息

Gawad S, Schild L, Renaud P H

机构信息

Swiss Federal Institute of Technology, EPFL DMT-IMS, CH-1015, Lausanne, Switzerland.

出版信息

Lab Chip. 2001 Sep;1(1):76-82. doi: 10.1039/b103933b. Epub 2001 Aug 13.

Abstract

A new cytological tool, based on the microCoulter particle counter (microCPC) principle, aimed at diagnostic applications for cell counting and separation in haematology, oncology or toxicology is described. The device measures the spectral impedance of individual cells or particles and allows screening rates over 100 samples s(-1) on a single-cell basis. This analyzer is intended to drive a sorting actuator producing a subsequent cell separation. Size reduction and integration of functions are essential in achieving precise measurements and high throughput. 3D finite element simulations are presented to compare various electrode geometries and their influence on cell parameters estimation. The device is based on a glass-polyimide microfluidic chip with integrated channels and electrodes microfabricated at the length scale of the particles to be investigated (1-20 microm). A laminar liquid flow carries the suspended particles through the measurement area. Each particle's impedance signal is recorded by a differential pair of microelectrodes using the cell surrounding media as a reference. The micromachined chip and processing electronic circuit allow simultaneous impedance measurements at multiple frequencies, ranging from 100 kHz to 15 MHz. In this paper, we describe the microfabrication and characterisation of an on-chip flow-cytometer as the first building block of a complete cell-sorting device. We then discuss the signal conditioning technique and finally impedance measurements of cells and particles of different sizes and types to demonstrate the differentiation of subpopulations in a mixed sample.

摘要

描述了一种基于微库尔特颗粒计数器(microCPC)原理的新型细胞学工具,旨在用于血液学、肿瘤学或毒理学中细胞计数和分离的诊断应用。该设备测量单个细胞或颗粒的光谱阻抗,并允许在单细胞基础上以超过100个样本/秒的速度进行筛选。该分析仪旨在驱动一个分选执行器,从而实现后续的细胞分离。尺寸减小和功能集成对于实现精确测量和高通量至关重要。本文通过三维有限元模拟来比较各种电极几何形状及其对细胞参数估计的影响。该设备基于一个玻璃-聚酰亚胺微流控芯片,其集成通道和电极是在待研究颗粒(1-20微米)的长度尺度上进行微加工制造的。层流携带悬浮颗粒通过测量区域。使用围绕细胞的介质作为参考,通过一对差分微电极记录每个颗粒的阻抗信号。微加工芯片和处理电子电路允许在100kHz至15MHz的多个频率上同时进行阻抗测量。在本文中,我们描述了作为完整细胞分选设备第一个构建模块的片上流式细胞仪的微加工和特性。然后我们讨论信号调节技术,最后展示对不同大小和类型的细胞及颗粒的阻抗测量,以证明混合样本中亚群的区分。

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