Department of Biomedical Engineering, Asan Medical Center, University of Ulsan College of Medicine, Seoul, Republic of Korea.
Biosens Bioelectron. 2010 Feb 15;25(6):1509-15. doi: 10.1016/j.bios.2009.11.011. Epub 2009 Nov 17.
A portable microfluidic flow cytometer with dual detection ability of impedance and fluorescence was developed for cell analysis and particle-based assays. In the proposed system, fluorescence from microparticles and cells is measured through excitation by a light emitting diode (LED) and detection by a solid-stated photomultiplier (SSPM). Simultaneous impedometric detection provides information on the existence and size of microparticles and cells through polyelectrolyte gel electrodes (PGEs) operated by custom designed circuits for signal detection, amplification, and conversion. Fluorescence and impedance signals were sampled at 1 kHz with 12 bit resolution. The resulting microfluidic cytometer is 15x10x10 cm(3) in width, depth, and height, with a weight of about 800 g. Such a miniaturized and battery powered system yielded a portable microfluidic cytometer with high performance. Various microbeads and human embryonic kidney 293 (HEK-293) cells were employed to evaluate the system. Impedance and fluorescence signals from each bead or cell made classification of micro particles or cells easy and fast.
一种具有阻抗和荧光双检测功能的便携式微流控流式细胞仪,用于细胞分析和基于颗粒的检测。在提出的系统中,通过发光二极管 (LED) 激发和固态光电倍增管 (SSPM) 检测来测量微球和细胞的荧光。通过用于信号检测、放大和转换的定制设计电路操作的聚电解质凝胶电极 (PGE) 进行同时阻抗检测,提供关于微球和细胞的存在和大小的信息。荧光和阻抗信号以 1 kHz 的采样率和 12 位分辨率进行采样。所得微流控细胞仪在宽度、深度和高度上分别为 15x10x10 cm(3),重量约为 800 克。这种小型化和电池供电的系统产生了具有高性能的便携式微流控细胞仪。使用各种微珠和人胚肾 293 (HEK-293) 细胞来评估该系统。每个微球或细胞的阻抗和荧光信号使得微颗粒或细胞的分类变得容易和快速。