Huang Zhili, Jin Lianji, Sanders Joshua C, Zheng Yibin, Dunsmoor Celeste, Tian Huijun, Landers James P
Department of Chemistry, University of Virginia, Charlottesville 22901, USA.
IEEE Trans Biomed Eng. 2002 Aug;49(8):859-66. doi: 10.1109/TBME.2002.800767.
An improved method for fast scanning and fluorescence detection on multimicrochannel microchips is presented using acousto-optic-deflection-driven laser-beam scanning. A microprocessor embedded subsystem used in conjunction with LabView program as the human-machine interface for control of laser-beam scanning and data preprocessing allowed faster scanning and addressing speeds to be attained and improved attenuation calibration and the data sampling speed. This system allows for flexible, high-resolution fluorescence detection for multimicrochannel electrophoresis in a manner that can be applied to a number of high-throughput analysis applications. Incorporating an F-theta focusing lens into the optical set-up allowed for a laser spot as small as 10 microm to accurately be addressed to the center of microchannels. With this spot size, it will be possible to further increase the channel density in the scanning range without encountering crosstalk. Using a six-channel microchip (four separation channels, two alignment channels), the simultaneous separation and fluorescence detection of amino acids and DNA digest samples in four channels is illustrated. User-friendly interpretation of the separation data is facilitated not only by a peak alignment/normalization routine developed within the software, but also through improved signal-to-noise ratios obtained through exploitation of signal processing.
本文提出了一种利用声光偏转驱动激光束扫描在多微通道微芯片上进行快速扫描和荧光检测的改进方法。一个嵌入式微处理器子系统与LabView程序结合使用,作为控制激光束扫描和数据预处理的人机界面,实现了更快的扫描和寻址速度,改进了衰减校准和数据采样速度。该系统能够以一种可应用于多种高通量分析应用的方式,对多微通道电泳进行灵活、高分辨率的荧光检测。在光学设置中加入一个F-θ聚焦透镜,可使小至10微米的激光光斑精确地对准微通道中心。采用这种光斑尺寸,将有可能在不发生串扰的情况下进一步提高扫描范围内的通道密度。使用一个六通道微芯片(四个分离通道、两个对齐通道),展示了在四个通道中同时对氨基酸和DNA消化样品进行分离和荧光检测。软件中开发的峰对齐/归一化程序以及通过信号处理获得的改进信噪比,不仅便于用户对分离数据进行解读。