Wang Junsheng, Zhao Jinsong, Wang Yanjuan, Wang Wei, Gao Yushu, Xu Runze, Zhao Wenshuang
College of Information and Science Technology, Dalian Maritime University, Dalian 116026, China.
Collaborative Innovation Center for Vessel Pollution Monitoring and Control, Dalian Maritime University, Dalian 116026, China.
Micromachines (Basel). 2016 Nov 2;7(11):198. doi: 10.3390/mi7110198.
Fast on-site monitoring of foreign microalgae species carried by ship ballast water has drawn more and more attention. In this paper, we presented a new method and a compact device of classification of microalgae cells by simultaneous detection of three kinds of signals of single microalgae cells in a disposable microfluidic chip. The microfluidic classification device has advantages of fast detection, low cost, and portability. The species of a single microalgae cell can be identified by simultaneous detection of three signals of chlorophyll fluorescence (CF), side light scattering (SLS), and resistance pulse sensing (RPS) of the microalgae cell. These three signals represent the different characteristics of a microalgae cell. A compact device was designed to detect these three signals of a microalgae cell simultaneously. In order to demonstrate the performance of the developed system, the comparison experiments of the mixed samples of three different species of microalgae cells between the developed system and a commercial flow cytometer were conducted. The results show that three kinds of microalgae cells can be distinguished clearly by our developed system and the commercial flow cytometer and both results have good agreement.
对船舶压载水携带的外来微藻物种进行快速现场监测越来越受到关注。在本文中,我们提出了一种新方法和一种紧凑型装置,用于在一次性微流控芯片中通过同时检测单个微藻细胞的三种信号来对微藻细胞进行分类。该微流控分类装置具有检测速度快、成本低和便携的优点。通过同时检测微藻细胞的叶绿素荧光(CF)、侧向光散射(SLS)和电阻脉冲传感(RPS)这三种信号,可以识别单个微藻细胞的物种。这三种信号代表了微藻细胞的不同特征。设计了一种紧凑型装置来同时检测微藻细胞的这三种信号。为了证明所开发系统的性能,在开发的系统和商用流式细胞仪之间对三种不同物种的微藻细胞混合样本进行了对比实验。结果表明,我们开发的系统和商用流式细胞仪都能清晰地区分三种微藻细胞,且两者结果具有良好的一致性。