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基于荧光蛋白的细胞分析,采用激光扫描微孔板细胞计数法,以1536孔板形式进行分析。

Fluorescent protein-based cellular assays analyzed by laser-scanning microplate cytometry in 1536-well plate format.

作者信息

Auld Douglas S, Johnson Ronald L, Zhang Ya-qin, Veith Henrike, Jadhav Ajit, Yasgar Adam, Simeonov Anton, Zheng Wei, Martinez Elisabeth D, Westwick John K, Austin Christopher P, Inglese James

机构信息

NIH Chemical Genomics Center, National Institutes of Health, Bethesda, MD 20892, USA.

出版信息

Methods Enzymol. 2006;414:566-89. doi: 10.1016/S0076-6879(06)14029-X.

Abstract

Microtiter plate readers have evolved from photomultiplier and charged-coupled device-based readers, where a population-averaged signal is detected from each well, to microscope-based imaging systems, where cellular characteristics from individual cells are measured. For these systems, speed and ease of data analysis are inversely proportional to the amount of data collected from each well. Microplate laser cytometry is a technology compatible with a 1536-well plate format and capable of population distribution analysis. Microplate cytometers such as the Acumen Explorer can monitor up to four fluorescent signals from single objects in microtiter plates with densities as high as 1536 wells. These instruments can measure changes in fluorescent protein expression, cell shape, or simple cellular redistribution events such as cytoplasmic to nuclear translocation. To develop high-throughput screening applications using laser-scanning microplate cytometry, we used green fluorescent protein- and yellow fluorescent protein-expressing cell lines designed to measure diverse biological functions such as nuclear translocation, epigenetic signaling, and G protein-coupled receptor activation. This chapter illustrates the application of microplate laser cytometry to these assays in a manner that is suitable for screening large compound collections in high throughput.

摘要

酶标仪已经从基于光电倍增管和电荷耦合器件的读数器发展而来,在这些读数器中,从每个孔中检测到的是群体平均信号,发展到基于显微镜的成像系统,在该系统中可以测量单个细胞的细胞特征。对于这些系统,数据分析的速度和简便程度与从每个孔中收集的数据量成反比。微孔板激光细胞术是一种与1536孔板格式兼容且能够进行群体分布分析的技术。诸如Acumen Explorer之类的微孔板细胞仪可以监测微孔板中单个物体发出的多达四种荧光信号,微孔板的密度高达1536孔。这些仪器可以测量荧光蛋白表达、细胞形态的变化,或简单的细胞重新分布事件(如细胞质到细胞核的转位)。为了使用激光扫描微孔板细胞术开发高通量筛选应用,我们使用了表达绿色荧光蛋白和黄色荧光蛋白的细胞系,这些细胞系旨在测量各种生物学功能,如核转位、表观遗传信号传导和G蛋白偶联受体激活。本章以适合高通量筛选大量化合物库的方式阐述了微孔板激光细胞术在这些检测中的应用。

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