Department of Molecular Genetics and Cell Biology, University of Chicago, 929 E. 57th St, Chicago, IL 60637 (USA).
Chembiochem. 2014 Jan 24;15(2):267-75. doi: 10.1002/cbic.201300464. Epub 2013 Dec 27.
Multiparametric flow cytometry offers a powerful approach to single-cell analysis with broad applications in research and diagnostics. Despite advances in instrumentation, progress in methodology has lagged. Currently there is no simple and efficient method for antibody labeling or quantifying the number of antibodies bound per cell. Herein, we describe a DNA-directed assembly approach to fluorescent labeling that overcomes these barriers. Oligonucleotide-tagged antibodies and microparticles can be annealed to complementary oligonucleotides bearing fluorophores to create assay-specific labeling probes and controls, respectively. The ratio of the fluorescence intensity of labeled cells to the control particles allows direct conversion of qualitative data to quantitative units of antibody binding per cell. Importantly, a single antibody can be labeled with any fluorophore by using a simple mix-and-match labeling strategy. Thus, any antibody can provide a quantitative probe in any fluorescent channel, thus overcoming major barriers to the use of flow cytometry as a technique for systems biology and clinical diagnostics.
多参数流式细胞术为单细胞分析提供了一种强大的方法,在研究和诊断中有广泛的应用。尽管仪器在不断进步,但方法学的进展却滞后了。目前,还没有一种简单有效的方法来标记抗体或定量每个细胞结合的抗体数量。在这里,我们描述了一种 DNA 指导的组装方法来进行荧光标记,克服了这些障碍。带有寡核苷酸标签的抗体和微球可以与带有荧光团的互补寡核苷酸退火,分别形成针对特定检测的标记探针和对照。标记细胞的荧光强度与对照颗粒的比值可以将定性数据直接转换为每个细胞结合的抗体定量单位。重要的是,通过使用简单的混合匹配标记策略,可以用任何荧光团标记单个抗体。因此,任何抗体都可以在任何荧光通道中提供定量探针,从而克服了将流式细胞术作为系统生物学和临床诊断技术使用的主要障碍。