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可见及近红外荧光光谱流式细胞术。

Visible and near infrared fluorescence spectral flow cytometry.

机构信息

La Jolla Bioengineering Institute, San Diego, California, USA.

出版信息

Cytometry A. 2013 Mar;83(3):253-64. doi: 10.1002/cyto.a.22241. Epub 2012 Dec 6.

Abstract

There is a long standing interest in measuring complete emission spectra from individual cells in flow cytometry. We have developed flow cytometry instruments and analysis approaches to enable this to be done routinely and robustly. Our spectral flow cytometers use a holographic grating to disperse light from single cells onto a CCD for high speed, wavelength-resolved detection. Customized software allows the single cell spectral data to be displayed and analyzed to produce new spectra-derived parameters. We show that familiar reference and calibration beads can be employed to quantitatively assess instrument performance. We use microspheres stained with six different quantum dots to compare a virtual bandpass filter approach with classic least squares (CLS) spectral unmixing, and then use antibody capture beads and CLS unmixing to demonstrate immunophenotyping of peripheral blood mononuclear cells using spectral flow cytometry. Finally, we characterize and evaluate several near infrared (NIR) emitting fluorophores for use in spectral flow cytometry. Spectral flow cytometry offers a number of attractive features for single cell analysis, including a simplified optical path, high spectral resolution, and streamlined approaches to quantitative multiparameter measurements. The availability of robust instrumentation, software, and analysis approaches will facilitate the development of spectral flow cytometry applications.

摘要

长期以来,人们一直致力于从流动细胞术中的单个细胞中测量完整的发射光谱。我们已经开发了流式细胞仪仪器和分析方法,使其能够常规而稳健地进行。我们的光谱流式细胞仪使用全息光栅将单个细胞的光色散到 CCD 上,以实现高速、波长分辨的检测。定制软件允许显示和分析单细胞光谱数据,以生成新的基于光谱的参数。我们表明,可以使用熟悉的参考和校准珠来定量评估仪器性能。我们使用六种不同量子点染色的微球来比较虚拟带通滤波器方法与经典最小二乘(CLS)光谱解混,然后使用抗体捕获珠和 CLS 解混来演示使用光谱流式细胞术对外周血单核细胞进行免疫表型分析。最后,我们对几种近红外(NIR)发射荧光染料进行了表征和评估,以用于光谱流式细胞术。光谱流式细胞术为单细胞分析提供了许多有吸引力的特性,包括简化的光路、高光谱分辨率以及简化的定量多参数测量方法。稳健的仪器、软件和分析方法的可用性将促进光谱流式细胞术应用的发展。

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