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Analysis of Cell Suspensions Isolated from Solid Tissues by Spectral Flow Cytometry

机译:从固体组织分离的细胞悬浮液的光谱流式细胞仪分析

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摘要

Flow cytometry has been used for the past 40 years to define and analyze the phenotype of lymphoid and other hematopoietic cells. Initially restricted to the analysis of a few fluorochromes, currently there are dozens of different fluorescent dyes, and up to 14-18 different dyes can be combined at a time. However, several limitations still impair the analytical capabilities. Because of the multiplicity of fluorescent probes, data analysis has become increasingly complex due to the need of large, multi-parametric compensation matrices. Moreover, mutant mouse models carrying fluorescent proteins to detect and trace specific cell types in different tissues have become available, so the analysis (by flow cytometry) of auto-fluorescent cell suspensions obtained from solid organs is required. Spectral flow cytometry, which distinguishes the shapes of emission spectra along a wide range of continuous wavelengths, addresses some of these problems. The data is analyzed with an algorithm that replaces compensation matrices and treats auto-fluorescence as an independent parameter. Thus, spectral flow cytometry should be capable of discriminating fluorochromes with similar emission peaks and can provide a multi-parametric analysis without compensation requirements.This protocol describes the spectral flow cytometry analysis, allowing for a 21-parameter (19 fluorescent probes) characterization and the management of an auto-fluorescent signal, providing high resolution in minor population detection. The results presented here show that spectral flow cytometry presents advantages in the analysis of cell populations from tissues difficult to characterize in conventional flow cytometry, such as the heart and the intestine. Spectral flow cytometry thus demonstrates the multi-parametric analytical capacity of high-performing conventional flow cytometry without the requirement for compensation and enables auto-fluorescence management.
机译:在过去的40年中,流式细胞仪已用于定义和分析淋巴样及其他造血细胞的表型。最初仅限于分析几种荧光染料,目前有数十种不同的荧光染料,一次最多可以组合14-18种不同的染料。但是,一些限制仍然削弱了分析能力。由于荧光探针的多样性,由于需要大型的多参数补偿矩阵,数据分析变得越来越复杂。而且,携带荧光蛋白以检测和追踪不同组织中特定细胞类型的突变小鼠模型已经可用,因此需要分析(通过流式细胞术)从实体器官获得的自体荧光细胞悬液。光谱流式细胞术可以区分沿一系列连续波长的发射光谱的形状,从而解决了其中一些问题。使用替换补偿矩阵并将自发荧光作为独立参数的算法来分析数据。因此,光谱流式细胞术应该能够区分具有相似发射峰的荧光染料,并且可以提供无补偿要求的多参数分析。本协议描述了光谱流式细胞术分析,可以进行21参数(19个荧光探针)表征并自动荧光信号的管理,在未成年人检测中提供高分辨率。此处显示的结果表明,光谱流式细胞术在分析来自常规流式细胞术难以表征的组织(例如心脏和肠)的细胞群体方面具有优势。光谱流式细胞术因此证明了高性能常规流式细胞术的多参数分析能力,而无需补偿,并实现了自动荧光管理。

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