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超过 40 种荧光探针,用于使用光谱技术对血液单核细胞进行深度表型分析。

Beyond 40 fluorescent probes for deep phenotyping of blood mononuclear cells, using spectral technology.

机构信息

Cytometry and Biomarkers UTechS/Cytometry Platform, Institut Pasteur, Université Paris Cité, Paris, France.

Sony Biotechnology Europe, Sony Europe B.V, Weybridge, United Kingdom.

出版信息

Front Immunol. 2024 Apr 2;15:1285215. doi: 10.3389/fimmu.2024.1285215. eCollection 2024.

Abstract

The analytical capability of flow cytometry is crucial for differentiating the growing number of cell subsets found in human blood. This is important for accurate immunophenotyping of patients with few cells and a large number of parameters to monitor. Here, we present a 43-parameter panel to analyze peripheral blood mononuclear cells from healthy individuals using 41 fluorescence-labelled monoclonal antibodies, an autofluorescent channel, and a viability dye. We demonstrate minimal population distortions that lead to optimized population identification and reproducible results. We have applied an advanced approach in panel design, in selection of sample acquisition parameters and in data analysis. Appropriate autofluorescence identification and integration in the unmixing matrix, allowed for resolution of unspecific signals and increased dimensionality. Addition of one laser without assigned fluorochrome resulted in decreased fluorescence spill over and improved discrimination of cell subsets. It also increased the staining index when autofluorescence was integrated in the matrix. We conclude that spectral flow cytometry is a highly valuable tool for high-end immunophenotyping, and that fine-tuning of major experimental steps is key for taking advantage of its full capacity.

摘要

流式细胞术的分析能力对于区分人类血液中越来越多的细胞亚群至关重要。这对于准确免疫表型分析细胞数量少但需要监测大量参数的患者非常重要。在这里,我们使用 41 种荧光标记的单克隆抗体、一个自发荧光通道和一种活细胞染料,介绍了一个 43 个参数的面板,用于分析健康个体的外周血单个核细胞。我们证明了最小的群体扭曲导致优化的群体识别和可重复的结果。我们在面板设计、样品采集参数选择和数据分析方面采用了先进的方法。适当的自发荧光识别和整合到解混矩阵中,允许解析非特异性信号并增加维度。添加一个没有指定荧光染料的激光,减少了荧光串扰,提高了细胞亚群的区分能力。它还增加了将自发荧光整合到矩阵中的染色指数。我们得出结论,光谱流式细胞术是一种非常有价值的高端免疫表型分析工具,精细调整主要实验步骤是充分利用其全部能力的关键。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8cea/11018965/5bc279eff362/fimmu-15-1285215-g001.jpg

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