Vaccine and Infectious Disease Division, Fred Hutchinson Cancer Center, Seattle, Washington, USA.
Department of Immunology, University of Washington, Seattle, Washington, USA.
Cytometry A. 2024 Jun;105(6):430-436. doi: 10.1002/cyto.a.24841. Epub 2024 Apr 18.
We report the development of an optimized 50-color spectral flow cytometry panel designed for the in-depth analysis of the immune system in human blood and tissues, with the goal of maximizing the amount of information that can be collected using currently available flow cytometry platforms. We established and tested this panel using peripheral blood mononuclear cells (PBMCs), but included CD45 to enable its future use for the analysis of human tissue samples. The panel contains lineage markers for all major immune cell subsets, and an extensive set of phenotyping markers focused on the activation and differentiation status of the T cell and dendritic cell (DC) compartment. We outline the biological insight that can be gained from the simultaneous measurement of such a large number of proteins and propose that this approach provides a unique opportunity for the comprehensive exploration of the immune status in human samples with a limited number of cells. Of note, we tested the panel to be compatible with cell sorting for further downstream applications. Furthermore, to facilitate the wide-spread implementation of such a panel across different cohorts and samples, we established a trimmed-down 45-color version which can be used with different spectral cytometry platforms. Finally, to generate this panel, we utilized not only existing panel design guidelines, but also developed new metrics to systematically identify the optimal combination of 50 fluorochromes and evaluate fluorochrome-specific resolution in the context of a 50-color unmixing matrix.
我们报告了一种优化的 50 色光谱流式细胞术面板的开发,该面板旨在深入分析人类血液和组织中的免疫系统,目标是使用当前可用的流式细胞术平台最大限度地收集信息。我们使用外周血单核细胞 (PBMC) 建立并测试了该面板,但包含了 CD45,使其能够用于未来分析人类组织样本。该面板包含所有主要免疫细胞亚群的谱系标记物,以及一套广泛的表型标记物,重点关注 T 细胞和树突状细胞 (DC) 区室的激活和分化状态。我们概述了可以从同时测量如此大量的蛋白质中获得的生物学见解,并提出这种方法为使用有限数量的细胞全面探索人类样本的免疫状态提供了独特的机会。值得注意的是,我们测试了该面板与细胞分选的兼容性,以用于进一步的下游应用。此外,为了促进在不同队列和样本中广泛实施这种面板,我们建立了一个精简的 45 色版本,可与不同的光谱流式细胞术平台一起使用。最后,为了生成这个面板,我们不仅利用了现有的面板设计指南,还开发了新的指标来系统地识别 50 种荧光染料的最佳组合,并在 50 种混合矩阵的背景下评估荧光染料的特定分辨率。