VIB Center for Brain and Disease Research, Leuven, Belgium.
Department of Microbiology and Immunology, KU Leuven - University of Leuven, Leuven, Belgium.
Nat Commun. 2021 May 17;12(1):2890. doi: 10.1038/s41467-021-23126-8.
Compensating in flow cytometry is an unavoidable challenge in the data analysis of fluorescence-based flow cytometry. Even the advent of spectral cytometry cannot circumvent the spillover problem, with spectral unmixing an intrinsic part of such systems. The calculation of spillover coefficients from single-color controls has remained essentially unchanged since its inception, and is increasingly limited in its ability to deal with high-parameter flow cytometry. Here, we present AutoSpill, an alternative method for calculating spillover coefficients. The approach combines automated gating of cells, calculation of an initial spillover matrix based on robust linear regression, and iterative refinement to reduce error. Moreover, autofluorescence can be compensated out, by processing it as an endogenous dye in an unstained control. AutoSpill uses single-color controls and is compatible with common flow cytometry software. AutoSpill allows simpler and more robust workflows, while reducing the magnitude of compensation errors in high-parameter flow cytometry.
补偿在流式细胞术中是荧光流式细胞术数据分析中不可避免的挑战。即使是光谱流式细胞术的出现也不能规避串扰问题,因为光谱解混是这类系统的固有部分。自其诞生以来,从单染对照中计算串扰系数的方法基本没有变化,而且其处理高参数流式细胞术的能力越来越受到限制。在这里,我们提出了 AutoSpill,这是一种计算串扰系数的替代方法。该方法结合了细胞的自动门控、基于稳健线性回归的初始串扰矩阵的计算以及迭代细化以减少误差。此外,可以通过将其作为未染色对照中的内源性染料进行处理来补偿自发荧光。AutoSpill 使用单染对照且与常见的流式细胞术软件兼容。AutoSpill 允许更简单、更稳健的工作流程,同时减少高参数流式细胞术中补偿误差的幅度。