Tromans-Coia Callum, Jamali Nasim, Abbasi Hamdah Shafqat, Giuliano Kenneth A, Hagimoto Mai, Jan Kevin, Kaneko Erika, Letzsch Stefan, Schreiner Alexander, Sexton Jonathan Z, Suzuki Mahomi, Trask O Joseph, Yamaguchi Mitsunari, Yanagawa Fumiki, Yang Michael, Carpenter Anne E, Cimini Beth A
bioRxiv. 2023 Jun 26:2023.02.15.528711. doi: 10.1101/2023.02.15.528711.
Quantitative microscopy is a powerful method for performing phenotypic screens from which image-based profiling can extract a wealth of information, termed profiles. These profiles can be used to elucidate the changes in cellular phenotypes across cell populations from different patient samples or following genetic or chemical perturbations. One such image-based profiling method is the Cell Painting assay, which provides morphological insight through the imaging of eight cellular compartments. Here, we examine the performance of the Cell Painting assay across multiple high-throughput microscope systems and find that all are compatible with this assay. Furthermore, we determine independently for each microscope system the best performing settings, providing those who wish to adopt this assay an ideal starting point for their own assays. We also explore the impact of microscopy setting changes in the Cell Painting assay and find that few dramatically reduce the quality of a Cell Painting profile, regardless of the microscope used.
定量显微镜检查是一种用于进行表型筛选的强大方法,基于图像的分析可以从中提取大量信息,即所谓的图谱。这些图谱可用于阐明来自不同患者样本的细胞群体中细胞表型的变化,或在基因或化学扰动之后的变化。一种这样的基于图像的分析方法是细胞绘画分析,它通过对八个细胞区室进行成像来提供形态学见解。在这里,我们研究了细胞绘画分析在多个高通量显微镜系统中的性能,发现所有系统都与该分析兼容。此外,我们为每个显微镜系统独立确定了最佳性能设置,为希望采用该分析的人提供了他们自己实验的理想起点。我们还探讨了细胞绘画分析中显微镜设置变化的影响,发现无论使用何种显微镜,很少有设置会显著降低细胞绘画图谱的质量。