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一项包括单细胞和亚细胞特征评估的多参数分析揭示了在不同的超低附着板类型上球体培养物的差异行为。

A multiparametric analysis including single-cell and subcellular feature assessment reveals differential behavior of spheroid cultures on distinct ultra-low attachment plate types.

作者信息

Vitacolonna Mario, Bruch Roman, Agaçi Ane, Nürnberg Elina, Cesetti Tiziana, Keller Florian, Padovani Francesco, Sauer Simeon, Schmoller Kurt M, Reischl Markus, Hafner Mathias, Rudolf Rüdiger

机构信息

CeMOS, Mannheim University of Applied Sciences, Mannheim, Germany.

Institute of Molecular and Cell Biology, Mannheim University of Applied Sciences, Mannheim, Germany.

出版信息

Front Bioeng Biotechnol. 2024 Aug 2;12:1422235. doi: 10.3389/fbioe.2024.1422235. eCollection 2024.

Abstract

Spheroids have become principal three-dimensional models to study cancer, developmental processes, and drug efficacy. Single-cell analysis techniques have emerged as ideal tools to gauge the complexity of cellular responses in these models. However, the single-cell quantitative assessment based on 3D-microscopic data of the subcellular distribution of fluorescence markers, such as the nuclear/cytoplasm ratio of transcription factors, has largely remained elusive. For spheroid generation, ultra-low attachment plates are noteworthy due to their simplicity, compatibility with automation, and experimental and commercial accessibility. However, it is unknown whether and to what degree the plate type impacts spheroid formation and biology. This study developed a novel AI-based pipeline for the analysis of 3D-confocal data of optically cleared large spheroids at the wholemount, single-cell, and sub-cellular levels. To identify relevant samples for the pipeline, automated brightfield microscopy was employed to systematically compare the size and eccentricity of spheroids formed in six different plate types using four distinct human cell lines. This showed that all plate types exhibited similar spheroid-forming capabilities and the gross patterns of growth or shrinkage during 4 days after seeding were comparable. Yet, size and eccentricity varied systematically among specific cell lines and plate types. Based on this prescreen, spheroids of HaCaT keratinocytes and HT-29 cancer cells were further assessed. In HaCaT spheroids, the in-depth analysis revealed a correlation between spheroid size, cell proliferation, and the nuclear/cytoplasm ratio of the transcriptional coactivator, YAP1, as well as an inverse correlation with respect to cell differentiation. These findings, yielded with a spheroid model and at a single-cell level, corroborate earlier concepts of the role of YAP1 in cell proliferation and differentiation of keratinocytes in human skin. Further, the results show that the plate type may influence the outcome of experimental campaigns and that it is advisable to scan different plate types for the optimal configuration during a specific investigation.

摘要

球体已成为研究癌症、发育过程和药物疗效的主要三维模型。单细胞分析技术已成为衡量这些模型中细胞反应复杂性的理想工具。然而,基于荧光标记物亚细胞分布的三维显微镜数据(如转录因子的核/质比)进行单细胞定量评估在很大程度上仍然难以实现。对于球体生成,超低附着板因其简单性、与自动化的兼容性以及实验和商业可及性而值得关注。然而,尚不清楚板的类型是否以及在何种程度上会影响球体的形成和生物学特性。本研究开发了一种基于人工智能的新型流程,用于在整体、单细胞和亚细胞水平上分析光学清除的大型球体的三维共聚焦数据。为了确定该流程的相关样本,采用自动明场显微镜系统地比较了使用四种不同人类细胞系在六种不同板类型中形成的球体的大小和偏心率。结果表明,所有板类型都表现出相似的球体形成能力,并且接种后4天内生长或收缩的总体模式具有可比性。然而,特定细胞系和板类型之间的大小和偏心率存在系统性差异。基于此预筛选,进一步评估了HaCaT角质形成细胞和HT - 29癌细胞的球体。在HaCaT球体中,深入分析揭示了球体大小、细胞增殖与转录共激活因子YAP1的核/质比之间的相关性,以及与细胞分化的负相关。这些在球体模型和单细胞水平上得出的结果,证实了YAP1在人类皮肤角质形成细胞增殖和分化中作用的早期概念。此外,结果表明板的类型可能会影响实验结果,并且在特定研究中扫描不同板类型以获得最佳配置是可取的。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/da39/11327450/24e678983bc3/fbioe-12-1422235-g001.jpg

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