Quantification of collective signalling in time-lapse microscopy images.

Methods in microscopy Pub Date : 2024-06-19 eCollection Date: 2024-04-01 DOI:10.1515/mim-2024-0003
Maciej Dobrzyński, Benjamin Grädel, Paolo Armando Gagliardi, Olivier Pertz
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引用次数: 0

Abstract

Live-cell imaging of fluorescent biosensors has demonstrated that space-time correlations in signalling of cell collectives play an important organisational role in morphogenesis, wound healing, regeneration, and maintaining epithelial homeostasis. Here, we demonstrate how to quantify one such phenomenon, namely apoptosis-induced ERK activity waves in the MCF10A epithelium. We present a protocol that starts from raw time-lapse fluorescence microscopy images and, through a sequence of image manipulations, ends with ARCOS, our computational method to detect and quantify collective signalling. We also describe the same workflow in the interactive napari image viewer to quantify collective phenomena for users without prior programming experience. Our approach can be applied to space-time correlations in cells, cell collectives, or communities of multicellular organisms, in 2D and 3D geometries.

对延时显微镜图像中的集体信号进行量化。
荧光生物传感器的活细胞成像表明,细胞集体信号的时空相关性在形态发生、伤口愈合、再生和维持上皮稳态中发挥着重要的组织作用。在这里,我们展示了如何量化这样一种现象,即 MCF10A 上皮细胞凋亡诱导的 ERK 活性波。我们介绍了一个从原始延时荧光显微镜图像开始,通过一系列图像处理,最后用我们的计算方法 ARCOS 来检测和量化集体信号的方案。我们还在交互式 napari 图像查看器中描述了相同的工作流程,以便为没有编程经验的用户量化集体现象。我们的方法可应用于二维和三维几何图形中细胞、细胞集体或多细胞生物群落的时空相关性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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