Fernández-de-Manúel Laura, Díaz-Díaz Covadonga, Jiménez-Carretero Daniel, Torres Miguel, Montoya María C
Cellomics Unit.
Cardiovascular Developmental Program, Cell & Developmental Biology Area, Centro Nacional de Investigaciones Cardiovasculares CNIC, Madrid, Spain.
Biotechniques. 2017 May 1;62(5):215-222. doi: 10.2144/000114545.
Embryonic stem cells (ESCs) can be established as permanent cell lines, and their potential to differentiate into adult tissues has led to widespread use for studying the mechanisms and dynamics of stem cell differentiation and exploring strategies for tissue repair. Imaging live ESCs during development is now feasible due to advances in optical imaging and engineering of genetically encoded fluorescent reporters; however, a major limitation is the low spatio-temporal resolution of long-term 3-D imaging required for generational and neighboring reconstructions. Here, we present the ESC-Track (ESC-T) workflow, which includes an automated cell and nuclear segmentation and tracking tool for 4-D (3-D + time) confocal image data sets as well as a manual editing tool for visual inspection and error correction. ESC-T automatically identifies cell divisions and membrane contacts for lineage tree and neighborhood reconstruction and computes quantitative features from individual cell entities, enabling analysis of fluorescence signal dynamics and tracking of cell morphology and motion. We use ESC-T to examine Myc intensity fluctuations in the context of mouse ESC (mESC) lineage and neighborhood relationships. ESC-T is a powerful tool for evaluation of the genealogical and microenvironmental cues that maintain ESC fitness.
胚胎干细胞(ESC)可以建立为永久细胞系,并且它们分化为成体组织的潜力已导致其在研究干细胞分化机制和动力学以及探索组织修复策略方面得到广泛应用。由于光学成像和基因编码荧光报告基因工程的进展,现在在发育过程中对活胚胎干细胞进行成像已成为可能;然而,一个主要限制是进行世代和相邻重建所需的长期三维成像的时空分辨率较低。在这里,我们展示了ESC-Track(ESC-T)工作流程,其中包括用于四维(三维+时间)共聚焦图像数据集的自动细胞和细胞核分割与跟踪工具,以及用于视觉检查和错误校正的手动编辑工具。ESC-T会自动识别细胞分裂和膜接触,以进行谱系树和邻域重建,并从单个细胞实体计算定量特征,从而能够分析荧光信号动力学并跟踪细胞形态和运动。我们使用ESC-T在小鼠胚胎干细胞(mESC)谱系和邻域关系的背景下检查Myc强度波动。ESC-T是评估维持胚胎干细胞适应性的谱系和微环境线索的有力工具。