Faculty of Engineering, Yokohama National University, Yokohama, 240-8501, Japan.
Optical System Development Division, R&D Group, OLYMPUS Corporation, Hachioji, 192-8507, Japan.
Sci Rep. 2017 May 15;7(1):1897. doi: 10.1038/s41598-017-02001-x.
Consistent cell preparation is a fundamental preliminary step for understanding complex cellular mechanisms in various cell-based research fields, including basic cell biology, cancer research, and tissue engineering. However, certain elusive factors, such as cellular de-differentiation and contamination with mycoplasma or other types of cells, have compromised the reproducibility and reliability of cell-based approaches. Here, we propose an epi relief-contrast cellular monitoring system (eRC-CMS) that allows images of cells in a typical culture plate to be acquired, stored, and analysed for daily cell quality control. Due to its full flatbed nature and automated system, cells placed at any location on the stage can be analysed without special attention. Using this system, changes in the size, circularity, and proliferation of endothelial cells in subculture were recorded. Analyses of images of ~9,930,000 individual cells revealed that the growth activity and cell circularity in subcultures were closely correlated with their angiogenic activity in a subsequent hydrogel assay, demonstrating that eRC-CMS is useful for assessing cell quality in advance. We further demonstrated that eRC-CMS was feasible for the imaging of neurite elongation and spheroid formation. This system may provide a robust and versatile approach for daily cell preparation to facilitate reliable and reproducible cell-based studies.
一致的细胞准备是理解各种基于细胞的研究领域中复杂细胞机制的基本初步步骤,包括基础细胞生物学、癌症研究和组织工程。然而,某些难以捉摸的因素,如细胞去分化和支原体或其他类型细胞的污染,已经影响了基于细胞方法的可重复性和可靠性。在这里,我们提出了一种 epi 浮雕对比细胞监测系统(eRC-CMS),它可以获取、存储和分析典型培养板中细胞的图像,以进行日常细胞质量控制。由于其全平板性质和自动化系统,放置在载物台上任何位置的细胞都可以进行分析,而无需特别注意。使用该系统,记录了亚培养中内皮细胞大小、圆度和增殖的变化。对约 9,930,000 个单个细胞的图像进行分析表明,亚培养中的生长活性和细胞圆度与随后的水凝胶测定中的血管生成活性密切相关,表明 eRC-CMS 可用于预先评估细胞质量。我们进一步证明 eRC-CMS 可用于成像神经突伸长和球体形成。该系统可能为日常细胞准备提供一种稳健且通用的方法,以促进可靠和可重复的基于细胞的研究。