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Development of an Optical System for the Non-Invasive Tracking of Stem Cell Growth on Microcarriers

机译:微载体对干细胞生长的非侵入性跟踪光学系统的发展

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The emergence of medicinal indications for stem cell therapies has seen a need to develop the manufacturing capacity for adherent cells such as mesenchymal stem cells (MSCs). One such development is in the use of microcarriers, which facilitate enhanced cell densities for adherent stem cell cultures when compared with 2D culture platforms. Given the variety of stem cell expansion systems commercially available, novel methods of non-invasive and automated monitoring of cell number, confluence, and aggregation, within disparate environments, will become imperative to process control, ensuring reliable and consistent performance. The in situ epi-illumination of mouse embryonic fibroblasts and human mesenchymal stem cells attached to Cytodex 1 and 3 microcarriers was achieved using a bespoke microscope. Robust image processing techniques were developed to provide quantitative measurements of confluence, aggregate recognition, and cell number, without the need for fluorescent labeling or cell detachment. Large datasets of cells counted on individual microcarriers were statistically analyzed and compared with NucleoCounter measurements, with an average difference of less than 7% observed from days 0 to 6 of a 12-day culture noted, prior to the onset of aggregation. The developed image acquisition system and post-processing methodologies were successfully applied to dynamically moving colonized microcarriers. The proposed system offers a novel method of cell identification at the individual level, to consistently and accurately assess viable cell number, confluence, and cell distribution, while also minimizing the variability inherent in the current invasive means by which cells adhered to microcarriers are analyzed. (c) 2017 The Authors. Biotechnology and Bioengineering Published by Wiley Periodicals, Inc.
机译:用于干细胞疗法的药物适应症的出现已经有需要开发粘附细胞如间充质干细胞(MSC)的制造能力。与2D培养平台相比,一种这样的发展是使用微载体的使用,这促进了粘附干细胞培养的增强的细胞密度。考虑到各种可商购的干细胞膨胀系统,在不同环境中,在不同的环境中,在不同环境中的非侵入性和自动监测的新方法将成为过程控制,确保可靠和一致的性能。使用定向显微镜实现了与Cytodex 1和3微载体的小鼠胚胎成纤维细胞和人间充质干细胞的原位血管照射。开发了鲁棒图像处理技术以提供汇合,骨料识别和细胞数的定量测量,而无需荧光标记或细胞脱离。在统计学上分析并与核ocounter测量进行统计分析并与核ocounter测量进行比较的大型数据集,并且在聚集到12天的培养物中观察到的时间为0至6天的平均差异小于7%。成功地应用于发育的图像采集系统和后处理方法以动态移动殖民化微载体。该提出的系统提供了个体水平的细胞鉴定方法,以始终如一地准确地评估活细胞数,汇合和细胞分布,同时还最小化当前侵入性手段中固有的可变性,通过将粘附到微载体的细胞进行分析。 (c)2017作者。 Wiley Hearyicals,Inc。出版的生物技术和生物工程

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