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Lab-on-Chip Platform for Culturing and Dynamic Evaluation of Cells Development

机译:培养和动态评估细胞发育的芯片实验室平台

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摘要

This paper presents a full-featured microfluidic platform ensuring long-term culturing and behavioral analysis of the radically different biological micro-objects. The platform uses all-glass lab-chips and MEMS-based components providing dedicated micro-aquatic habitats for the cells, as well as their intentional disturbances on-chip. Specially developed software was implemented to characterize the micro-objects metrologically in terms of population growth and cells’ size, shape, or migration activity. To date, the platform has been successfully applied for the culturing of freshwater microorganisms, fungi, cancer cells, and animal oocytes, showing their notable population growth, high mobility, and taxis mechanisms. For instance, circa 100% expansion of porcine oocytes cells, as well as nearly five-fold increase in population, has been achieved. These results are a good base to conduct further research on the platform versatile applications.
机译:本文提出了一个功能齐全的微流体平台,可确保对根本不同的生物微对象进行长期培养和行为分析。该平台使用全玻璃实验室芯片和基于MEMS的组件,为细胞及其在芯片上的故意干扰提供了专用的微水生境。实施了专门开发的软件,以根据种群增长以及细胞的大小,形状或迁移活动来对微对象进行计量表征。迄今为止,该平台已成功用于淡水微生物,真菌,癌细胞和动物卵母细胞的培养,显示出其显着的种群增长,高迁移率和滑行机制。例如,已经实现了约100%的猪卵母细胞的扩增以及近五倍的种群增长。这些结果为进一步研究平台通用应用程序提供了良好的基础。

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