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Investigation of portable in situ fluorescence optical detection for microfluidic 3D cell culture assays

机译:便携式原位荧光光学检测技术在微流体3D细胞培养测定中的研究

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摘要

A portable fluorescence optical detection system was developed to demonstrate real-time in situ analysis of cells that are three-dimensionally cultured in an extracellular matrix under microfluidic environment. The system was designed to provide a large field of view in the lateral plane to average out cellular processes in an axial layer and simultaneously diffraction-limited axial resolution. In this proof-of-concept study, the detection system was applied to quantitative analyses of short-term measurements of cell staining and cell cytotoxicity and long-term monitoring of a cell-invasion assay. For assays, colon cancer cells were cultured in a Matrigel or alginate matrix. The measured data were largely consistent with predicted results and revealed quantitatively cell dynamics specific to 3D cell cultures. The detection system has a potential as a single package to investigate 3D cultures in a microfluidic system.
机译:开发了一种便携式荧光光学检测系统,以演示在微流环境下对在细胞外基质中三维培养的细胞进行实时原位分析的方法。该系统旨在在侧面提供较大的视野,以使轴向层中的细胞过程平均化,并同时限制衍射极限的轴向分辨率。在这项概念验证研究中,检测系统被用于定量分析细胞染色和细胞毒性的短期测量结果以及长期监测细胞侵袭试验。为了进行测定,将结肠癌细胞培养在基质胶或藻酸盐基质中。测得的数据在很大程度上与预测结果一致,并定量地揭示了3D细胞培养所特有的细胞动力学。该检测系统有可能作为一个单独的软件包来研究微流体系统中的3D培养。

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