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A high-throughput three-dimensional cell migration assay for toxicity screening with mobile device-based macroscopic image analysis

机译:基于移动设备的宏观图像分析的毒性筛选的高通量三维细胞迁移测定

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There is a growing demand for in vitro assays for toxicity screening in three-dimensional (3D) environments. In this study, 3D cell culture using magnetic levitation was used to create an assay in which cells were patterned into 3D rings that close over time. The rate of closure was determined from time-lapse images taken with a mobile device and related to drug concentration. Rings of human embryonic kidney cells (HEK293) and tracheal smooth muscle cells (SMCs) were tested with ibuprofen and sodium dodecyl sulfate (SDS). Ring closure correlated with the viability and migration of cells in two dimensions (2D). Images taken using a mobile device were similar in analysis to images taken with a microscope. Ring closure may serve as a promising label-free and quantitative assay for high-throughput in vivo toxicity in 3D cultures.
机译:在三维(3D)环境中对毒性筛选的体外测定不断增长。在该研究中,使用使用磁悬浮的3D细胞培养物来产生测定,其中将细胞图案化为3D环的3D环。从使用移动设备拍摄的时间流逝图像和药物浓度相关的封闭率。用布洛芬和十二烷基硫酸钠(SDS)测试人胚胎肾细胞(HEK293)和气管平滑肌细胞(SMC)的环。环闭合与两个维度(2D)中细胞的可行性和迁移相关联。使用移动设备拍摄的图像在分析中类似于用显微镜拍摄的图像。环闭合可以作为对3D培养物中的体内毒性的高通量的无前景无需定量测定。

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