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The influence of spatial and temporal resolutions on the analysis of cell-cell interaction: a systematic study for time-lapse microscopy applications

机译:时空分辨率对细胞间相互作用分析的影响:延时显微镜应用的系统研究

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Cell-cell interactions are an observable manifestation of underlying complex biological processes occurring in response to diversified biochemical stimuli. Recent experiments with microfluidic devices and live cell imaging show that it is possible to characterize cell kinematics via computerized algorithms and unravel the effects of targeted therapies. We study the influence of spatial and temporal resolutions of time-lapse videos on motility and interaction descriptors with computational models that mimic the interaction dynamics among cells. We show that the experimental set-up of time-lapse microscopy has a direct impact on the cell tracking algorithm and on the derived numerical descriptors. We also show that, when comparing kinematic descriptors in two diverse experimental conditions, too low resolutions may alter the descriptors' discriminative power, and so the statistical significance of the difference between the two compared distributions. The conclusions derived from the computational models were experimentally confirmed by a series of video-microscopy acquisitions of co-cultures of unlabelled human cancer and immune cells embedded in 3D collagen gels within microfluidic devices. We argue that the experimental protocol of acquisition should be adapted to the specific kind of analysis involved and to the chosen descriptors in order to derive reliable conclusions and avoid biasing the interpretation of results.
机译:细胞间相互作用是潜在的复杂生物过程的可观察到的表现,该过程是对多种生物化学刺激的响应。微流控设备和活细胞成像的最新实验表明,可以通过计算机算法表征细胞运动学特征,并阐明靶向治疗的效果。我们使用模拟细胞之间相互作用动力学的计算模型研究时移视频的时空分辨率对运动性和相互作用描述符的影响。我们表明延时显微镜的实验设置对细胞跟踪算法和导出的数字描述符有直接的影响。我们还表明,在两个不同的实验条件下比较运动学描述符时,太低的分辨率可能会改变描述符的判别力,因此这两个比较分布之间的差异具有统计学意义。从计算模型得出的结论已通过一系列视频显微镜技术的实验证实,这些视频显微镜技术是对未标记人类癌症和微细胞装置内3D胶原凝胶中嵌入的免疫细胞共培养的。我们认为,实验性的采集协议应适合所涉及的特定类型的分析和所选的描述符,以便得出可靠的结论并避免偏向结果的解释。

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