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Continuous morphology and growth monitoring of different cell types in a single culture using quantitative phase microscopy

机译:使用定量相显微镜的单一培养中不同细胞类型的连续形态和生长监测

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The minimally-invasive quantitative observation of different cell types in a single culture is of particular interest for the analysis of the impact of Pharmaceuticals, pathogens or toxins on different cellular phenotypes under identical measurement conditions and to analyze interactions between different cellular specimens. Quantitative phase microscopy (QPM), provides high resolution detection of optical path length changes that is suitable for quantitative tomographic imaging and stain-free minimally-invasive live cell analysis. Due to low light intensities for object illumination, QPM minimizes the interaction with the sample and thus is in particular suitable for long term time-lapse investigations on cells in which for example morphology alterations due to toxins, drugs or genetic modifications are studied. We analyzed the feasibility of QPM, for the analysis of mixed cell cultures and explored if quantitative phase images provide sufficient information to distinguish between different cell types and to extract cell specific parameters. For the experiments quantitative phase imaging with digital holographic microscopy (DHM) was utilized. Mixed cell cultures with different cell types were continuously observed with quantitative DHM phase contrast up to 35 h. The obtained series of quantitative phase images were evaluated by adapted image segmentation algorithms. From the segmented quantitative phase images the area covered by the cells, the cellular dry mass as well as the mean cell thickness and volume were determined and used as parameters to quantify the reliability of data acquisition. The obtained results demonstrate that it is possible to characterize the growth of cell types with different morphology features separately in a single cell culture. This prospects new application fields of quantitative phase imaging in drug and toxicity testing in vitro.
机译:在单一培养中的不同细胞类型对不同细胞类型的微创定量观察对于在相同的测量条件下的不同细胞表型上的药物,病原体或毒素的影响和分析不同细胞样品之间的相互作用的分析特别感兴趣。定量相显微镜(QPM),提供高分辨率检测光路长度变化,其适用于定量断层摄影和无污染的微创活细胞分析。由于物体照明的低光强度,QPM最小化与样品的相互作用,因此特别适用于对细胞的长期延时调查,其中研究了由于毒素而导致的形态改变,药物或遗传修饰。我们分析了QPM的可行性,用于分析混合细胞培养并探索,如果定量相位图像提供足够的信息以区分不同的细胞类型并提取细胞特定参数。对于实验,利用具有数字全息显微镜(DHM)的定量相成像。用定量的DHM相,连续观察具有不同细胞类型的混合细胞培养物,其比较为35小时。通过适应的图像分割算法评估所获得的一系列定量相位图像。从分段定量相位图像从细胞覆盖的区域,细胞干料以及平均电池厚度和体积的区域被确定并用作参数以量化数据采集的可靠性。所得结果表明,在单细胞培养中,可以表征具有不同形态学特征的细胞类型的生长。该展望在体外药物和毒性试验中的定量相成像新应用领域。

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