流式细胞术数据对细胞周期参数变化的敏感性。

P Ubezio, A Rossotti
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引用次数: 10

摘要

我们研究了流式细胞术DNA直方图在多大程度上提供了细胞周期参数的信息。我们创建了一个计算机程序,以一种通用而灵活的方式模拟细胞周期进程。为了获得指数生长过程中处于不同细胞周期阶段的细胞百分比及其在有丝分裂阻断后的时间过程,我们分析了以不同模型和细胞周期周期时间分布为特征的各种情况。指数生长期间的细胞百分比对细胞间相传递时间的变化不敏感,因此可以用来估计相对平均相传递时间,即使在非循环细胞存在的情况下。然而,如果允许这些细胞重新进入循环状态,则该信息是模糊的。静态动力学轮廓给出了平均相传递时间,但也提供了有关相传递时间分布的信息,而不是形式,对G1相持续时间的传播特别敏感。静态动力学大纲还有助于区分仅考虑循环细胞的情景,预测一小部分绝对非循环细胞的情景和承认具有一阶输出动力学的G0状态的情景。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Sensitivity of flow cytometric data to variations in cell cycle parameters.

We investigated to what extent flow cytometric DNA histograms are informative of cell cycle parameters. We created a computer program to simulate cell cycle progression in a generic and flexible way. Various scenarios, characterized by different models and distributions of cell cycle phase transit times, have been analysed in order to obtain the percentages of cells in the different cell cycle phases during exponential growth and their time course after mitotic block. Cell percentages during exponential growth were insensitive to intercell variability in phase transit times and thus can be employed to estimate the relative mean phase transit times, even in the presence of non-cycling cells. However, this information is ambiguous if re-entry of such cells into the cycling status is permitted. The stathmokinetic outline gives the mean phase transit times, but also provides information about the spread, but not the form, of the phase transit time distributions, being particularly sensitive to the spread of G1 phase duration. The stathmokinetic outline also helps distinguish between scenarios considering only cycling cells, those forecasting a fraction of definitively non-cycling cells and those admitting a G0 status with first-order output kinetics.

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