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利用溴脱氧尿苷单次和多次标记的模拟模型分析肿瘤中的异质性细胞动力学。

Heterogeneous cell kinetics in tumors analyzed with a simulation model for bromodeoxyuridine single and multiple labeling.

作者信息

Baisch H, Otto U, Hatje U, Fack H

机构信息

Institute of Biophysics and Radiobiology, University of Hamburg, Germany.

出版信息

Cytometry. 1995 Sep 1;21(1):52-61. doi: 10.1002/cyto.990210111.

Abstract

Bromodeoxyuridine (BrdUrd) labeling of DNA and flow cytometry measurement of bivariate BrdUrd-DNA content distributions yield proportions of cells in the cycle phases. After application of BrdUrd, with time, these proportions change according to the cell kinetic parameters of the investigated cell line or tumor. In a previous study of S-phase transit time using the relative movement method, we obtained better fits with S-duration distributions rather than constant values (Baisch and Otto: Cell Prolif 26:439-448, 1993). Now, we have developed a simulation model using asymmetric phase duration distributions in all phases of the cell cycle to fit the experimental data after single or multiple BrdUrd labeling. The model includes transit of cells from proliferating to quiescent compartments in all phases. The results yield the phase duration distributions, mean and median percentages of quiescent cells in all phases, growth fraction, and potential doubling time. The model was used to fit data of five renal cell carcinomas xenotransplanted into nude mice that were obtained after single and multiple labeling up to 93 hours. The estimated phase duration distributions varied from narrow to extremely asymmetric. In particular, TG2M duration and asymmetry were nearly as large as those of G1 phase in some tumors. The contribution of inter- and intratumoral heterogeneity cannot be separated by the simulation model, but evidence of intratumoral heterogeneity is provided by DNA content distributions at extended time spans after BrdUrd labeling.

摘要

用溴脱氧尿苷(BrdUrd)标记DNA并通过流式细胞术测量双变量BrdUrd-DNA含量分布,可得出细胞周期各阶段的细胞比例。施加BrdUrd后,随着时间推移,这些比例会根据所研究细胞系或肿瘤的细胞动力学参数而发生变化。在先前一项使用相对运动方法研究S期转运时间的研究中,我们发现S期持续时间分布的拟合效果比恒定值更好(拜施和奥托:《细胞增殖》26:439 - 448,1993)。现在,我们开发了一个模拟模型,该模型使用细胞周期所有阶段的不对称相持续时间分布来拟合单次或多次BrdUrd标记后的实验数据。该模型包括细胞在所有阶段从增殖区室向静止区室的转运。结果得出了相持续时间分布、所有阶段静止细胞的平均和中位数百分比、生长分数以及潜在倍增时间。该模型用于拟合移植到裸鼠体内的5种肾细胞癌的数据,这些数据是在单次和多次标记长达93小时后获得的。估计的相持续时间分布从狭窄到极其不对称不等。特别是,在某些肿瘤中,TG2M持续时间和不对称性几乎与G1期一样大。模拟模型无法区分肿瘤间和肿瘤内异质性的贡献,但BrdUrd标记后延长时间跨度的DNA含量分布提供了肿瘤内异质性的证据。

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