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利用90度光散射对人类肿瘤细胞中药物诱导的细胞周期延迟进行亚群分析。

Subpopulation analysis of drug-induced cell-cycle delay in human tumor cells using 90 degrees light scatter.

作者信息

Epstein R J, Watson J V, Smith P J

机构信息

University Department, MRC Centre, Cambridge, England.

出版信息

Cytometry. 1988 Jul;9(4):349-58. doi: 10.1002/cyto.990090412.

Abstract

A mitotic cell subset has been identified with nuclear light scatter. Colcemid-treated T-47D human breast cancer cells were permeabilised, stained with ethidium bromide, and analysed by flow cytometry. Cells with G2M DNA content exhibited a unimodal distribution for DNA fluorescence and forward scatter, but two peaks were discernible with 90 degrees light scatter. A discrete low-scattering cell cluster could be distinguished from the G2 cell subset on two-dimensional contour plots of 90 degrees light scatter vs. DNA fluorescence; this cluster was reproduced by mitotic shake-off experiments and varied quantitatively with mitotic indices determined either by microscopy or by stathmokinetic cell-cycle analysis of DNA fluorescence. Cell sorting confirmed that the low-scattering cell cluster comprised predominantly metaphase and anaphase cells. Identification of mitotic cells with this one-step technique enables rapid analysis of drug-induced cell-cycle delay in cell populations with different rates of cell-cycle traverse. Hence, vincristine-induced cytostasis is shown to arise in part because of premitotic G2 arrest, whereas etoposide is shown to affect cycling cells with equal sensitivity in quiescent and activated cell populations. The use of light scatter to discriminate mitotic cells in this way facilitates analysis of drug-induced cell-cycle delay and supplements the information obtainable by conventional cell-cycle analysis.

摘要

已通过核光散射鉴定出有丝分裂细胞亚群。用秋水仙酰胺处理的T - 47D人乳腺癌细胞进行通透处理,用溴化乙锭染色,并通过流式细胞术分析。具有G2M期DNA含量的细胞在DNA荧光和前向散射方面呈现单峰分布,但在90度光散射下可分辨出两个峰。在90度光散射与DNA荧光的二维等高线图上,可以将一个离散的低散射细胞簇与G2细胞亚群区分开来;该簇通过有丝分裂摇落实验重现,并且与通过显微镜或DNA荧光的有丝分裂动力学细胞周期分析确定的有丝分裂指数定量变化。细胞分选证实,低散射细胞簇主要由中期和后期细胞组成。用这种一步技术鉴定有丝分裂细胞能够快速分析不同细胞周期进程速率的细胞群体中药物诱导的细胞周期延迟。因此,已表明长春新碱诱导的细胞停滞部分是由于有丝分裂前G2期停滞,而依托泊苷在静止和活化细胞群体中对循环细胞的影响具有相同的敏感性。以这种方式利用光散射来区分有丝分裂细胞有助于分析药物诱导的细胞周期延迟,并补充了通过传统细胞周期分析可获得的信息。

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