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氟脱氧尿苷诱导的细胞毒性和兆碱基DNA片段形成对HT29细胞S期进程的依赖性。

Dependence of fluorodeoxyuridine-induced cytotoxicity and megabase DNA fragment formation on S phase progression in HT29 cells.

作者信息

Tang H Y, Weber K L, Lawrence T S, Merchant A K, Maybaum J

机构信息

Upjohn Center for Clinical Pharmacology, University of Michigan Medical School, Ann Arbor, MI, 48109-0504, USA.

出版信息

Cancer Chemother Pharmacol. 1996;37(5):486-90. doi: 10.1007/s002800050416.

Abstract

The relationship between cell cycle progression and induction of DNA double-strand breaks and cytotoxicity by exposure to fluorodeoxyuridine (FdUrd) was studied in HT29 human colon cancer cells. Fractionation of drug-treated populations by centrifugal elutriation yielded subpopulations having widely divergent abilities to progress through S phase in the presence of the drug. One of these subpopulations, which appeared to undergo coordinated growth arrest, was resistant to FdUrd cytotoxicity and DNA damage. In contrast, the subpopulation which was able to progress furthest through S phase in the presence of FdUrd underwent unbalanced growth arrest (i.e., increase in size and mass out of proportion to DNA synthesis), and displayed both DNA double-strand break formation (assayed by pulsed field gel electrophoresis) and loss of clonogenicity. When cells were elutriated prior to drug treatment, producing fractions enriched in cells at various cell cycle stages, no significant differences in sensitivity to FdUrd-induced cytotoxicity were detected among elutriation fractions. These findings support the model that, in HT29 cells, progression into and through S phase during drug treatment is an important determinant of FdUrd-induced DNA damage and cytotoxicity, but that the cell cycle position at the start of drug exposure is not a critical factor for these effects.

摘要

在HT29人结肠癌细胞中研究了细胞周期进程与暴露于氟脱氧尿苷(FdUrd)诱导的DNA双链断裂及细胞毒性之间的关系。通过离心淘析对经药物处理的细胞群体进行分级分离,得到了在药物存在下通过S期的能力差异很大的亚群。其中一个亚群似乎经历了协调性生长停滞,对FdUrd细胞毒性和DNA损伤具有抗性。相比之下,在FdUrd存在下能够在S期进展最远的亚群经历了不平衡生长停滞(即细胞大小和质量的增加与DNA合成不成比例),并表现出DNA双链断裂形成(通过脉冲场凝胶电泳检测)和克隆形成能力丧失。当在药物处理前对细胞进行淘析,产生富含处于不同细胞周期阶段细胞的级分时,在淘析级分中未检测到对FdUrd诱导的细胞毒性敏感性的显著差异。这些发现支持了这样一个模型,即在HT29细胞中,药物处理期间进入并通过S期是FdUrd诱导的DNA损伤和细胞毒性的重要决定因素,但药物暴露开始时的细胞周期位置不是这些效应的关键因素。

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