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Studies directed toward the mechanism of radiosensitization by 2',2'-difluoro-2'-deoxycytidine (gemcitabine).

机译:针对2',2'-二氟-2'-脱氧胞苷(吉西他滨)放射致敏作用机理的研究。

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摘要

2',2'-Difluoro-2' -deoxycytidine (dFdCyd) is a nucleoside analog that has shown clinical activity against a variety of solid tumor types. There are two pathways through which dFdCyd can exert cytotoxicity: (1) the diphosphate derivative, dFdCDP, inhibits ribonucleotide reductase resulting primarily in the depletion of dATP in solid tumor cells; and (2) the triphosphate derivative, dFdCTP, can be incorporated into DNA and interfere with DNA replication. In addition to its inherent cytotoxicity, when combined with ionizing radiation, dFdCyd produces a synergistic effect in cell killing. This dissertation examines the roles of dATP depletion and cell cycle distribution in the mechanism of dFdCyd mediated radiosensitization.; In order to study the mechanism of dFdCyd mediated radiosensitization, U251 human glioblastoma cells, which express a mutant p53 and were readily radiosensitized, were compared to D54 human glioblastoma cells, which express wild-type p53 and could not be radiosensitized. Previous studies correlated radiosensitization by dFdCyd with its ability to deplete dATP. The lack of radiosensitization of D54 cells was not due to a lack of dATP depletion. dATP depletion alone was not sufficient to induce radiosensitization; however, dATP depletion did parallel DNA synthesis inhibition. dATP depletion and the subsequent inhibition of DNA synthesis did not contribute significantly to cytotoxicity.; Other studies have demonstrated that S-phase cells are more susceptible to radiosensitization by dFdCyd. Before examining the role of the cell cycle in radiosensitization by dFdCyd, an extensive review of dual parameter flow cytometry measuring BrdUrd incorporation and DNA content was performed. Both acid/heat and DNase denaturation of DNA were equally effective; however, indirect labeling of BrdUrd was more sensitive than direct labeling. Following dFdCyd treatment, U251 cells readily accumulated in S-phase, whereas D54 cells did not. However, treatment of D54 cells with hydroxyurea resulted in S-phase accumulation without subsequent radiosensitization. Removal of p53 controlled cell cycle checkpoints by the introduction of HPV-16 E6 into D54 cells promoted S-phase accumulation following dFdCyd treatment and increased the incidence radiosensitization. These studies suggest that dATP depletion and S-phase accumulation are not sufficient for, but may induce the critical DNA lesion of radiosensitization by dFdCyd.
机译:2',2'-二氟-2'-脱氧胞苷(dFdCyd)是一种核苷类似物,已显示出对多种实体瘤类型的临床活性。 dFdCyd可以通过两种途径发挥细胞毒性作用:(1)二磷酸衍生物dFdCDP抑制核糖核苷酸还原酶,主要导致实体肿瘤细胞中dATP的消耗。 (2)三磷酸衍生物dFdCTP可掺入DNA并干扰DNA复制。除其固有的细胞毒性外,当与电离辐射结合使用时,dFdCyd在细胞杀伤中产生协同作用。本文探讨了dATP耗竭和细胞周期分布在dFdCyd介导的放射增敏作用中的作用。为了研究dFdCyd介导的放射增敏作用的机制,将表达突变型p53且易于放射增敏的U251人胶质母细胞瘤细胞与表达野生型p53且不能进行放射增敏的D54人胶质母细胞瘤细胞进行了比较。先前的研究将dFdCyd的放射增敏作用与其消耗dATP的能力相关联。 D54细胞放射增敏作用的缺乏不是由于缺乏dATP消耗引起的。单独的dATP消耗不足以引起放射增敏作用。但是,dATP的消耗确实抑制了DNA的合成。 dATP消耗和随后对DNA合成的抑制作用对细胞毒性没有显着贡献。其他研究表明,S期细胞对dFdCyd的放射增敏作用更为敏感。在通过dFdCyd检查细胞周期在放射增敏中的作用之前,对双参数流式细胞术测量BrdUrd掺入和DNA含量进行了广泛的综述。 DNA的酸/热和DNase变性均有效。但是,BrdUrd的间接标记比直接标记更敏感。 dFdCyd处理后,U251细胞很容易在S期积累,而D54细胞则没有。但是,用羟基脲处理D54细胞会导致S期积累,而没有随后的放射增敏作用。通过将HPV-16 E6引入D54细胞中来去除p53控制的细胞周期检查点,可以促进dFdCyd处理后S期的积累,并增加放射增敏作用。这些研究表明,dATP耗竭和S期积累不足以解决上述问题,但可能会导致dFdCyd引起放射致敏的关键DNA损伤。

著录项

  • 作者

    Ostruszka, Leo J.;

  • 作者单位

    University of Michigan.;

  • 授予单位 University of Michigan.;
  • 学科 Health Sciences Pharmacology.
  • 学位 Ph.D.
  • 年度 2001
  • 页码 136 p.
  • 总页数 136
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 药理学 ;
  • 关键词

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