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卤代嘧啶的放射增敏机制:溴脱氧尿苷和β-阿拉伯呋喃糖基腺嘌呤对处于平台期的中国仓鼠卵巢细胞中辐射诱导的潜在致死性损伤的相似亚群有影响。

Mechanism of radiosensitization by halogenated pyrimidines: bromodeoxyuridine and beta-arabinofuranosyladenine affect similar subsets of radiation-induced potentially lethal lesions in plateau-phase Chinese hamster ovary cells.

作者信息

Iliakis G, Kurtzman S

机构信息

Thomas Jefferson University Hospital, Department of Radiation Oncology and Nuclear Medicine, Philadelphia, Pennsylvania 19107.

出版信息

Radiat Res. 1991 Jul;127(1):45-51.

PMID:2068271
Abstract

Chinese hamster ovary (CHO) cells were grown to plateau phase in the presence of various amounts of bromodeoxyuridine (BrdU) and treated after irradiation with beta-arabinofuranosyladenine (ara-A), an inhibitor of DNA and potentially lethal damage (PLD) repair, in order to investigate the importance of repair reactions in general and of PLD repair, in particular, on the mechanism of radiosensitization by halogenated pyrimidines. The degree of BrdU-mediated radiosensitization observed in ara-A-treated cells was compared to that of cells incubated after irradiation in the absence of ara-A. A substantial reduction in BrdU-mediated radiosensitization was observed in cells treated with ara-A at concentrations that, when given alone, produced maximum potentiation in cell killing (500-1500 microM). The residual BrdU-mediated radiosensitization observed at high levels of thymidine replacement could be explained by a BrdU-mediated increase in DNA and chromosome damage induction per gray. These findings are similar to those reported previously for a repair-deficient mutant of CHO cells, the xrs-5 cell line, and consistent with the hypothesis that BrdU-mediated radiosensitization has two distinct components, one that derives from an increase in damage induction per gray, and a second one that derives from an effect of BrdU on the repair of radiation-induced damage. It is proposed that the reduction in BrdU-mediated radiosensitization observed in ara-A-treated cells is the result of ara-A-mediated expression of radiation damage, the repair of which would have been otherwise modulated by BrdU. Since ara-A is known to act by fixing a form of radiation-induced PLD (alpha-PLD), we further propose that BrdU acts by fixing alpha-PLD. A synergistic effect in the potentiation of cell killing was observed between ara-A and BrdU when ara-A was given at concentrations below 100 microM. This result suggests that a benefit may be expected in the clinic from the combined application of halogenated pyrimidines with repair inhibitors, if administered at a carefully screened range of concentrations.

摘要

将中国仓鼠卵巢(CHO)细胞在存在不同量溴脱氧尿苷(BrdU)的情况下培养至平台期,并在照射后用β - 阿拉伯呋喃糖基腺嘌呤(ara - A)处理,ara - A是一种DNA和潜在致死性损伤(PLD)修复的抑制剂,以研究一般修复反应尤其是PLD修复对卤代嘧啶放射增敏机制的重要性。将在ara - A处理的细胞中观察到的BrdU介导的放射增敏程度与在无ara - A的情况下照射后孵育的细胞的放射增敏程度进行比较。在用ara - A处理的细胞中观察到BrdU介导的放射增敏显著降低,当单独给予ara - A时,这些浓度在细胞杀伤中产生最大增效作用(500 - 1500微摩尔)。在高水平胸苷替代时观察到的残留BrdU介导的放射增敏可以用BrdU介导的每格雷DNA和染色体损伤诱导增加来解释。这些发现与先前报道的CHO细胞修复缺陷突变体xrs - 5细胞系的发现相似,并且与BrdU介导的放射增敏有两个不同成分的假设一致,一个成分源自每格雷损伤诱导的增加,另一个成分源自BrdU对辐射诱导损伤修复的影响。有人提出,在ara - A处理的细胞中观察到的BrdU介导的放射增敏降低是ara - A介导的辐射损伤表达的结果,否则这种损伤的修复会受到BrdU的调节。由于已知ara - A通过固定一种形式的辐射诱导PLD(α - PLD)起作用,我们进一步提出BrdU通过固定α - PLD起作用。当ara - A以低于100微摩尔的浓度给予时,在细胞杀伤增效方面观察到ara - A和BrdU之间的协同作用。该结果表明,如果在精心筛选的浓度范围内给药,卤代嘧啶与修复抑制剂联合应用在临床上可能会带来益处。

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