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用米索硝唑进行低氧预处理的放射增敏作用:DNA 水平损伤的一种相互作用。

Radiosensitization by hypoxic pretreatment with misonidazole: an interaction of damage at the DNA level.

作者信息

Taylor Y C, Evans J W, Brown J M

出版信息

Radiat Res. 1987 Mar;109(3):364-73.

PMID:3550868
Abstract

Prolonged exposures to misonidazole (MISO) in vitro under hypoxic conditions result in radiosensitization which is characterized by a decrease in the size of the radiation survival curve shoulder for cells irradiated under hypoxic or aerobic conditions after drug removal. Although intracellular glutathione (GSH) was depleted during hypoxic exposures to MISO, this could not account for the dose-additive radiosensitization (decrease in shoulder size) since GSH depletion by diethylmaleate had no effect on the sensitivity of cells irradiated in air. The alkaline elution assay was used to measure DNA strand breaks and their repair after exposure to MISO, graded doses of X rays, and the combination of MISO pretreatment with X rays. The elution rate of DNA from irradiated cells increased linearly with X-ray dose, with and without MISO pretreatment. However, the DNA elution rates measured after MISO pretreatment were greater by a constant amount at all X-ray doses greater than 1 Gy. In terms of both cell survival and DNA elution rate, MISO-pretreated cells behaved as though they had received an extra 1.5 Gy. Although the initial damage after X rays was greater in MISO-pretreated cells, there was no effect of MISO pretreatment on the rate of repair of radiation-induced DNA strand breaks. The agreement between the differences in survival levels and DNA elution rates for irradiated control and MISO-pretreated cells and absence of an effect on DNA repair rates suggest that the pretreatment sensitization is due to an additive interaction of damage at the DNA level.

摘要

在缺氧条件下体外长时间暴露于米索硝唑(MISO)会导致放射增敏,其特征是在去除药物后,缺氧或有氧条件下照射的细胞的辐射存活曲线肩部尺寸减小。尽管在缺氧暴露于MISO期间细胞内谷胱甘肽(GSH)被耗尽,但这并不能解释剂量相加的放射增敏作用(肩部尺寸减小),因为马来酸二乙酯耗尽GSH对在空气中照射的细胞的敏感性没有影响。碱性洗脱试验用于测量暴露于MISO、分级剂量的X射线以及MISO预处理与X射线联合作用后DNA链断裂及其修复情况。无论有无MISO预处理,照射细胞的DNA洗脱率均随X射线剂量呈线性增加。然而,在所有大于1 Gy的X射线剂量下,MISO预处理后测得的DNA洗脱率均恒定增加。就细胞存活和DNA洗脱率而言,MISO预处理的细胞表现得就好像它们额外接受了1.5 Gy的照射。尽管MISO预处理的细胞在X射线照射后的初始损伤更大,但MISO预处理对辐射诱导的DNA链断裂的修复速率没有影响。照射对照细胞和MISO预处理细胞在存活水平和DNA洗脱率上的差异一致,且对DNA修复速率没有影响,这表明预处理增敏是由于DNA水平损伤的相加相互作用所致。

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