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人胶质瘤细胞中热疗对辐射敏感性增强及DNA聚合酶失活的比较。

A comparison of the enhancement of radiation sensitivity and DNA polymerase inactivation by hyperthermia in human glioma cells.

作者信息

Raaphorst G P, Feeley M M, Chu G L, Dewey W C

机构信息

Ottawa Regional Cancer Centre, Ontario, Canada.

出版信息

Radiat Res. 1993 Jun;134(3):331-6.

PMID:8316626
Abstract

Two human glioma cell lines (U87MG and U373MG) were evaluated for their thermal enhancement of radiation sensitivity and its correlation to the degree of inactivation of DNA polymerase alpha and beta. The data showed that hyperthermia increased radiation sensitivity in a time- and temperature-dependent manner. The differential heat sensitivity of the two cell lines was reflected in the degree of polymerase inactivation. Polymerase inactivation was also dependent on time and temperature and was greater for polymerase beta than alpha. The degree of polymerase inactivation correlated well with the thermal enhancement ratio (TER) calculated at the 1.0% survival level. This correlation was poor for the TER at the 50% survival level. The correlations were better for polymerase beta than alpha. The small differences in thermal sensitivity between the two cell lines primarily at 41 and 42 degrees C could not be explained by correlation between polymerase inactivation and TER. Incubation between hyperthermia and irradiation resulted in recovery of polymerase activity and loss of radiosensitization. Levels of polymerase beta after hyperthermia may be used to predict thermal enhancement of radiosensitivity for low survival levels, but possibly not in the shoulder region of the radiation survival curve. Small cell line-dependent differences in thermal sensitivity may not be resolved in these comparisons.

摘要

评估了两种人类胶质瘤细胞系(U87MG和U373MG)辐射敏感性的热增强情况及其与DNA聚合酶α和β失活程度的相关性。数据表明,热疗以时间和温度依赖性方式增加辐射敏感性。两种细胞系的不同热敏感性反映在聚合酶失活程度上。聚合酶失活也取决于时间和温度,且聚合酶β的失活程度大于α。聚合酶失活程度与在1.0%存活水平计算的热增强比(TER)密切相关。对于50%存活水平的TER,这种相关性较差。聚合酶β的相关性比α更好。两种细胞系之间主要在41和42摄氏度时热敏感性的微小差异无法通过聚合酶失活与TER之间的相关性来解释。热疗与照射之间的孵育导致聚合酶活性恢复和放射增敏作用丧失。热疗后聚合酶β的水平可用于预测低存活水平时放射敏感性的热增强,但可能不适用于辐射存活曲线的肩部区域。在这些比较中可能无法分辨细胞系之间热敏感性的微小差异。

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