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异步和同步化的小鼠神经母细胞瘤细胞经低温孵育后的细胞杀伤及对热休克的敏感性

Cell killing and sensitization to heat shock by hypothermic incubation of asynchronous and synchronized mouse neuroblastoma cells.

作者信息

van Dongen G, Zoutewelle G, van Rijn J, van Wijk R

出版信息

Cancer Res. 1985 Sep;45(9):4132-7.

PMID:4028005
Abstract

The effect of hypothermia on cell survival and on subsequent response to hyperthermia was studied in asynchronous and synchronized Neuro-2A cells. Cell cycle progression was blocked at temperatures below 27 degrees C. Immediately after shift to hypothermic temperatures, cells became more sensitive to hyperthermia. Development of thermosensitization was time and temperature dependent. Thermosensitization of cells by hypothermia was high at 0 degrees C and 15 degrees-30 degrees C and less at 5 degrees-10 degrees C. Sensitization started to occur before hypothermic cell death became manifest and developed gradually. Hypothermic cell death was observed when the cells were incubated for more than 1 day at temperatures of 0 degrees-24 degrees C with a minimal cell death during incubation at 6 degrees C. Thermosensitization of cells by hypothermia depended on the position of the cell in the cell cycle at the time of shift to hypothermic temperatures. Cells in late G1 and early S phase became more thermosensitive than did cells in G1 or late S-G2 phase. Furthermore G1-S cells were more sensitive to prolonged hypothermia alone than were G1 or late S-G2 cells. In contrast, late S-G2 cells were most sensitive to hyperthermia alone. It is concluded that the temperature- and cell cycle-dependent way of hypothermic induced cell death was similar to the thermosensitization of cells by hypothermia. But thermosensitization became manifest prior to the actual cell death, following hypothermic treatment.

摘要

在异步和同步的Neuro-2A细胞中研究了低温对细胞存活以及随后对高温反应的影响。细胞周期进程在低于27摄氏度的温度下被阻断。转移至低温后,细胞立即对高温变得更加敏感。热敏感化的发展与时间和温度有关。低温对细胞的热敏感化在0摄氏度以及15至30摄氏度时较高,而在5至10摄氏度时较低。敏感化在低温细胞死亡显现之前就开始发生并逐渐发展。当细胞在0至24摄氏度下孵育超过1天时观察到低温细胞死亡,在6摄氏度孵育期间细胞死亡最少。低温对细胞的热敏感化取决于转移至低温时细胞在细胞周期中的位置。处于G1晚期和S期早期的细胞比处于G1期或S期晚期至G2期的细胞对热更敏感。此外,G1-S期细胞比G1期或S期晚期至G2期细胞对长时间单独低温更敏感。相比之下,S期晚期至G2期细胞对单独高温最敏感。得出的结论是,低温诱导细胞死亡的温度和细胞周期依赖性方式与低温对细胞的热敏感化相似。但在低温处理后,热敏感化在实际细胞死亡之前就已显现。

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