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耐热状态:免受初始损伤还是更好地修复?

The thermoresistant state: protection from initial damage or better repair?

作者信息

Laszlo A

机构信息

Division of Radiation Oncology, Mallinckrodt Institute of Radiology, Washington University School of Medicine, St. Louis, Missouri 63108.

出版信息

Exp Cell Res. 1992 Oct;202(2):519-31. doi: 10.1016/0014-4827(92)90107-j.

Abstract

The induction of and recovery from heat-induced perturbations in several cellular parameters were examined in normal, transiently thermotolerant, and permanently heat-resistant HA-1 Chinese hamster fibroblasts. The initial heat-induced perturbations in total cellular protein synthesis, RNA synthesis, vimentin-containing intermediate filaments, and nuclear protein mass were similar in the three different cell types which display various levels of thermal resistance as determined by clonogenic survival. The posthyperthermia recovery from the heat-induced perturbations in all of the cellular parameters was more rapid in both the permanently heat-resistant cells and in the transiently thermotolerant cells. This response was observed in cells in which transient thermotolerance was induced by either a mild heat shock or exposure to sodium arsenite. The development and decay of the capacity for more rapid recovery from the initial heat-induced perturbations in total cellular protein and RNA synthesis paralleled the development and decay of clonogenic thermotolerance. Overall, these results support the notion that more rapid recovery from similar levels of heat-induced perturbations in various cellular parameters are a salient feature of both the transiently and permanently heat-resistant state.

摘要

在正常、短暂耐热和永久耐热的HA-1中国仓鼠成纤维细胞中,研究了热诱导的几种细胞参数扰动的诱导和恢复情况。通过克隆存活确定的三种不同细胞类型,其热抗性水平各不相同,但最初热诱导的总细胞蛋白质合成、RNA合成、含波形蛋白的中间丝和核蛋白质量的扰动相似。在永久耐热细胞和短暂耐热细胞中,热诱导的所有细胞参数扰动在热疗后的恢复都更快。在通过轻度热休克或暴露于亚砷酸钠诱导短暂耐热性的细胞中也观察到了这种反应。从总细胞蛋白质和RNA合成中最初热诱导的扰动中更快恢复的能力的发展和衰退,与克隆耐热性的发展和衰退平行。总体而言,这些结果支持这样一种观点,即在各种细胞参数中,从相似水平的热诱导扰动中更快恢复是短暂和永久耐热状态的一个显著特征。

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