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正常组织和肿瘤组织中的热耐受性动力学:综述

Kinetics of thermotolerance in normal and tumor tissues: a review.

作者信息

Urano M

出版信息

Cancer Res. 1986 Feb;46(2):474-82.

PMID:3510074
Abstract

Thermotolerance is a phenomenon in which cells become resistant to elevated temperatures as a result of prior or continuous exposure to hyperthermia. Thermotolerant cells exhibit a decreased slope of the cell survival curve. Recent studies disclosed that thermotolerance developed in rodent tumors and normal tissues as well. Thermotolerance develops during the treatment at a temperature below approximately equal to 43.0 degrees C, or it develops rapidly after the first heat treatment. The decay of thermotolerance is slow and is incomplete over 7 days in many normal tissues, while it appears to be completed in murine tumors. The kinetics of thermotolerance is modified by various factors. In general, the greater the initial heat damage (independently of temperature), the greater is the magnitude of thermotolerance and the longer is the time to reach maximum and the time to decay. Although thermotolerance develops less extensively in cultured cells in low pH medium and the average tumor tissue pH is lower than the normal tissue pH, the magnitude of thermotolerance in tumors thus far examined is at least equal to that in the normal tissues. Data on the interaction between thermotolerance and radiosensitivity are contradictory, although thermotolerance appears to reduce thermal radiosensitization. The kinetics of reduced sensitization is similar to that of thermotolerance. The interaction between chemotherapeutic agents and thermotolerance appears to depend on the drug and the temperature. Experimental data on this topic are still sparse and extensive studies are required.

摘要

热耐受性是一种细胞现象,由于先前或持续暴露于高温,细胞对升高的温度产生抗性。耐热细胞的细胞存活曲线斜率降低。最近的研究表明,啮齿动物的肿瘤和正常组织中也会产生热耐受性。热耐受性在温度低于约43.0摄氏度的治疗过程中产生,或者在首次热处理后迅速产生。在许多正常组织中,热耐受性的衰减缓慢,7天内不完全,而在小鼠肿瘤中似乎完成。热耐受性的动力学受到各种因素的影响。一般来说,初始热损伤越大(与温度无关),热耐受性的程度就越大,达到最大值的时间和衰减时间就越长。尽管在低pH培养基中培养的细胞中热耐受性发展程度较低,且肿瘤组织的平均pH低于正常组织的pH,但迄今为止所检测的肿瘤中的热耐受性程度至少与正常组织中的相等。尽管热耐受性似乎会降低热放射增敏作用,但关于热耐受性与放射敏感性之间相互作用的数据相互矛盾。放射增敏作用降低的动力学与热耐受性相似。化疗药物与热耐受性之间的相互作用似乎取决于药物和温度。关于这一主题的实验数据仍然很少,需要进行广泛的研究。

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