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热疗和中子辐射对CaNT肿瘤中酸性磷酸酶活性影响的改变

Modification of the effects of hyperthermia and neutron radiation on the activity of acid phosphatase in CaNT tumors.

作者信息

Szeinfeld D, de Villiers N, Wynchank S

机构信息

Research Institute for Medical Biophysics, Medical Research Council, Tygerberg, South Africa.

出版信息

Cancer Biochem Biophys. 1992 May;12(4):253-61.

PMID:1423211
Abstract

Acid phosphatase activity was measured in implanted murine CaNT tumors of varying volumes. There is a clear monotonically increasing relation between acid phosphatase activity and tumor volume. Also the tumors were subjected to either induced artificial hypoxia or hyperthermia (41.0 degrees C) alone, or combined with neutron irradiation (3.8 Gy). Changes in the activity of this enzyme following radiation damage could reflect tissue damage associated with metabolic disturbances. The effect on enzyme activity after sequential hyperthermia and neutron irradiation is not synergistic, as is shown in the quantitative experimental data. This implies that the mechanisms of heat damage differ from that of neutron beam damage, as reflected by acid phosphatase activity. The CaNT tumor was also shown to be thermosensitive after administration of mitoxantrone. Finally, the role of exogenous ATP was shown to provide heat protection by modification of those thermal effects resulting in the activity of acid phosphatase. The augmentation of this hydrolytic enzyme probably represents initial metabolic damage in the tumor after different modalities of radiation alone, or combined with mitoxantrone and exogenous ATP.

摘要

在不同体积的植入性小鼠CaNT肿瘤中测量了酸性磷酸酶活性。酸性磷酸酶活性与肿瘤体积之间存在明显的单调递增关系。此外,肿瘤分别接受诱导性人工缺氧或单独的热疗(41.0摄氏度),或与中子照射(3.8 Gy)联合使用。辐射损伤后该酶活性的变化可能反映与代谢紊乱相关的组织损伤。如定量实验数据所示,序贯热疗和中子照射后对酶活性的影响并非协同作用。这意味着热损伤机制与中子束损伤机制不同,酸性磷酸酶活性反映了这一点。米托蒽醌给药后,CaNT肿瘤也显示出对热敏感。最后,外源性ATP的作用表明通过改变导致酸性磷酸酶活性的热效应来提供热保护。这种水解酶的增加可能代表了仅采用不同辐射方式后,或与米托蒽醌和外源性ATP联合使用后肿瘤中的初始代谢损伤。

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