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用体内31P-核磁共振波谱法研究肼屈嗪诱导的血管舒张对小鼠肿瘤能量代谢的影响。

Effects of hydralazine-induced vasodilation on the energy metabolism of murine tumors studied by in vivo 31P-nuclear magnetic resonance spectroscopy.

作者信息

Okunieff P, Kallinowski F, Vaupel P, Neuringer L J

机构信息

Department of Radiation Medicine, Massachusetts General Hospital, Boston 02114.

出版信息

J Natl Cancer Inst. 1988 Jul 20;80(10):745-50. doi: 10.1093/jnci/80.10.745.

Abstract

The effects of hydralazine on tumor energy metabolism and on some cardiovascular parameters were measured. Tumor energy metabolism was studied in C3Hf/Sed mice with isotransplants of a spontaneous murine fibrosarcoma (FSaII, congruent to 100 mm3 in volume) and 31P-NMR. Cardiovascular parameters were measured in anesthetized C3Hf/Sed mice via intracarotid catheter. Hydralazine doses of 0.25 mg/kg given ip caused an increase of the phosphocreatine to inorganic phosphate ratio (PCr: Pi) in 5 of 6 animals. These doses had minimal effects on mean arterial blood pressure, though there may have been an increased cardiac output due to a decreased afterload. Hydralazine doses greater than or equal to 2.0 mg/kg given ip were associated with a decrease in PCr, nucleotide triphosphate, and pH, and an increase in Pi (P less than .01 for control vs. 10 mg hydralazine/kg). This substantial decrease in high-energy phosphates was associated with a pronounced decrement in mean arterial blood pressure. These findings provide a rational basis for the study in experimental systems of hydralazine-induced enhancement of cell killing by hyperthermia and by agents toxic to hypoxic cells. Further, these results can be taken as a sign that hydralazine should be used with care in patients undergoing radiation treatment.

摘要

测定了肼屈嗪对肿瘤能量代谢和一些心血管参数的影响。在移植了自发性小鼠纤维肉瘤(FSaII,体积约100立方毫米)的同基因C3Hf/Sed小鼠中,利用31P-NMR研究肿瘤能量代谢。通过颈内动脉插管在麻醉的C3Hf/Sed小鼠中测量心血管参数。腹腔注射0.25毫克/千克的肼屈嗪剂量使6只动物中的5只磷酸肌酸与无机磷酸盐的比率(PCr:Pi)升高。这些剂量对平均动脉血压影响极小,不过由于后负荷降低可能使心输出量增加。腹腔注射大于或等于2.0毫克/千克的肼屈嗪剂量与PCr、三磷酸核苷酸和pH值降低以及Pi升高相关(与10毫克/千克肼屈嗪相比,对照组P<0.01)。高能磷酸盐的这种显著降低与平均动脉血压的明显下降相关。这些发现为在实验系统中研究肼屈嗪诱导的热疗和对缺氧细胞有毒性的药物增强细胞杀伤作用提供了合理依据。此外,这些结果可被视为一个信号,即接受放射治疗的患者应谨慎使用肼屈嗪。

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