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黄酮醋酸与热疗联合使用时可增强丝裂霉素C的细胞毒性。

Flavone acetic acid increases the cytotoxicity of mitomycin C when combined with hyperthermia.

作者信息

Takeuchi H, Baba H, Maehara Y, Sugimachi K, Newman R A

机构信息

Cancer Center of Kyushu University Hospital, Fukuoka, Japan.

出版信息

Cancer Chemother Pharmacol. 1996;38(1):1-8. doi: 10.1007/s002800050439.

Abstract

Flavone acetic acid (FAA, NSC 347512) is known to selectively reduce tumor blood flow. Taking advantage of this pharmacodynamic effect, we have previously shown that FAA in combination with hyperthermia (HT) can produce a marked improvement in antitumor response in mice. In the present study, we investigated whether FAA could increase the cytotoxicity of mitomycin C (MMC), a bioreductive drug with selective cytotoxicity against hypoxic cells, under either normothermic or hyperthermic conditions. In vitro, the cytotoxicity of MMC against B16 melanoma cells was not enhanced with exposure to FAA at concentrations less than 100 microgram/ml, even when combined with HT (43 degrees C, 60 min). The cytotoxicity of MMC (1 microgram/ml) at pH 6.5, however, was enhanced by exposure of cells to hypoxia in combination with HT. In vivo, the tumor growth time, calculated as the time required to double the initial tumor volume, was 5.2, 6.8, 8.5, and 15.0 days with FAA (150 mg/kg) alone, MMC (4 mg/kg) alone, FAA + MMC, or FAA + MMC + HT (43 degrees C, 15 min) treatment groups, respectively. Antitumor response obtained in animals treated with FAA plus MMC with HT was clearly better than that obtained in any of the other groups. Scheduling of FAA, MMC, and HT was found to be important in producing optimal antitumor response. Administration of MMC (4 mg/kg) prior to FAA (150 mg/kg) and subsequent HT treatment was superior to administration of FAA before MMC. In an attempt to explain these findings, the influence of FAA on blood flow in skeletal muscle and in tumor was examined using a laser blood flowmeter. FAA administration to mice produced a 75% reduction in blood flow to the tumor for up to 2 h but had no detectable effect on normal skeletal blood flow. Our current explanation of the increased antitumor response achieved with the combination of MMC, FAA, and HT is as follows. The FAA-mediated decrease in blood flow to the tumor, when combined with HT, may produce sufficiently hypoxic conditions to significantly increase the antitumor efficacy of the bioreductive drug, MMC. We believe that clinical testing of this combined drug treatment with hyperthermia is warranted.

摘要

黄酮醋酸(FAA,NSC 347512)已知可选择性地减少肿瘤血流。利用这一药效学效应,我们之前已表明FAA与热疗(HT)联合应用可使小鼠的抗肿瘤反应显著改善。在本研究中,我们调查了FAA在常温或热疗条件下是否能增强丝裂霉素C(MMC)的细胞毒性,MMC是一种对缺氧细胞具有选择性细胞毒性的生物还原药物。在体外,当暴露于浓度低于100微克/毫升的FAA时,即使与热疗(43℃,60分钟)联合使用,MMC对B16黑色素瘤细胞的细胞毒性也未增强。然而,在pH 6.5时,MMC(1微克/毫升)的细胞毒性通过使细胞暴露于缺氧并联合热疗而增强。在体内,以初始肿瘤体积翻倍所需时间计算的肿瘤生长时间,单独使用FAA(150毫克/千克)、单独使用MMC(4毫克/千克)、FAA + MMC或FAA + MMC + 热疗(43℃,15分钟)治疗组分别为5.2天、6.8天、8.5天和15.0天。用FAA加MMC并联合热疗治疗的动物所获得的抗肿瘤反应明显优于其他任何一组。发现FAA、MMC和热疗的给药方案对于产生最佳抗肿瘤反应很重要。在FAA(150毫克/千克)之前给予MMC(4毫克/千克)并随后进行热疗优于在MMC之前给予FAA。为了解释这些发现,使用激光血流仪检查了FAA对骨骼肌和肿瘤中血流的影响。给小鼠施用FAA可使肿瘤血流减少75%,持续长达2小时,但对正常骨骼肌血流没有可检测到的影响。我们目前对MMC、FAA和热疗联合应用所实现的抗肿瘤反应增强的解释如下。FAA介导的肿瘤血流减少,与热疗联合时,可能产生足够的缺氧条件,从而显著提高生物还原药物MMC的抗肿瘤功效。我们认为这种联合药物治疗与热疗的临床试验是有必要的。

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