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丝裂霉素C和卟吩姆钠对指数生长期和平稳期培养物的影响。

Effects of mitomycin C and porfiromycin on exponentially growing and plateau phase cultures.

作者信息

Rockwell S, Hughes C S

机构信息

Department of Therapeutic Radiology, Yale University School of Medicine, New Haven, CT 06520-8040, USA.

出版信息

Cell Prolif. 1994 Mar;27(3):153-63. doi: 10.1111/j.1365-2184.1994.tb01413.x.

Abstract

Laboratory studies and clinical trials are exploring the use of hypoxia-directed cytotoxic agents as adjuncts to radiotherapy. Because hypoxia and the microenvironmental inadequacies associated with hypoxia in solid tumours inhibit cell proliferation, an essential requirement for the successful use of hypoxia-directed drugs in cancer therapy is that these drugs be toxic to quiescent tumour cells, as well as tumour cells progressing rapidly through the cell cycle. The experiments reported here compared the cytotoxicities of mitomycin C and porfiromycin to exponentially growing and plateau phase cultures of EMT6 mouse mammary tumour cells. The proliferative status of the cultures did not influence the cytotoxicity of mitomycin C under either aerobic or hypoxic conditions, or the cytotoxicity of porfiromycin in air. Exponentially growing cultures were slightly more sensitive than plateau phase cultures to porfiromycin in hypoxia, but the difference between the sensitivities of proliferating and quiescent cells was much smaller than the difference between aerobic and hypoxic cells. No evidence for repair of potentially lethal damage was found after treatment with porfiromycin in air or in hypoxia; this is in agreement with previous findings for mitomycin C. Mitomycin C and porfiromycin therefore exhibit the toxicity to quiescent cells needed for effective use as hypoxia-directed drugs for the treatment of solid tumours.

摘要

实验室研究和临床试验正在探索使用低氧导向细胞毒性药物作为放射治疗的辅助手段。由于实体瘤中的低氧以及与低氧相关的微环境缺陷会抑制细胞增殖,因此在癌症治疗中成功使用低氧导向药物的一个基本要求是这些药物对静止的肿瘤细胞以及在细胞周期中快速进展的肿瘤细胞具有毒性。本文报道的实验比较了丝裂霉素C和卟吩姆钠对EMT6小鼠乳腺肿瘤细胞指数生长期和平稳期培养物的细胞毒性。培养物的增殖状态在有氧或低氧条件下均不影响丝裂霉素C的细胞毒性,也不影响空气中卟吩姆钠的细胞毒性。在低氧条件下,指数生长期培养物对卟吩姆钠的敏感性略高于平稳期培养物,但增殖细胞和静止细胞敏感性之间的差异远小于有氧细胞和低氧细胞之间的差异。在用空气中或低氧条件下的卟吩姆钠处理后,未发现潜在致死性损伤修复的证据;这与先前关于丝裂霉素C的研究结果一致。因此,丝裂霉素C和卟吩姆钠对静止细胞具有毒性,这是作为低氧导向药物有效治疗实体瘤所必需的。

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