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咖啡因在低剂量率γ射线照射HL-60细胞后诱导第二波细胞凋亡。

Caffeine induces a second wave of apoptosis after low dose-rate gamma radiation of HL-60 cells.

作者信息

Vávrová Jirina, Mareková-Rezácová Martina, Vokurková Doris, Szkanderová Sylva, Psutka Jan

机构信息

Institute of Radiobiology and Immunology, Purkyne Military Medical Academy, Trebesská 1575, 50001 Hradec Králové, Czech Republic.

出版信息

Radiat Environ Biophys. 2003 Oct;42(3):193-9. doi: 10.1007/s00411-003-0209-4. Epub 2003 Oct 21.

Abstract

Most cell lines that lack functional p53 protein are arrested in the G(2) phase of the cell cycle due to DNA damage. It was previously found that the human promyelocyte leukemia cells HL-60 (TP53 negative) that had been exposed to ionizing radiation at doses up to 10 Gy were arrested in the G(2) phase for a period of 24 h. The radioresistance of HL-60 cells that were exposed to low dose-rate gamma irradiation of 3.9 mGy/min, which resulted in a pronounced accumulation of the cells in the G(2) phase during the exposure period, increased compared with the radioresistance of cells that were exposed to a high dose-rate gamma irradiation of 0.6 Gy/min. The D(0) value (i.e. the radiation dose leading to 37% cell survival) for low dose-rate radiation was 3.7 Gy and for high dose-rate radiation 2.2 Gy. In this study, prevention of G(2) phase arrest by caffeine (2 mM) and irradiation of cells with low dose-rate irradiation in all phases of the cell cycle proved to cause radiosensitization (D(0)=2.2 Gy). The irradiation in the presence of caffeine resulted in a second wave of apoptosis on days 5-7 post-irradiation. Caffeine-induced apoptosis occurring later than day 7 post-irradiation is postulated to be a result of unscheduled DNA replication and cell cycle progress.

摘要

大多数缺乏功能性p53蛋白的细胞系由于DNA损伤而停滞在细胞周期的G(2)期。先前发现,人类早幼粒细胞白血病细胞HL-60(TP53阴性)在接受高达10 Gy的电离辐射后,会在G(2)期停滞24小时。暴露于3.9 mGy/分钟低剂量率伽马辐射的HL-60细胞,在暴露期间细胞在G(2)期明显积累,与暴露于0.6 Gy/分钟高剂量率伽马辐射的细胞相比,其辐射抗性增加。低剂量率辐射的D(0)值(即导致37%细胞存活的辐射剂量)为3.7 Gy,高剂量率辐射为2.2 Gy。在本研究中,用咖啡因(2 mM)预防G(2)期停滞,并在细胞周期的所有阶段用低剂量率辐射照射细胞,证明会导致放射增敏(D(0)=2.2 Gy)。在咖啡因存在下进行辐射,在辐射后第5至7天导致第二波细胞凋亡。推测辐射后第7天以后发生的咖啡因诱导的细胞凋亡是由于DNA的非预定复制和细胞周期进程所致。

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