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Targeting Apoptosis by Hydroxymethylacylfulvene in Combination with Gamma Radiation in Prostate Tumor Cells

细胞凋亡 克隆形成试验 癌症研究 前列腺癌 辐射敏感性 前列腺 生物 流式细胞术 程序性细胞死亡 医学 癌症 免疫学 放射治疗 内科学 生物化学
作者
Barbara Woynarowska,Kari Roberts,Jan M. Woynarowski,John R. MacDonald,Terence S. Herman
出处
期刊:Radiation Research [Radiation Research Society]
卷期号:154 (4): 429-438 被引量:24
标识
DOI:10.1667/0033-7587(2000)154[0429:tabhic]2.0.co;2
摘要

Woynarowska, B. A., Roberts, K., Woynarowski, J. M., MacDonald, J. R. and Herman, T. S. Targeting Apoptosis by Hydroxymethylacylfulvene in Combination with Gamma Radiation in Prostate Tumor Cells.Hydroxymethylacylfulvene (HMAF) is a novel agent with alkylating activity and is a potent inducer of apoptosis that is currently undergoing Phase II clinical trials for prostate cancer. This study explored the pro-apoptosis and anti-proliferative potential of HMAF in combination with γ radiation in human prostate tumor cell lines. Apoptosis was assessed based on the generation of fragmented DNA, a terminal transferase flow cytometry assay, and cell morphology. In each of the tumor cell lines examined, radiation alone induced a marginal level of apoptosis, even after a prolonged 48-h incubation after exposure. In contrast, HMAF alone was a potent inducer of apoptosis in prostate tumor cells but not in normal cells. Marked levels of apoptosis in tumor cells were also observed for the combination of HMAF with γ radiation. When drug treatment preceded irradiation, at least additive levels of apoptosis were observed in both androgen-responsive and androgen-independent cells. The combined treatment with ionizing radiation and HMAF reduced the radiation dose needed for the same level of clonogenic survival up to 2.5-fold. The potentiation of apoptosis and reduction in the clonogenic survival of tumor cells occurred at HMAF concentrations lower than that which reduced survival to 10% and at doses up to 6 Gy. No potentiation of apoptosis or clonogenic inhibition was noted in normal cells. These results suggest that the combination of HMAF with γ radiation may have clinical utility for treatments of prostate cancer.
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