Oike Takahiro, Niimi Atsuko, Okonogi Noriyuki, Murata Kazutoshi, Matsumura Akihiko, Noda Shin-Ei, Kobayashi Daijiro, Iwanaga Mototaro, Tsuchida Keisuke, Kanai Tatsuaki, Ohno Tatsuya, Shibata Atsushi, Nakano Takashi
Department of Radiation Oncology, Gunma University Graduate School of Medicine, 3-39-22, Showa-machi, Maebashi, Gunma, 371-8511, Japan.
Gunma University Heavy Ion Medical Center, 3-39-22, Showa-machi, Maebashi, Gunma, 371-8511, Japan.
Sci Rep. 2016 Mar 1;6:22275. doi: 10.1038/srep22275.
Carbon ion radiotherapy shows great potential as a cure for X-ray-resistant tumors. Basic research suggests that the strong cell-killing effect induced by carbon ions is based on their ability to cause complex DNA double-strand breaks (DSBs). However, evidence supporting the formation of complex DSBs in actual patients is lacking. Here, we used advanced high-resolution microscopy with deconvolution to show that complex DSBs are formed in a human tumor clinically treated with carbon ion radiotherapy, but not in a tumor treated with X-ray radiotherapy. Furthermore, analysis using a physics model suggested that the complexity of radiotherapy-induced DSBs is related to linear energy transfer, which is much higher for carbon ion beams than for X-rays. Visualization of complex DSBs in clinical specimens will help us to understand the anti-tumor effects of carbon ion radiotherapy.
碳离子放射疗法在治疗抗X射线肿瘤方面显示出巨大潜力。基础研究表明,碳离子诱导的强大细胞杀伤效应基于其导致复杂DNA双链断裂(DSB)的能力。然而,缺乏支持在实际患者中形成复杂DSB的证据。在此,我们使用先进的去卷积高分辨率显微镜显示,在接受碳离子放射治疗的临床人类肿瘤中形成了复杂DSB,但在接受X射线放射治疗的肿瘤中未形成。此外,使用物理模型的分析表明,放射治疗诱导的DSB的复杂性与线性能量传递有关,碳离子束的线性能量传递远高于X射线。临床标本中复杂DSB的可视化将有助于我们理解碳离子放射疗法的抗肿瘤作用。