Magnon Claire, Opolon Paule, Ricard Marcel, Connault Elisabeth, Ardouin Patrice, Galaup Ariane, Métivier Didier, Bidart Jean-Michel, Germain Stéphane, Perricaudet Michel, Schlumberger Martin
CNRS-UMR 8121, Laboratoire de vectorologie et transfert de gènes, Département de Médecine Nucléaire, Villejuif, France.
J Clin Invest. 2007 Jul;117(7):1844-55. doi: 10.1172/JCI30269.
Tumor radioresponsiveness depends on endothelial cell death, which leads in turn to tumor hypoxia. Radiation-induced hypoxia was recently shown to trigger tumor radioresistance by activating angiogenesis through hypoxia-inducible factor 1-regulated (HIF-1-regulated) cytokines. We show here that combining targeted radioiodide therapy with angiogenic inhibitors, such as canstatin, enhances direct tumor cell apoptosis, thereby overcoming radio-induced HIF-1-dependent tumor survival pathways in vitro and in vivo. We found that following dual therapy, HIF-1alpha increases the activity of the canstatin-induced alpha(v)beta(5) signaling tumor apoptotic pathway and concomitantly abrogates mitotic checkpoint and tetraploidy triggered by radiation. Apoptosis in conjunction with mitotic catastrophe leads to lethal tumor damage. We discovered that HIF-1 displays a radiosensitizing activity that is highly dependent on treatment modalities by regulating key apoptotic molecular pathways. Our findings therefore support a crucial role for angiogenesis inhibitors in shifting the fate of radiation-induced HIF-1alpha activity from hypoxia-induced tumor radioresistance to hypoxia-induced tumor apoptosis. This study provides a basis for developing new biology-based clinically relevant strategies to improve the efficacy of radiation oncology, using HIF-1 as an ally for cancer therapy.
肿瘤放射反应性取决于内皮细胞死亡,而这反过来又会导致肿瘤缺氧。最近研究表明,辐射诱导的缺氧通过缺氧诱导因子1调节(HIF-1调节)的细胞因子激活血管生成,从而引发肿瘤放射抗性。我们在此表明,将靶向放射性碘治疗与血管生成抑制剂(如canstatin)联合使用,可增强直接肿瘤细胞凋亡,从而在体外和体内克服辐射诱导的HIF-1依赖性肿瘤存活途径。我们发现,双重治疗后,HIF-1α增加了canstatin诱导的α(v)β(5)信号传导肿瘤凋亡途径的活性,并同时消除了由辐射触发的有丝分裂检查点和四倍体。凋亡与有丝分裂灾难共同导致致命的肿瘤损伤。我们发现,HIF-1通过调节关键的凋亡分子途径,表现出高度依赖于治疗方式的放射增敏活性。因此,我们的研究结果支持血管生成抑制剂在将辐射诱导的HIF-1α活性的命运从缺氧诱导的肿瘤放射抗性转变为缺氧诱导的肿瘤凋亡方面发挥关键作用。本研究为开发新的基于生物学的临床相关策略提供了基础,以提高放射肿瘤学的疗效,将HIF-1作为癌症治疗的盟友。