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Abscopal effect of radiation therapy: Interplay between radiation dose and p53 status

机译:放射治疗的绝对效果:放射剂量与p53状态之间的相互作用

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Purpose: This study investigates whether the abscopal effect induced by radiation-therapy (RT) is able to sterilize non-irradiated tumour cells through bystander signals. Material and methods: Wild-type (wt)-p53 or p53-null HCT116 human colon cancer cells were xenografted into both flanks of athymic female nude mice. When tumours reached a volume of 0.2 cm3, irradiation was performed, under strict dose monitoring, with a dedicated mobile accelerator designed for intra-Operative-RT (IORT). A dose of 10 or 20 Gy (IR groups), delivered by a 10 MeV electron beam, was delivered to a tumour established in one side flank, leaving the other non-irradiated (NIR groups). A subset of mice were sacrificed early on to carry out short-term molecular analyses. Results: All directly-irradiated tumours, showed a dose-dependent delayed and reduced regrowth, independent of the p53 status. Importantly, a significant effect on tumour-growth inhibition was also demonstrated in NIR wt-p53 tumours in the 20 Gy-irradiation group, with a moderate effect also evident after 10 Gy-irradiation. In contrast, no significant difference was observed in the NIR p53-null tumours, independent of the dose delivered. Molecular analyses indicate that p53-dependent signals might be responsible for the abscopal effect in our model system, via a pro-apoptotic pathway. Conclusions: We suggest that the interplay between delivered dose and p53 status might help to sterilize out-of-field tumour cells.
机译:目的:本研究调查了放疗(RT)诱导的抽象作用是否能够通过旁观者信号对未辐射的肿瘤细胞进行灭菌。材料和方法:将野生型(wt)-p53或p53-null HCT116人结肠癌细胞异种移植到无胸腺雌性裸鼠的两个侧面。当肿瘤的体积达到0.2 cm3时,在严格的剂量监测下,使用专门为术中RT(IORT)设计的专用移动加速器进行照射。由10 MeV电子束递送的10或20 Gy剂量(IR组)被递送至一侧侧面建立的肿瘤,而另一侧未照射(NIR组)。早期处死一部分小鼠以进行短期分子分析。结果:所有直接照射的肿瘤均显示剂量依赖性延迟和减少的再生长,而与p53状态无关。重要的是,在20 Gy辐照组中,在NIR wt-p53肿瘤中也显示出对肿瘤生长抑制的显着效果,在10 Gy辐照后也有中度效果。相反,在NIR p53-null肿瘤中未观察到显着差异,与所递送的剂量无关。分子分析表明,p53依赖性信号可能通过促凋亡途径在我们的模型系统中发挥了重要作用。结论:我们认为,给药剂量和p53状态之间的相互作用可能有助于对场外肿瘤细胞进行灭菌。

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