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多束射线对小鼠软组织和皮肤中 FLASH 效应的影响。

Impact of Multiple Beams on the FLASH Effect in Soft Tissue and Skin in Mice.

机构信息

Department of Radiation Oncology, University of Cincinnati College of Medicine, Cincinnati, Ohio; Cincinnati Children's Hospital Medical Center, Cincinnati, Ohio.

Department of Radiation Oncology, University of Cincinnati College of Medicine, Cincinnati, Ohio.

出版信息

Int J Radiat Oncol Biol Phys. 2024 Jan 1;118(1):253-261. doi: 10.1016/j.ijrobp.2023.07.024. Epub 2023 Aug 2.

Abstract

PURPOSE

FLASH proton pencil beam scanning (p-PBS) showed a reduction in mouse skin toxicity and fibrosis when delivered as a single, uninterrupted, high-dose fraction. Clinical p-PBS treatment usually requires multiple beams to achieve good conformality, and these beams are separated by minutes to allow patient and equipment repositioning. We evaluate the impact of multibeam versus single-beam proton radiation on the FLASH sparing effect on skin toxicity.

METHODS AND MATERIALS

The right hind leg of 10-week-old female C57Bl/6j mice was irradiated using a Varian ProBeam proton beam scanning gantry system at conventional (1 Gy/s) or FLASH (100 Gy/s) average field dose rate. We scored the skin toxicity after different doses for 7 weeks. The treatment was delivered as 1, 2, or 3 equal beams with an interruption of 2 minutes. For each beam delivery, the equipment remained in the same position so that there was a full overlap of beams administered.

RESULTS

Single-beam delivery confirmed a benefit for p-PBS FLASH in this model at 30, 35, and 40 Gy. At 30 and 35 Gy, a single beam interruption of 2 minutes (2 × 15 Gy or 2 × 17.5 Gy) reduced the FLASH sparing effect, which remained significant (P < .001). However, 2 interruptions (3 × 10 Gy or 3 × 11.6 Gy) abrogated the normal tissue sparing effect.

CONCLUSIONS

Our results indicate that the FLASH sparing effect in areas of beam overlap can be compromised by interruptions in delivery time. Time gap between overlapping beams and spatial arrangement of the delivered beams are important parameters for FLASH studies. The effect of multibeam needs to be studied on different organs of interest.

摘要

目的

FLASH 质子铅笔束扫描(p-PBS)在单次、不间断、高剂量分次照射时,可降低小鼠皮肤毒性和纤维化。临床 p-PBS 治疗通常需要多个射束来实现良好的适形性,这些射束之间需要几分钟的时间来允许患者和设备重新定位。我们评估多射束与单射束质子辐射对皮肤毒性的 FLASH 保护效应的影响。

方法和材料

使用瓦里安 ProBeam 质子束扫描龙门系统,以常规(1 Gy/s)或 FLASH(100 Gy/s)平均场剂量率照射 10 周龄雌性 C57Bl/6j 小鼠的右后腿。在 7 周内用不同剂量对皮肤毒性进行评分。治疗以 1、2 或 3 个相等的射束进行,间隔 2 分钟。对于每次射束输送,设备都保持在相同的位置,以使给予的射束完全重叠。

结果

单束照射证实了在该模型中 p-PBS FLASH 在 30、35 和 40 Gy 时的优势。在 30 和 35 Gy 时,2 分钟的单束中断(2×15 Gy 或 2×17.5 Gy)降低了 FLASH 保护效应,这仍然具有显著意义(P<0.001)。然而,2 次中断(3×10 Gy 或 3×11.6 Gy)消除了正常组织保护效应。

结论

我们的结果表明,在射束重叠区域,通过中断输送时间,FLASH 保护效应可能会受到影响。重叠射束之间的时间间隔和输送射束的空间排列是 FLASH 研究的重要参数。需要对不同的感兴趣器官进行多射束的效果研究。

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