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具有降低的线性能量传递依赖性的放射荧光纳米粘土凝胶剂量计,用于碳离子束放射治疗。

Radio-fluorogenic nanoclay gel dosimeters with reduced linear energy transfer dependence for carbon-ion beam radiotherapy.

机构信息

Department of Chemistry, School of Science, Kitasato University, Sagamihara, Kanagawa, Japan.

RIKEN Nishina Center for Accelerator-Based Science, Wako, Saitama, Japan.

出版信息

Med Phys. 2023 Feb;50(2):1073-1085. doi: 10.1002/mp.16092. Epub 2022 Nov 29.

Abstract

PURPOSE

The precise assessment of the dose distribution of high linear energy transfer (LET) radiation remains a challenge, because the signal of most dosimeters will be saturated due to the high ionization density. Such measurements are particularly important for heavy-ion beam cancer therapy. On this basis, the present work examined the high LET effect associated with three-dimensional gel dosimetry based on radiation-induced chemical reactions. The purpose of this study was to create an ion beam radio-fluorogenic gel dosimeter with a reduced effect of LET.

METHODS

Nanoclay radio-fluorogenic gel (NC-RFG) dosimeters were prepared, typically containing 100 μM dihydrorhodamine 123 (DHR123) and 2.0 wt% nanoclay together with catalytic additives promoting Fenton or Fenton-like reactions. The radiological properties of NC-RFG dosimeters having different compositions in response to a carbon-ion beam were investigated using a fluorescence gel scanner.

RESULTS

An NC-RFG dosimeter capable of generating a fluorescence intensity distribution reflecting the carbon-ion beam dose profile was obtained. It was clarified that the reduction of the unfavorable LET dependence results from an acceleration of the reactions between DHR123 and H O , which is a molecular radiolysis product. The effects of varying the preparation conditions on the radiological properties of these gels were also examined. The optimum H O catalyst was determined to include 1 mM Fe ions, and the addition of 100 mM pyridine was also found to increase the sensitivity.

CONCLUSIONS

This technique allows the first-ever evaluation of the depth-dose profile of a carbon-ion beam at typical therapeutic levels of several Gy without LET effect.

摘要

目的

由于高电离密度,大多数剂量计的信号会饱和,因此精确评估高线性能量转移(LET)辐射的剂量分布仍然是一个挑战。这种测量对于重离子束癌症治疗尤其重要。在此基础上,本工作研究了基于辐射诱导化学反应的三维凝胶剂量测定中的高 LET 效应。本研究的目的是创建一种 LET 效应降低的离子束放射荧光凝胶剂量计。

方法

制备纳米粘土放射荧光凝胶(NC-RFG)剂量计,通常包含 100 μM 二氢罗丹明 123(DHR123)和 2.0wt%纳米粘土以及促进芬顿或类芬顿反应的催化添加剂。使用荧光凝胶扫描仪研究了具有不同组成的 NC-RFG 剂量计对碳离子束的放射性质。

结果

获得了能够产生反映碳离子束剂量分布的荧光强度分布的 NC-RFG 剂量计。结果表明,不利的 LET 依赖性的降低是由于 DHR123 和 H O 之间的反应加速所致,H O 是一种分子辐射分解产物。还研究了改变这些凝胶的制备条件对放射性质的影响。确定最佳的 H O 催化剂包括 1mM Fe 离子,并且还发现添加 100mM 吡啶可以提高灵敏度。

结论

该技术允许首次在典型的治疗剂量(几个 Gy)下评估碳离子束的深度剂量分布,而没有 LET 效应。

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