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带电粒子治疗中缺氧肿瘤的“杀伤描绘”

Kill-painting of hypoxic tumours in charged particle therapy.

作者信息

Tinganelli Walter, Durante Marco, Hirayama Ryoichi, Krämer Michael, Maier Andreas, Kraft-Weyrather Wilma, Furusawa Yoshiya, Friedrich Thomas, Scifoni Emanuele

机构信息

Biophysics Department, GSI Helmholtzzentrum für Schwerionenforschung, 64291 Darmstadt, Germany.

Research Center for Charged Particle Therapy and International Open Laboratory, National Institute of Radiological Sciences, 263-8555 Chiba, Japan.

出版信息

Sci Rep. 2015 Nov 24;5:17016. doi: 10.1038/srep17016.

Abstract

Solid tumours often present regions with severe oxygen deprivation (hypoxia), which are resistant to both chemotherapy and radiotherapy. Increased radiosensitivity as a function of the oxygen concentration is well described for X-rays. It has also been demonstrated that radioresistance in anoxia is reduced using high-LET radiation rather than conventional X-rays. However, the dependence of the oxygen enhancement ratio (OER) on radiation quality in the regions of intermediate oxygen concentrations, those normally found in tumours, had never been measured and biophysical models were based on extrapolations. Here we present a complete survival dataset of mammalian cells exposed to different ions in oxygen concentration ranging from normoxia (21%) to anoxia (0%). The data were used to generate a model of the dependence of the OER on oxygen concentration and particle energy. The model was implemented in the ion beam treatment planning system to prescribe uniform cell killing across volumes with heterogeneous radiosensitivity. The adaptive treatment plans have been validated in two different accelerator facilities, using a biological phantom where cells can be irradiated simultaneously at three different oxygen concentrations. We thus realized a hypoxia-adapted treatment plan, which will be used for painting by voxel of hypoxic tumours visualized by functional imaging.

摘要

实体瘤通常存在严重缺氧(低氧)区域,这些区域对化疗和放疗均具有抗性。X射线的放射敏感性随氧浓度的增加情况已得到充分描述。研究还表明,与传统X射线相比,使用高传能线密度(LET)辐射可降低缺氧状态下的放射抗性。然而,在肿瘤中常见的中等氧浓度区域,氧增强比(OER)对辐射质量的依赖性从未被测量过,生物物理模型是基于外推法得出的。在此,我们展示了哺乳动物细胞在从常氧(21%)到缺氧(0%)的氧浓度范围内暴露于不同离子时的完整存活数据集。这些数据用于生成一个OER对氧浓度和粒子能量依赖性的模型。该模型已应用于离子束治疗计划系统,以在具有异质放射敏感性的体积内规定均匀的细胞杀伤。自适应治疗计划已在两个不同的加速器设施中得到验证,使用了一种生物体模,可以在三种不同的氧浓度下同时对细胞进行照射。因此,我们实现了一种针对低氧情况的适应性治疗计划,该计划将用于对通过功能成像可视化的低氧肿瘤进行体素扫描。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5cce/4657060/622bd7059314/srep17016-f1.jpg

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