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临床术中放疗电子束能量分布和强度对诱导生物损伤的依赖性。

Dependence of Induced Biological Damage on the Energy Distribution and Intensity of Clinical Intra-Operative Radiotherapy Electron Beams.

机构信息

Servicio de Radiofísica, IRYCIS-Hospital Universitario Ramón y Cajal, Carretera de Colmenar Viejo km 9100, 28034 Madrid, Spain.

Grupo de Aptámeros, Departamento de Bioquímica-Investigación, IRYCIS-Hospital Universitario Ramón y Carretera de Colmenar Viejo km 9100, 28034 Madrid, Spain.

出版信息

Int J Mol Sci. 2023 Jun 28;24(13):10816. doi: 10.3390/ijms241310816.

Abstract

The survival fraction of epithelial HaCaT cells was analysed to assess the biological damage caused by intraoperative radiotherapy electron beams with varying energy spectra and intensities. These conditions were achieved by irradiating the cells at different depths in water using nominal 6 MeV electron beams while consistently delivering a dose of 5 Gy to the cell layer. Furthermore, a Monte Carlo simulation of the entire irradiation procedure was performed to evaluate the molecular damage in terms of molecular dissociations induced by the radiation. A significant agreement was found between the molecular damage predicted by the simulation and the damage derived from the analysis of the survival fraction. In both cases, a linear relationship was evident, indicating a clear tendency for increased damage as the averaged incident electron energy and intensity decreased for a constant absorbed dose, lowering the dose rate. This trend suggests that the radiation may have a more pronounced impact on surrounding healthy tissues than initially anticipated. However, it is crucial to conduct additional experiments with different target geometries to confirm this tendency and quantify the extent of this effect.

摘要

分析上皮 HaCaT 细胞的存活率,以评估术中放疗电子束的生物学损伤,这些电子束的能量谱和强度不同。通过在水中用标称 6 MeV 电子束照射细胞的不同深度,同时始终向细胞层输送 5 Gy 的剂量,实现了这些条件。此外,还对整个照射过程进行了蒙特卡罗模拟,以根据辐射诱导的分子离解来评估分子损伤。模拟预测的分子损伤与存活率分析得出的损伤之间存在显著的一致性。在这两种情况下,都存在线性关系,表明在吸收剂量不变的情况下,平均入射电子能量和强度降低,剂量率降低,损伤明显增加。这一趋势表明,辐射对周围健康组织的影响可能比最初预期的更为显著。然而,必须进行具有不同靶几何形状的额外实验,以确认这一趋势并量化这种影响的程度。

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