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首页> 外文期刊>International Journal of Medical Physics, Clinical Engineering and Radiation Oncology >Comparative Study of Experimental Enhancement in Free Radical Generation against Monte Carlo Modeled Enhancement in Radiation Dose Deposition Due to the Presence of High Z Materials during Irradiation of Aqueous Media
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Comparative Study of Experimental Enhancement in Free Radical Generation against Monte Carlo Modeled Enhancement in Radiation Dose Deposition Due to the Presence of High Z Materials during Irradiation of Aqueous Media

机译:自由基产生的实验增强与水介质辐照过程中由于高Z材料的存在导致的辐射剂量沉积增强的蒙特卡罗模拟增强的比较研究

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Purpose: To investigate conflicting results demonstrating higher cell-kill by irradiated high atomic number (Z) material, gold (Au) in tumor compared to Monte Carlo (MC) modeled enhancement in radiation dose deposition, and to compare the difference between radiosensitizing effects of gold and platinum. Methods and Materials: Since a majority of cell kill due to radiation is mediated by free radicals, evaluation of radicals generated from radiolysis of an aqueous medium can provide some insight into cell-kill. Here, free radicals generated due to the radiolysis of water by a clinical Iridium-192 (Ir-192) brachytherapy source in the presence and absence of thin and pure gold or platinum wires were quantified with electron paramagnetic/spin resonance (EPR/ESR) spectrometry and enhancements in free radical generation due to the presence of the wires during radiolysis were calculated. Those enhancements were compared against MC modeled enhancement in radiation dose deposition obtained from the geometry replicating the experimental setup. Results: Enhancements in free radical generation due to 100 and 127 μm diameter gold wires, and 127 μm diameter platinum wire were more than two times higher than the corresponding MC modeled enhancements in radiation dose deposition. Enhancement in hydroxyl free radical (OH?) generation due to thicker wires of gold and platinum were close to the enhancements in radiation dose deposition. The effects were similar for gold and platinum wires of equal diameter. Conclusions: Higher enhancement in radical generation compared to MC modeled enhancement in radiation dose deposition due to micron-size pure gold and platinum wires demonstrates that the surfaces of high Z materials in aqueous media become a secondary source of radicals under radiation field. High surface-to-volume ratio of nanoparticles can make this effect more pronounced, leading to higher cell kill than the predictions based on pure dose enhancement.
机译:目的:研究与用蒙特卡洛(MC)建模的辐射剂量沉积增强方法相比,用高原子序数(Z)材料,金(Au)照射肿瘤具有更高的细胞杀伤力的矛盾结果,并比较两种药物的放射致敏作用之间的差异黄金和白金。方法和材料:由于辐射引起的大多数细胞杀伤是由自由基介导的,因此对由水介质的辐射分解产生的自由基进行评估可以为细胞杀伤提供一些见识。在此,利用电子顺磁/自旋共振(EPR / ESR)对存在和不存在细的纯金或铂金丝的情况下,临床Iridium-192(Ir-192)近距离放射治疗源对水进行放射分解产生的自由基进行了定量光谱分析和辐射分解过程中由于导线的存在而导致的自由基产生的增强。将这些增强与从模仿实验设置的几何结构获得的MC模型在辐射剂量沉积中的增强进行了比较。结果:由于直径和直径分别为100和127μm的金丝以及直径为127μm的铂丝,自由基生成的增强比相应的MC模型在辐射剂量沉积方面的增强高出两倍以上。由于较粗的金和铂丝,羟基自由基(OH +)生成的增强接近于辐射剂量沉积的增强。对于相同直径的金线和铂线,效果相似。结论:由于微米尺寸的纯金和铂丝,与MC模拟的辐射剂量沉积增强相比,自由基产生的增强更高,这表明水性介质中高Z材料的表面成为辐射场下自由基的第二来源。纳米粒子的高表面积体积比可使这种效应更加明显,从而导致细胞杀伤力高于基于纯剂量增加的预测。

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