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用于人眼肿瘤近距离治疗的纳米粒子分布建模

Distribution modeling of nanoparticles for brachytherapy of human eye tumor.

作者信息

Masoudi S Farhad, Daryabari Fahimeh S, Rasouli Fatemeh S

机构信息

Department of Physics, K.N. Toosi University of Technology, P.O. Box 15875-4416, Tehran, Iran.

出版信息

EJNMMI Phys. 2020 Aug 20;7(1):53. doi: 10.1186/s40658-020-00321-y.

Abstract

BACKGROUND

Due to their unique properties, gold nanoparticles (GNPs) have been proposed to be used for a wide range of applications, especially for photon radiation therapy. In addition to experimental works, there are worthwhile simulation-based studies focused on the investigation of the effect of parameters governing the dose enhancement due to the presence of GNPs in tissue. In a recently published study, we found that the distribution of GNPs in a single cell plays an important role in nucleus dose enhancement.

METHODS

The present work investigates the sensitivity of dose enhancement of a macroscopic phantom to the modeling of GNPs at the cellular level by using the MCNPX Monte Carlo code. A human eye phantom containing the realistic structures and materials was simulated, with a typical tumor located in its corner filled with three different patterns of distribution of GNPs around the nuclei of the cells. The primary photons emit from a COMS eye plaque brachytherapy containing thirteen Cs seeds in the vicinity of the tumor.

RESULTS

The study was extended to estimate dose enhancement for various concentration, size, and density of the GNPs accumulated around the nuclei of the tumor. Moreover, the dose delivered to the healthy eye structures for different models has been investigated and discussed. The results show obvious differences between the dose enhancements in the tumor depending on the modeling of GNPs.

CONCLUSION

The results emphasized that an appropriate small-scale model for the distribution of GNPs in the cell would be of high importance to estimate the degree of dose enhancement in a macroscopic phantom to provide a trustworthy prediction to move towards clinical application.

摘要

背景

由于其独特的性质,金纳米颗粒(GNPs)已被提议用于广泛的应用,特别是光子放射治疗。除了实验工作外,还有一些基于模拟的有价值的研究,专注于研究由于组织中存在GNPs而控制剂量增强的参数的影响。在最近发表的一项研究中,我们发现GNPs在单个细胞中的分布在细胞核剂量增强中起着重要作用。

方法

本研究通过使用MCNPX蒙特卡罗代码,研究了宏观体模剂量增强对细胞水平上GNPs建模的敏感性。模拟了一个包含真实结构和材料的人眼体模,在其角落有一个典型肿瘤,肿瘤内细胞的细胞核周围填充有三种不同模式分布的GNPs。初级光子由位于肿瘤附近的含13个铯籽源的COMS眼敷贴器发出。

结果

该研究扩展到估计肿瘤细胞核周围积累的各种浓度、大小和密度的GNPs的剂量增强。此外,还对不同模型下传递到健康眼结构的剂量进行了研究和讨论。结果表明,根据GNPs的建模不同,肿瘤中的剂量增强存在明显差异。

结论

结果强调,细胞中GNPs分布的适当小尺度模型对于估计宏观体模中的剂量增强程度非常重要,以便为迈向临床应用提供可靠的预测。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6816/7441132/98a77e752b8b/40658_2020_321_Fig1_HTML.jpg

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