Mohseni Mehran, Kazemzadeh Arezoo, Ataei Nafiseh, Moradi Habiballah, Aliasgharzadeh Akbar, Farhood Bagher
Department of Medical Physics, Kashan University of Medical Science, Kashan, Iran.
J Med Signals Sens. 2020 Nov 11;10(4):286-294. doi: 10.4103/jmss.JMSS_58_19. eCollection 2020 Oct-Dec.
Various factors effecting deposited energy and dose enhancement ratio (DER) in the simplified model of cell caused by the interaction of a cluster of gold nanoparticles (GNPs) with electron beams were assessed, and the results were compared with other sources through Geant4 Monte Carlo simulation toolkit.
The effect of added GNPs on the DNA strand breaks level, irradiated to electron, proton, and alpha beams, is assessed.
Presence of GNPs in the cell makes DER value more pronounced for low-energy photons rather than electron beam. Moreover, the results of DER values did not show any significant increase in absorbed dose in the presence of GNP for proton and alpha beam. Moreover, the results of DNA break with GNPs for proton and alpha beam were negligible. It is demonstrated that as the sizes of the GNPs increase, the DER is enlarged until a certain size for 40 keV photons, while there is no striking change for 50 keV electron beam when the size of the GNPs changes. The results indicate that although energy deposited in the cell for electron beam is more than low-energy photon, DER values are low compared to photon.
Larger GNPs do not show any preference over smaller ones when irradiated through electron beams. It is proved that GNPs do not significantly increase single-strand breaks (SSBs) and double-strand breaks during electron irradiation, while there exists a direct relationship between SSB and energy.
通过Geant4蒙特卡罗模拟工具包,评估了在由金纳米颗粒(GNP)簇与电子束相互作用引起的简化细胞模型中影响沉积能量和剂量增强比(DER)的各种因素,并将结果与其他来源进行了比较。
评估添加GNP对受电子、质子和α束照射的DNA链断裂水平的影响。
细胞中存在GNP时,低能光子的DER值比电子束更明显。此外,对于质子和α束,在存在GNP的情况下,DER值的结果并未显示吸收剂量有任何显著增加。此外,质子和α束与GNP的DNA断裂结果可忽略不计。结果表明,随着GNP尺寸的增加,40 keV光子的DER会增大,直到达到一定尺寸,而当GNP尺寸变化时,50 keV电子束没有明显变化。结果表明,尽管电子束在细胞中沉积的能量比低能光子多,但与光子相比,DER值较低。
当通过电子束照射时,较大的GNP与较小的GNP相比没有任何优势。事实证明,在电子照射期间,GNP不会显著增加单链断裂(SSB)和双链断裂,而SSB与能量之间存在直接关系。