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使用低能量2.5 MV光子束与金纳米颗粒相结合对BxPC-3胰腺癌细胞系的治疗增强效果。

Therapeutic enhancement effects using a lower energy 2.5 MV photon beam combined with gold nanoparticles on the BxPC-3 pancreatic cancer cell line,.

作者信息

Yao Xiao Qing, Sabatinos Sarah A, Da Silva Eric, Taggar Amandeep, Ha Diana, Khan Rao, Karshafian Raffi, Gräfe James

机构信息

Department of Physics, Toronto Metropolitan University, Toronto, Ontario M5B 2K3, Canada.

Institute for Biomedical Engineering, Science and Technology (iBEST), A Partnership Between Toronto Metropolitan University and St. Michael's Hospital, 209 Victoria Street, Toronto, Ontario M5B 1T8, Canada.

出版信息

Phys Med Biol. 2025 May 15;70(10). doi: 10.1088/1361-6560/add4b8.

Abstract

. This study investigates the feasibility of using a clinically relevant lower energy 2.5 megavoltage (MV) photon beam in combination with gold nanoparticles (GNPs).Pancreatic cancer cell line, BxPC-3 impregnated with GNPs were exposedto 2.5 MV photon beam and compared with orthovoltage 225 kV and clinical 6 MV photon beam. Bare, 50 nm diameter, spherical GNPs were introduced in the cell culture 24 h prior to irradiation at a concentration of either 10g mlor 50g ml. GNP uptake was determined using inductively coupled plasma optical emission spectroscopy. The cells were irradiated with doses between 0 Gy to 8 Gy. Cell survival curves were obtained via clonogenic assay using immediate or delayed plating (24 h) methods 12 d after irradiation. The terminal deoxynucleotidyl transferase dUTP nick end labeling assay was used to evaluate DNA damage at two time points post irradiation, immediate and 24 h for 1 Gy and 6 Gy.. The enhancement factor (EF) in BxPC-3 cells was greatest for cells incubated with 50g mlof GNPs analyzed immediately post irradiation. Cells irradiated with 225 kV showed greatest EF (1.57 ± 0.15), followed by 2.5 MV (1.51 ± 0.04). The lowest EF was seen for 6 MV, immediate plating (1.10 ± 0.04). A significant increase in the number of DNA double strand breaks (DSB) was observed in cells incubated with 50g mlof GNPs irradiated at 6 Gy with 225 kV and 2.5 MV. There was no significant increase in DSBs for the cells irradiated with 6 MV.These results suggest that the 2.5 MV could be a compromise between an orthovoltage energy beam and a clinical 6 MV beam, showing comparable reduction in cell survival to the 225 kV beam. Future GNP radiation enhancement research may focus on intermediate energy beams.

摘要

本研究调查了使用临床相关的较低能量2.5兆伏(MV)光子束与金纳米颗粒(GNP)相结合的可行性。将浸渍有GNP的胰腺癌细胞系BxPC-3暴露于2.5 MV光子束下,并与225 kV的正交电压和临床6 MV光子束进行比较。在照射前24小时,以10μg/ml或50μg/ml的浓度将直径为50nm的裸球形GNP引入细胞培养物中。使用电感耦合等离子体发射光谱法测定GNP的摄取量。细胞接受0 Gy至8 Gy的剂量照射。照射后12天,通过克隆形成试验,使用即时或延迟接种(24小时)方法获得细胞存活曲线。使用末端脱氧核苷酸转移酶dUTP缺口末端标记试验在照射后两个时间点(即时和照射1 Gy和6 Gy后24小时)评估DNA损伤。照射后立即分析,用50μg/ml GNP孵育的BxPC-3细胞中的增强因子(EF)最大。用225 kV照射的细胞显示出最大的EF(1.57±0.15),其次是2.5 MV(1.51±0.04)。6 MV即时接种时的EF最低(1.10±0.04)。在用225 kV和2.5 MV照射6 Gy的情况下,用50μg/ml GNP孵育的细胞中观察到DNA双链断裂(DSB)数量显著增加。用6 MV照射的细胞中DSB没有显著增加。这些结果表明,2.5 MV可能是正交电压能量束和临床6 MV束之间的一种折衷,显示出与225 kV束相当的细胞存活率降低。未来GNP辐射增强研究可能集中在中能束上。

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