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尺寸调节电离以优化金纳米颗粒用于同步增强CT成像和放射治疗

Size-Tuning Ionization To Optimize Gold Nanoparticles for Simultaneous Enhanced CT Imaging and Radiotherapy.

作者信息

Dou Yan, Guo Yanyan, Li Xiaodong, Li Xue, Wang Sheng, Wang Lin, Lv Guoxian, Zhang Xuening, Wang Hanjie, Gong Xiaoqun, Chang Jin

机构信息

School of Material Science and Engineering, School of Life Sciences, Tianjin University, Tianjin Engineering Center of Micro-Nano Biomaterials and Detection-Treatment Technology, and Collaborative Innovation Center of Chemical Science and Engineering , Tianjin 300072, People's Republic of China.

Department of Radiation Oncology and Department of Radiology, The Second Hospital of Tianjin Medical University , Tianjin 300211, People's Republic of China.

出版信息

ACS Nano. 2016 Feb 23;10(2):2536-48. doi: 10.1021/acsnano.5b07473. Epub 2016 Feb 1.

Abstract

Computed tomography (CT) contrast and radiosensitization usually increase with particle sizes of gold nanoparticles (AuNPs), but there is a huge challenge to improve both by adjusting sizes under the requirements of in vivo application. Here, we report that AuNPs have great size-dependent enhancements on CT imaging as well as radiotherapy (RT) in the size range of 3-50 nm. It is demonstrated that AuNPs with a size of ∼13 nm could simultaneously possess superior CT contrast ability and significant radioactive disruption. The Monte Carlo method is further used to evaluate this phenomenon and indicates that the inhomogeneity of gold atom distributions caused by sizes may influence secondary ionization in whole X-ray interactions. In vivo studies further indicate that this optimally sized AuNP improves real-time CT imaging and radiotherapeutic inhibition of tumors in living mice by effective accumulation at tumors with prolonged in vivo circulation times compared to clinically used small-molecule agents. These results suggest that ∼13 nm AuNPs may serve as multifunctional adjuvants for clinical X-ray theranostic application.

摘要

计算机断层扫描(CT)造影和放射增敏作用通常会随着金纳米颗粒(AuNP)粒径的增大而增强,但要在体内应用的要求下通过调整粒径同时提高这两者面临着巨大挑战。在此,我们报告在3至50纳米的尺寸范围内,AuNP在CT成像以及放射治疗(RT)方面具有显著的尺寸依赖性增强作用。结果表明,尺寸约为13纳米的AuNP能够同时具备卓越的CT造影能力和显著的放射破坏作用。进一步使用蒙特卡罗方法评估这一现象,结果表明由尺寸导致的金原子分布不均匀性可能会影响整个X射线相互作用中的二次电离。体内研究进一步表明,与临床使用的小分子药物相比,这种最佳尺寸的AuNP通过在肿瘤部位有效蓄积并延长体内循环时间,改善了活体小鼠肿瘤的实时CT成像以及放射治疗抑制效果。这些结果表明,约13纳米的AuNP可作为临床X射线诊疗应用的多功能佐剂。

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