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Assessment of proton radiographic sensitivity limits for gold nanoparticle tagged tumors using gold leaf phantoms

机译:使用金箔体模评估金纳米颗粒标记的肿瘤的质子放射线敏感性极限

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Proton radiography is a potentially valuable tool for the image guidance of proton therapy cancer treatment. While proton therapy is desirable due to its high dose deposition accuracy, proton radiography, which could, in theory, be applied simultaneously to treatment, has an intrinsically low soft tissue contrast, making it difficult to visualize tumors. To enhance this tumor contrast, high-Z nanoparticles could be targeted to a tumor before imaging. To assess the efficacy of gold as a contrast agent, phantoms consisting of gold leaf mounted on acrylic backing were developed to simulate a tumor tagged with gold nanoparticles (AuNPs). Calculations are presented to correlate a given thickness of gold with scenarios for tagging cancers with AuNPs, in terms of the size of the functionalized nanoparticles, the diameter of the tumor, as well as the efficiency by which the nanoparticles are taken up by the malignant cells. These calculations determined phantoms that best describe particular tagging conditions, and are also applicable to ex vivo specimens made by injecting AuNPs into a mouse model. Using a×3 proton magnifying lens with the 800-MeV LANSCE proton beam, a 1-μm-thick Au foil was radiographically discernible within 1 cm of acrylic, representing sensitivity to a material percent density change of 0.2%. This indicates that AuNP-enhanced proton radiography could be used to characterize small tumors, allowing for early detection and treatment of malignant tissues, as well as for in situ imaging for enhanced treatment localization.
机译:质子射线照相术是用于质子治疗癌症治疗的图像指导的潜在有价值的工具。尽管质子疗法由于其高剂量沉积精度而是理想的,但质子射线照相理论上可以同时应用于治疗,其本质上具有较低的软组织对比度,从而难以可视化肿瘤。为了增强这种肿瘤对比,可以在成像前将高Z纳米粒子靶向肿瘤。为了评估金作为造影剂的功效,开发了由安装在丙烯酸背衬上的金箔组成的体模,以模拟用金纳米颗粒(AuNPs)标记的肿瘤。根据功能化纳米粒子的大小,肿瘤的直径以及纳米粒子被恶性细胞吸收的效率,提出了将给定厚度的金与使用AuNPs标记癌症的方案相关联的计算方法。这些计算确定了最能描述特定标记条件的体模,并且还适用于通过将AuNPs注入小鼠模型制成的离体标本。使用具有800-MeV LANSCE质子束的×3质子放大镜,可以在1厘米的丙烯酸范围内通过射线照相法分辨出厚度为1μm的Au箔,表示对0.2%的材料百分比密度变化敏感。这表明增强的AuNP质子放射成像可用于表征小肿瘤,从而允许早期检测和治疗恶性组织,以及用于增强治疗定位的原位成像。

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