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水凝胶纳米传感器在质子束放射治疗中的比色检测和剂量测定。

Hydrogel Nanosensors for Colorimetric Detection and Dosimetry in Proton Beam Radiotherapy.

机构信息

Chemical Engineering, Arizona State University , Tempe, Arizona 85287-6106, United States.

Department of Radiation Oncology, Mayo Clinic Arizona , Phoenix, Arizona 85054, United States.

出版信息

ACS Appl Mater Interfaces. 2018 Jan 31;10(4):3274-3281. doi: 10.1021/acsami.7b15127. Epub 2018 Jan 17.

DOI:10.1021/acsami.7b15127
PMID:29303547
Abstract

Proton beam therapy (PBT) is a state-of-the-art radiotherapy treatment approach that uses focused proton beams for tumor ablation. A key advantage of this approach over conventional photon radiotherapy (XRT) is the unique dose deposition characteristic of protons, which results in superior healthy tissue sparing. This results in fewer unwanted side effects and improved outcomes for patients. Currently available dosimeters are intrinsic, complex, and expensive and are not routinely used to determine the dose delivered to the tumor. Here, we report a hydrogel-based plasmonic nanosensor for detecting clinical doses used in conventional and hyperfractionated proton beam radiotherapy. In this nanosensor, gold ions, encapsulated in a hydrogel, are reduced to gold nanoparticles following irradiation with proton beams. Formation of gold nanoparticles renders a color change to the originally colorless hydrogel. The intensity of the color can be used to calibrate the hydrogel nanosensor in order to quantify different radiation doses employed during proton treatment. The potential of this nanosensor for clinical translation was demonstrated using an anthropomorphic phantom mimicking a clinical radiotherapy session. The simplicity of fabrication, detection range in the fractionated radiotherapy regime, and ease of detection with translational potential makes this a first-in-kind plasmonic colorimetric nanosensor for applications in clinical proton beam therapy.

摘要

质子束治疗(PBT)是一种先进的放射治疗方法,它使用聚焦的质子束进行肿瘤消融。与传统光子放射治疗(XRT)相比,这种方法的一个关键优势是质子独特的剂量沉积特性,这导致更好的健康组织保护。这会减少不必要的副作用,并改善患者的治疗效果。目前可用的剂量计是内在的、复杂的和昂贵的,并且通常不用于确定肿瘤所接受的剂量。在这里,我们报告了一种基于水凝胶的等离子体纳米传感器,用于检测常规和超分割质子束放射治疗中使用的临床剂量。在这个纳米传感器中,金离子在质子束辐照后被包裹在水凝胶中还原为金纳米粒子。金纳米粒子的形成使原本无色的水凝胶发生颜色变化。颜色的强度可用于校准水凝胶纳米传感器,以量化质子治疗过程中使用的不同辐射剂量。使用模拟临床放射治疗过程的人体模拟体证明了这种纳米传感器在临床转化方面的潜力。这种纳米传感器的制造简单、在分割放射治疗方案中的检测范围以及易于检测,使其成为临床质子束治疗应用中的首个等离子体比色纳米传感器。

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