Size-Sorted Superheated Nanodroplets for Dosimetry and Range Verification of Carbon-Ion Radiotherapy.

IF 4.4 3区 材料科学 Q2 CHEMISTRY, MULTIDISCIPLINARY
Nanomaterials Pub Date : 2024-10-13 DOI:10.3390/nano14201643
Yosra Toumia, Marco Pullia, Fabio Domenici, Alessio Mereghetti, Simone Savazzi, Michele Ferrarini, Angelica Facoetti, Gaio Paradossi
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引用次数: 0

Abstract

Nanodroplets have demonstrated potential for the range detection of hadron radiotherapies. Our formulation uses superheated perfluorobutane (C4F10) stabilized by a poly(vinyl-alcohol) shell. High-LET (linear energy transfer) particles vaporize the nanodroplets into echogenic microbubbles. Tailored ultrasound imaging translates the generated echo-contrast into a dose distribution map, enabling beam range retrieval. This work evaluates the response of size-sorted nanodroplets to carbon-ion radiation. We studied how thesize of nanodroplets affects their sensitivity at various beam-doses and energies, as a function of concentration and shell cross-linking. First, we show the physicochemical characterization of size-isolated nanodroplets by differential centrifugation. Then, we report on the irradiations of the nanodroplet samples in tissue-mimicking phantoms. We compared the response of large (≈900 nm) and small (≈400 nm) nanodroplets to different carbon-ions energies and evaluated their dose linearity and concentration detection thresholds by ultrasound imaging. Additionally, we verified the beam range detection accuracy for the nanodroplets samples. All nanodroplets exhibited sensitivity to carbon-ions with high range verification precision. However, smaller nanodroplets required a higher concentration sensitivity threshold. The vaporization yield depends on the carbon-ions energy and dose, which are both related to particle count/spot. These findings confirm the potential of nanodroplets for range detection, with performance depending on nanodroplets' properties and beam parameters.

用于碳-离子放射治疗剂量测定和范围验证的粒度分选过热纳米微滴
纳米微滴在强子放射治疗的范围检测方面已显示出潜力。我们的配方使用过热的全氟丁烷(C4F10),由聚乙烯醇外壳稳定。高 LET(线性能量转移)粒子将纳米微滴蒸发成产生回声的微气泡。定制超声成像将生成的回波对比度转化为剂量分布图,从而实现射束范围检索。这项研究评估了按尺寸分类的纳米微滴对碳离子辐射的响应。我们研究了纳米微滴的大小如何影响其在不同光束剂量和能量下的灵敏度,并将其作为浓度和外壳交联的函数。首先,我们展示了通过差速离心法对尺寸分离的纳米液滴进行的物理化学表征。然后,我们报告了纳米微滴样品在组织模拟模型中的辐照情况。我们比较了大(≈900 nm)和小(≈400 nm)纳米液滴对不同碳离子能量的反应,并通过超声成像评估了它们的剂量线性和浓度检测阈值。此外,我们还验证了纳米微滴样品的波束范围检测精度。所有纳米微滴都表现出了对碳离子的灵敏度和高范围验证精度。不过,较小的纳米液滴需要更高的浓度灵敏度阈值。气化产率取决于碳离子的能量和剂量,而能量和剂量都与粒子数/斑点有关。这些发现证实了纳米微滴在测距探测方面的潜力,其性能取决于纳米微滴的特性和光束参数。
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来源期刊
Nanomaterials
Nanomaterials NANOSCIENCE & NANOTECHNOLOGY-MATERIALS SCIENCE, MULTIDISCIPLINARY
CiteScore
8.50
自引率
9.40%
发文量
3841
审稿时长
14.22 days
期刊介绍: Nanomaterials (ISSN 2076-4991) is an international and interdisciplinary scholarly open access journal. It publishes reviews, regular research papers, communications, and short notes that are relevant to any field of study that involves nanomaterials, with respect to their science and application. Thus, theoretical and experimental articles will be accepted, along with articles that deal with the synthesis and use of nanomaterials. Articles that synthesize information from multiple fields, and which place discoveries within a broader context, will be preferred. There is no restriction on the length of the papers. Our aim is to encourage scientists to publish their experimental and theoretical research in as much detail as possible. Full experimental or methodical details, or both, must be provided for research articles. Computed data or files regarding the full details of the experimental procedure, if unable to be published in a normal way, can be deposited as supplementary material. Nanomaterials is dedicated to a high scientific standard. All manuscripts undergo a rigorous reviewing process and decisions are based on the recommendations of independent reviewers.
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