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用于治疗眼部肿瘤的正交电压X射线微束放射疗法——一项计算机模拟评估

Orthovoltage X-ray Minibeam Radiation Therapy for the Treatment of Ocular Tumours-An In Silico Evaluation.

作者信息

Schneider Tim, Malaise Denis, Pouzoulet Frédéric, Prezado Yolanda

机构信息

Institut Curie, Université Paris-Saclay, CNRS UMR3347, Inserm U1021, Signalisation Radiobiologie et Cancer, 91400 Orsay, France.

Department of Ophthalmology, Institut Curie, 75005 Paris, France.

出版信息

Cancers (Basel). 2023 Jan 21;15(3):679. doi: 10.3390/cancers15030679.

Abstract

(1) Background: Radiotherapeutic treatments of ocular tumors are often challenging because of nearby radiosensitive structures and the high doses required to treat radioresistant cancers such as uveal melanomas. Although increased local control rates can be obtained with advanced techniques such as proton therapy and stereotactic radiosurgery, these modalities are not always accessible to patients (due to high costs or low availability) and side effects in structures such as the lens, eyelids or anterior chamber remain an issue. Minibeam radiation therapy (MBRT) could represent a promising alternative in this regard. MBRT is an innovative new treatment approach where the irradiation field is composed of multiple sub-millimetric beamlets, spaced apart by a few millimetres. This creates a so-called spatial fractionation of the dose which, in small animal experiments, has been shown to increase normal tissue sparing while simultaneously providing high tumour control rates. Moreover, MBRT with orthovoltage X-rays could be easily implemented in widely available and comparably inexpensive irradiation platforms. (2) Methods: Monte Carlo simulations were performed using the TOPAS toolkit to evaluate orthovoltage X-ray MBRT as a potential alternative for treating ocular tumours. Dose distributions were simulated in CT images of a human head, considering six different irradiation configurations. (3) Results: The mean, peak and valley doses were assessed in a generic target region and in different organs at risk. The obtained doses were comparable to those reported in previous X-ray MBRT animal studies where good normal tissue sparing and tumour control (rat glioma models) were found. (4) Conclusions: A proof-of-concept study for the application of orthovoltage X-ray MBRT to ocular tumours was performed. The simulation results encourage the realisation of dedicated animal studies considering minibeam irradiations of the eye to specifically assess ocular and orbital toxicities as well as tumour response. If proven successful, orthovoltage X-ray minibeams could become a cost-effective treatment alternative, in particular for developing countries.

摘要

(1)背景:眼部肿瘤的放射治疗往往具有挑战性,这是因为附近存在放射敏感结构,且治疗葡萄膜黑色素瘤等放射抗拒性癌症需要高剂量。尽管采用质子治疗和立体定向放射外科等先进技术可提高局部控制率,但这些方法患者并非总能使用(由于成本高或可及性低),并且晶状体、眼睑或前房等结构的副作用仍是个问题。在这方面,微束放射治疗(MBRT)可能是一种有前景的替代方法。MBRT是一种创新的新治疗方法,其照射野由多个亚毫米级的子束组成,子束间距为几毫米。这会产生所谓的剂量空间分割,在小动物实验中已表明,这能增加正常组织的保护,同时实现高肿瘤控制率。此外,采用正交电压X射线的MBRT可在广泛可用且成本相对较低的照射平台上轻松实现。(2)方法:使用TOPAS工具包进行蒙特卡罗模拟,以评估正交电压X射线MBRT作为治疗眼部肿瘤的潜在替代方法。在人体头部的CT图像中模拟剂量分布,考虑六种不同的照射配置。(3)结果:在一个通用靶区和不同的危险器官中评估了平均剂量、峰值剂量和谷值剂量。所得剂量与先前X射线MBRT动物研究报告的剂量相当,在这些研究中发现了良好的正常组织保护和肿瘤控制(大鼠胶质瘤模型)。(4)结论:进行了一项关于将正交电压X射线MBRT应用于眼部肿瘤的概念验证研究。模拟结果促使开展专门的动物研究,考虑对眼睛进行微束照射,以具体评估眼部和眼眶毒性以及肿瘤反应。如果证明成功,正交电压X射线微束可能成为一种具有成本效益的治疗选择,特别是对于发展中国家。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/cc1e/9913874/350de0db634b/cancers-15-00679-g001.jpg

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