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放射治疗技术的演变:对临床应用的影响。

Technological evolution of radiation treatment: Implications for clinical applications.

机构信息

Department of Advanced Biomedical Sciences, University "Federico II", Napoli, Italy.

Department of Advanced Biomedical Sciences, University "Federico II", Napoli, Italy.

出版信息

Semin Oncol. 2019 Jun;46(3):193-201. doi: 10.1053/j.seminoncol.2019.07.004. Epub 2019 Jul 30.

Abstract

The contemporary approach to the management of a cancer patient requires an "ab initio" involvement of different medical domains in order to correctly design an individual patient's pathway toward cure. With new therapeutic tools in every medical field developing faster than ever before the patient care outcomes can be achieved if all surgical, drug, and radiation options are considered in the design of the appropriate therapeutic strategy for a given patient. Radiation therapy (RT) is a clinical discipline in which experts from different fields continuously interact in order to manage the multistep process of the radiation treatment. RT is found to be an appropriate intervention for diverse indications in about 50% of cancer patients during the course of their disease. Technologies are essential in dealing with the complexity of RT treatments and for driving the increasingly sophisticated RT approaches becoming available for the treatment of Cancer. High conformal techniques, namely intensity modulated or volumetric modulated arc techniques, ablative techniques (Stereotactic Radiotherapy and Stereotactic Radiosurgery), particle therapy (proton or carbon ion therapy) allow for success in treating irregularly shaped or critically located targets and for the sharpness of the dose fall-off outside the target. The advanced on-board imaging, including real-time position management systems, makes possible image-guided radiation treatment that results in substantial margin reduction and, in select cases, implementation of an adaptive approach. The therapeutic gains of modern RT are also due in part to the enhanced anticancer activity obtained by coadministering RT with chemotherapy, targeted molecules, and currently immune checkpoints inhibitors. These main clinically relevant steps forward in Radiation Oncology represent a change of gear in the field that may have a profound impact on the management of cancer patients.

摘要

当代癌症患者的管理方法需要不同医学领域的“从头开始”参与,以便为患者制定个体化的治疗方案。随着每个医学领域的新治疗手段都在以前所未有的速度发展,如果在为特定患者设计适当的治疗策略时考虑所有手术、药物和放疗选择,就可以实现患者的治疗效果。放射治疗(RT)是一门临床学科,来自不同领域的专家不断互动,以管理放射治疗的多步骤过程。在癌症患者的病程中,约有 50%的患者在不同的适应证中发现 RT 是一种适当的干预措施。在处理 RT 治疗的复杂性并推动日益复杂的 RT 方法用于癌症治疗方面,技术是必不可少的。高适形技术,即调强或容积调强弧形技术、消融技术(立体定向放疗和立体定向放射外科)、粒子治疗(质子或碳离子治疗),可以成功治疗形状不规则或位置关键的靶区,并使靶区外剂量迅速下降。先进的机载成像技术,包括实时位置管理系统,使得图像引导的放射治疗成为可能,从而显著减少了边缘,并在某些情况下实现了自适应方法。现代 RT 的治疗效果部分归因于 RT 与化疗、靶向分子和目前的免疫检查点抑制剂联合应用所获得的增强抗癌活性。这些放射肿瘤学中主要的临床相关进展代表了该领域的一个变革,可能对癌症患者的管理产生深远影响。

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