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带电粒子疗法治疗癌症:临床应用及未来展望。

Charged-particle therapy in cancer: clinical uses and future perspectives.

机构信息

Trento Institute for Fundamental Physics and Applications (TIFPA), National Institute of Nuclear Physics (INFN), University of Trento, Via Sommarive 14, 38123 Povo, Trento, Italy.

Department of Physics, University Federico II, Monte S. Angelo, Via Cintia, 80126 Naples, Italy.

出版信息

Nat Rev Clin Oncol. 2017 Aug;14(8):483-495. doi: 10.1038/nrclinonc.2017.30. Epub 2017 Mar 14.

Abstract

Radiotherapy with high-energy charged particles has become an attractive therapeutic option for patients with several tumour types because this approach better spares healthy tissue from radiation than conventional photon therapy. The cost associated with the delivery of charged particles, however, is higher than that of even the most elaborate photon-delivery technologies. Reliable evidence of the relative cost-effectiveness of both modalities can only come from the results of randomized clinical trials. Thus, the hurdles that currently limit direct comparisons of these two approaches in clinical trials, especially those related to insurance coverage, should be removed. Herein, we review several randomized trials of charged-particle therapies that are ongoing, with results that will enable selective delivery to patients who are most likely to benefit from them. We also discuss aspects related to radiobiology, including the immune response and hypoxia, which will need to be taken into consideration in future randomized trials to fully exploit the potential of charged particles.

摘要

高能带电粒子放射疗法已成为多种肿瘤类型患者极具吸引力的治疗选择,因为这种方法比传统光子疗法能更好地保护健康组织免受辐射。然而,与最复杂的光子输送技术相比,带电粒子输送相关的成本更高。这两种方式的相对成本效益的可靠证据只能来自随机临床试验的结果。因此,目前限制这两种方法在临床试验中直接比较的障碍,特别是与保险覆盖范围相关的障碍,应该被消除。在此,我们回顾了几项正在进行的带电粒子治疗的随机试验,这些试验的结果将能够选择性地为那些最有可能从中受益的患者提供治疗。我们还讨论了与放射生物学相关的几个方面,包括免疫反应和缺氧,这些方面在未来的随机试验中需要加以考虑,以充分发挥带电粒子的潜力。

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