Department of Radiation Medicine, Loma Linda University Medical Center, CA 92354, USA.
Chin J Cancer Res. 2012 Dec;24(4):361-7. doi: 10.3978/j.issn.1000-9604.2012.10.09.
Proton radiotherapy has seen an increasing role in the treatment of hepatocellular carcinoma (HCC). Historically, external beam radiotherapy has played a very limited role in HCC due to a high incidence of toxicity to surrounding normal structures. The ability to deliver a high dose of radiation to the tumor is a key factor in improving outcomes in HCC. Advances in photon radiotherapy have improved dose conformity and allowed dose escalation to the tumor. However, despite these advances there is still a large volume of normal liver that receives a considerable radiation dose during treatment. Proton beams do not have an exit dose along the beam path once they enter the body. The inherent physical attributes of proton radiotherapy offer a way to maximize tumor control via dose escalation while avoiding excessive radiation to the remaining liver, thus increasing biological effectiveness. In this review we discuss the physical attributes and rationale for proton radiotherapy in HCC. We also review recent literature regarding clinical outcomes of using proton radiotherapy for the treatment of HCC.
质子放疗在肝细胞癌(HCC)的治疗中发挥着越来越重要的作用。历史上,由于周围正常结构的毒性发生率高,外照射放疗在 HCC 中的作用非常有限。向肿瘤提供高剂量辐射的能力是改善 HCC 预后的关键因素。光子放疗的进步提高了剂量适形性,并允许对肿瘤进行剂量升级。然而,尽管取得了这些进展,但在治疗过程中仍有大量的正常肝脏会受到相当大的辐射剂量。质子束一旦进入体内,沿束路径就没有出口剂量。质子放疗的固有物理属性提供了一种通过剂量升级来最大化肿瘤控制的方法,同时避免对剩余肝脏的过度辐射,从而提高生物效应。在这篇综述中,我们讨论了质子放疗在 HCC 中的物理属性和基本原理。我们还回顾了关于使用质子放疗治疗 HCC 的临床结果的最新文献。