Immunological Effects of Proton Radiotherapy: New Opportunities and Challenges in Cancer Therapy

Anhang Zhang, Liyuan Fan, Qi Liu, Xiaoxin Zuo, Jian Zhu
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引用次数: 0

Abstract

Radiation therapy can be categorised by particle type into photon, proton and heavy ion therapies. Proton radiotherapy is highlighted due to its unique physical properties, such as the Bragg peak and minimal exit dose, which offer superior dose distribution. This makes proton radiotherapy especially advantageous for treating tumours near vital organs with complex structures, such as gliomas near the brain, nasopharyngeal carcinoma near the brainstem and mediastinal tumours near the heart. Proton irradiation can induce distant effects through immunogenicity within the target area. The reduced low-dose zone outside the target provides better lymphatic system protection and immune benefits. Additionally, combining proton radiotherapy with immunotherapy may offer further biological advantages. These features make proton radiotherapy a promising option in cancer treatment. This article may aid in the understanding of proton radiotherapy and its immune effects and lead to new effective options for tumour treatment.

Abstract Image

质子放疗的免疫效应:癌症治疗的新机遇与挑战
放射治疗可按粒子类型分为光子、质子和重离子治疗。质子放射治疗因其独特的物理特性而备受关注,如布拉格峰和最小的出口剂量,提供了优越的剂量分布。这使得质子放射治疗在治疗结构复杂的重要器官附近的肿瘤时特别有利,例如脑附近的胶质瘤、脑干附近的鼻咽癌和心脏附近的纵隔肿瘤。质子照射可通过靶区的免疫原性诱导远处效应。目标外减少的低剂量区提供更好的淋巴系统保护和免疫益处。此外,质子放射治疗与免疫治疗相结合可能提供进一步的生物学优势。这些特点使质子放疗成为癌症治疗中一个很有前途的选择。本文可能有助于理解质子放疗及其免疫效应,并为肿瘤治疗提供新的有效选择。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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CiteScore
0.70
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