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高传能重带电粒子:放射生物学及其在放射治疗新方法中的应用。

High-LET charged particles: radiobiology and application for new approaches in radiotherapy.

机构信息

Biophysics Department, GSI Helmholtz Center for Heavy Ion Research, Darmstadt, Germany.

出版信息

Strahlenther Onkol. 2023 Dec;199(12):1225-1241. doi: 10.1007/s00066-023-02158-7. Epub 2023 Oct 23.

Abstract

The number of patients treated with charged-particle radiotherapy as well as the number of treatment centers is increasing worldwide, particularly regarding protons. However, high-linear energy transfer (LET) particles, mainly carbon ions, are of special interest for application in radiotherapy, as their special physical features result in high precision and hence lower toxicity, and at the same time in increased efficiency in cell inactivation in the target region, i.e., the tumor. The radiobiology of high-LET particles differs with respect to DNA damage repair, cytogenetic damage, and cell death type, and their increased LET can tackle cells' resistance to hypoxia. Recent developments and perspectives, e.g., the return of high-LET particle therapy to the US with a center planned at Mayo clinics, the application of carbon ion radiotherapy using cost-reducing cyclotrons and the application of helium is foreseen to increase the interest in this type of radiotherapy. However, further preclinical research is needed to better understand the differential radiobiological mechanisms as opposed to photon radiotherapy, which will help to guide future clinical studies for optimal exploitation of high-LET particle therapy, in particular related to new concepts and innovative approaches. Herein, we summarize the basics and recent progress in high-LET particle radiobiology with a focus on carbon ions and discuss the implications of current knowledge for charged-particle radiotherapy. We emphasize the potential of high-LET particles with respect to immunogenicity and especially their combination with immunotherapy.

摘要

全球接受带电粒子放射治疗的患者数量和治疗中心数量都在增加,尤其是质子治疗。然而,具有高线性能量转移(LET)的粒子,主要是碳离子,因其特殊的物理特性在放射治疗中具有特殊的应用价值,这些特性可实现高精度和较低的毒性,同时在靶区(即肿瘤)中提高细胞失活的效率。高 LET 粒子的放射生物学在 DNA 损伤修复、细胞遗传学损伤和细胞死亡类型方面存在差异,其增加的 LET 可以解决细胞对缺氧的抵抗。最近的发展和展望,例如,美国计划在梅奥诊所建立中心,重新开展高 LET 粒子治疗;使用成本降低的回旋加速器和氦气应用碳离子放射疗法,预计将增加对这种类型放射治疗的兴趣。然而,需要进一步的临床前研究来更好地了解与光子放射治疗相反的差异放射生物学机制,这将有助于指导未来的临床研究,以优化高 LET 粒子治疗的应用,特别是与新概念和创新方法相关的研究。本文总结了高 LET 粒子放射生物学的基础和最新进展,重点介绍了碳离子,并讨论了当前知识对带电粒子放射治疗的影响。我们强调了高 LET 粒子在免疫原性方面的潜力,特别是它们与免疫疗法的结合。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/60aa/10674019/39d4831b4729/66_2023_2158_Fig1_HTML.jpg

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