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质子治疗中LET引导的治疗计划优化的系统评价:确定当前状况和未来需求

A Systematic Review of LET-Guided Treatment Plan Optimisation in Proton Therapy: Identifying the Current State and Future Needs.

作者信息

McIntyre Melissa, Wilson Puthenparampil, Gorayski Peter, Bezak Eva

机构信息

Allied Health & Human Performance Academic Unit, University of South Australia, Adelaide, SA 5000, Australia.

Department of Radiation Oncology, Royal Adelaide Hospital, Adelaide, SA 5000, Australia.

出版信息

Cancers (Basel). 2023 Aug 25;15(17):4268. doi: 10.3390/cancers15174268.

Abstract

The well-known clinical benefits of proton therapy are achieved through higher target-conformality and normal tissue sparing than conventional radiotherapy. However, there is an increased sensitivity to uncertainties in patient motion/setup, proton range and radiobiological effect. Although recent efforts have mitigated some uncertainties, radiobiological effect remains unresolved due to a lack of clinical data for relevant endpoints. Therefore, RBE optimisations may be currently unsuitable for clinical treatment planning. LET optimisation is a novel method that substitutes RBE with LET, shifting LET hotspots outside critical structures. This review outlines the current status of LET optimisation in proton therapy, highlighting knowledge gaps and possible future research. Following the PRISMA 2020 guidelines, a search of the MEDLINE® and Scopus databases was performed in July 2023, identifying 70 relevant articles. Generally, LET optimisation methods achieved their treatment objectives; however, clinical benefit is patient-dependent. Inconsistencies in the reported data suggest further testing is required to identify therapeutically favourable methods. We discuss the methods which are suitable for near-future clinical deployment, with fast computation times and compatibility with existing treatment protocols. Although there is some clinical evidence of a correlation between high LET and adverse effects, further developments are needed to inform future patient selection protocols for widespread application of LET optimisation in proton therapy.

摘要

质子治疗众所周知的临床益处是通过比传统放疗更高的靶区适形度和对正常组织的保护来实现的。然而,质子治疗对患者运动/摆位、质子射程和放射生物学效应的不确定性更为敏感。尽管最近的努力已经减轻了一些不确定性,但由于缺乏相关终点的临床数据,放射生物学效应问题仍未得到解决。因此,目前相对生物学效应(RBE)优化可能不适用于临床治疗计划。线性能量传递(LET)优化是一种用LET替代RBE的新方法,可将LET热点转移到关键结构之外。本综述概述了质子治疗中LET优化的现状,强调了知识空白和未来可能的研究方向。按照PRISMA 2020指南,于2023年7月对MEDLINE®和Scopus数据库进行了检索,共识别出70篇相关文章。总体而言,LET优化方法实现了其治疗目标;然而,临床益处因患者而异。报告数据的不一致表明需要进一步测试以确定具有治疗优势的方法。我们讨论了适合在不久的将来临床应用的方法,这些方法计算速度快,并且与现有治疗方案兼容。尽管有一些临床证据表明高LET与不良反应之间存在关联,但仍需要进一步发展,以为未来在质子治疗中广泛应用LET优化的患者选择方案提供依据。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ffe6/10486456/ee996d2eb93e/cancers-15-04268-g001.jpg

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