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对于大体积肿瘤的晶格放疗:从证据综合到在不同资源环境下基于直线加速器实施的实用临床指南

英文原题:Lattice radiotherapy for bulky tumors: A practical clinical guide from evidence synthesis to linac-based implementation in diverse resource settings.

查看英文原题

Lattice radiotherapy for bulky tumors: A practical clinical guide from evidence synthesis to linac-based implementation in diverse resource settings.

PubMed 2026/08/14(内容时间) J Cancer Res Ther Q4 · IF 1.4(JCR 2025)

研究概要

自2014年首次临床应用以来,全球经验已扩展至300多例患者,涵盖肺癌、头颈部癌、妇科肿瘤、肉瘤及其他部位,显示肿瘤体积缩小常超过50%,且毒性极低。

中文摘要

体积较大的肿瘤,定义为最大直径超过5 cm的病灶,仍然是放射肿瘤学中最具挑战性的情形之一。这类肿瘤通常以广泛缺氧、放射抵抗以及与剂量限制性危及器官邻近为特征,使得传统均匀剂量放疗效果欠佳。Lattice radiotherapy(LRT)作为spatially fractionated radiation therapy(SFRT)的三维演进形式,提供了一种范式转变性的方法,即在大体肿瘤体积内对离散的高剂量顶点给予消融剂量,同时保持低的外周剂量。自2014年首次临床应用以来,全球经验已扩展至300余例患者,涵盖肺、头颈、妇科、肉瘤及其他部位,显示肿瘤体积缩小常超过50%,且毒性极低。近期来自187例患者的meta分析数据证实,汇总的3个月完全缓解率和部分缓解率分别约为37%和42%,严重不良事件低于4%。支撑LRT的放射生物学原理包括直接消融肿瘤血管系统和缺氧核心、低剂量谷区中辐射诱导的旁效应信号、免疫原性细胞死亡,以及保留对远隔效应至关重要的TIL(肿瘤浸润淋巴细胞)。新出现的临床前证据提示,将SFRT与免疫检查点抑制剂联合可能增强全身抗肿瘤免疫。尽管有这些有前景的信号,临床文献仍主要由病例报告和小型回顾性系列组成,尚无已完成的随机试验。此外,现有综述均从资源充足中心的视角撰写,为在低中收入国家(LMICs)执业的放射肿瘤科医生留下了显著空白,而这些地区体积巨大、晚期肿瘤的比例过高。本叙述性综述提供了一份全面、实用的临床指南,涵盖从GRID到LRT的历史演变、放射生物学框架、对所有已发表临床数据进行的逐部位详细证据综合、一个提出的患者选择算法,以及一个按直线加速器(LINAC)能力分层的新型分级实施框架——从基于多叶准直器(MLC)的基础GRID到配备图像引导的先进容积旋转调强放疗(VMAT)。我们还审视了免疫治疗前沿和正在进行的前瞻性试验。我们的目标是使执业放射肿瘤科医生,尤其是在资源多样化的环境中,具备评估、采用和实施LRT所需的知识,以服务于其体积巨大、放射抗拒性肿瘤患者。

展开英文摘要原文

Bulky tumors, defined as lesions exceeding 5 cm in maximum diameter, remain among the most challenging scenarios in radiation oncology. These tumors are often characterized by extensive hypoxia, radioresistance, and proximity to dose-limiting organs at risk, rendering conventional homogeneous-dose radiotherapy suboptimal. Lattice radiotherapy (LRT), a three-dimensional evolution of spatially fractionated radiation therapy (SFRT), offers a paradigm-shifting approach by delivering ablative doses to discrete high-dose vertices within the gross tumor volume while maintaining low peripheral doses. Since the first clinical application in 2014, the global experience has expanded to over 300 patients across lung, head and neck, gynecological, sarcoma, and other sites, demonstrating tumor volume reductions frequently exceeding 50% with minimal toxicity. Recent meta-analytic data from 187 patients confirm pooled 3-month complete and partial response rates of approximately 37% and 42%, respectively, with severe adverse events below 4%. The radiobiological rationale underpinning LRT encompasses direct ablation of tumor vasculature and hypoxic cores, radiation-induced bystander signaling in low-dose valleys, immunogenic cell death, and the preservation of tumor-infiltrating lymphocytes essential for abscopal responses. Emerging preclinical evidence suggests that coupling SFRT with immune checkpoint inhibitors may potentiate systemic antitumor immunity. Despite these promising signals, the clinical literature remains predominantly comprised of case reports and small retrospective series, with no completed randomized trials. Furthermore, existing reviews have been written from the perspective of well-resourced centers, leaving a significant gap for radiation oncologists practicing in low- and middle-income countries (LMICs) where bulky, advanced-stage tumors are disproportionately prevalent. This narrative review provides a comprehensive, practical clinical guide encompassing the historical evolution from GRID to LRT, the radiobiological framework, a detailed site-by-site evidence synthesis of all published clinical data, a proposed patient selection algorithm, and a novel tiered implementation framework stratified by linear accelerator (LINAC) capability-from basic multileaf collimator (MLC)-based GRID through advanced volumetric modulated arc therapy (VMAT) with image guidance. We also examine the immunotherapeutic frontier and ongoing prospective trials. Our aim is to equip the practicing radiation oncologist, particularly in resource-diverse settings, with the knowledge needed to evaluate, adopt, and implement LRT for their patients with bulky, radioresistant tumors.

论文信息

作者
Pranav MS、Vedagiri GV、Kasi M
单位
Department of Radiation Oncology, PSG Institute of Medical Sciences and Research, Coimbatore, Tamil Nadu, India.India
文献类型
综述
期刊
Journal of cancer research and therapeutics2026 Apr 1
原文标识
PubMed 42617012 · DOI 10.4103/jcrt.jcrt_599_26