一种用于克服非小细胞肺癌治疗中抗原异质性的多靶向 CAR-T 细胞平台
A Multi-Targeting Chimeric Antigen Receptor-T Cell Platform to Overcome Antigen Heterogeneity in the Treatment of Non-Small Cell Lung Cancer.
这些发现支持采用多靶点CAR-T 策略来应对NSCLC及可能其他实体瘤中的抗原异质性。
肿瘤细胞治疗研究
英文原题:Immune-preserving radiotherapy and perioperative immunotherapy in stage III NSCLC: a narrative review of current management and future directions for IIIA/IIIB NSCLC.
Immune-preserving radiotherapy and perioperative immunotherapy in stage III NSCLC: a narrative review of current management and future directions for IIIA/IIIB NSCLC.
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可手术 IIIA 期采用双轨算法-围手术期 chemo-IO,不可手术 IIIA/IIIB 期采用 cCRT 后 durvalumab,仍是循证标准。优先保留免疫功能的改良策略(iOAR 感知计划、有限野和大分割策略)是有前景的研究方向,但不应牺牲肿瘤控制。在 oncogene-driven 疾病患者中,应考虑靶向治疗。当进行手术切除时,获取组织用于分子分型,以及在临床试验背景下进行 TIL 扩增,可能支持个体化治疗策略。这些研究性方法需要前瞻性验证。
III期非小细胞肺癌(NSCLC)是一种异质性疾病,其结局受到远处失败、治疗相关毒性以及放化疗期间免疫功能丧失的限制。随机试验支持可切除疾病采用围手术期免疫治疗(IO),不可切除疾病在同步放化疗(cCRT)后采用度伐利尤单抗巩固治疗。免疫保护性放疗(RT)——包括免疫危及器官(iOAR)和免疫细胞有效剂量(EDIC)感知计划、审慎的大分割放疗以及立体定向体部放疗(SBRT)或空间分割放疗(SFRT)——是优化治疗期间免疫能力的新兴手段。本研究旨在通过双轨框架(可切除与不可切除疾病)综合IIIA/IIIB期管理的最新证据,概述整合手术、RT和全身治疗的实际算法,并强调包括SFRT和TIL(肿瘤浸润淋巴细胞)为基础的策略在内的转化研究策略,同时明确区分已确立的标准与研究中概念。
我们对关键性试验和实践塑造性研究进行了叙述性综述,重点关注围手术期IO(新辅助化疗-IO ± 辅助IO)、PACIFIC范式、RT剂量/分割策略以及减轻RT相关淋巴细胞减少的方法。我们提出了一个基于证据的临床路径和免疫保护性RT的检查清单。关键内容与发现:新辅助nivolumab-化疗可改善可切除疾病的病理完全缓解(pCR)、无事件生存期(EFS)和总生存期(OS)(CheckMate 816)。围手术期pembrolizumab(KEYNOTE-671)、durvalumab(AEGEAN)和nivolumab(CheckMate 77T)可显著延长EFS。在不可切除的III期疾病中,cCRT后使用durvalumab可带来持久的OS获益(5年OS 42.9%),而统一剂量递增至74 Gy并未改善生存。RT相关淋巴细胞减少常见且具有预后意义;减少低剂量照射范围、尽量减少对iOARs的暴露以及优化靶区选择可能有助于保留免疫能力。SBRT/SFRT整合和基于TIL的细胞治疗方法值得前瞻性检验,但仍处于研究阶段。
Stage III non-small cell lung cancer (NSCLC) is a heterogeneous disease with outcomes limited by distant failure, treatment-related toxicities, and loss of immune fitness during chemoradiation. Randomized trials support perioperative immunotherapy (IO) for resectable disease and consolidation durvalumab after concurrent chemoradiotherapy (cCRT) for unresectable disease. Immune-preserving radiotherapy (RT)-encompassing immune organ-at-risk (iOAR) and effective dose to immune cells (EDIC)-aware planning, judicious hypofractionation, and stereotactic body radiation therapy (SBRT) or spatially fractionated radiation therapy (SFRT)-is an emerging lever to optimize immune competence during treatment. This study aims to synthesize contemporary evidence for stage IIIA/IIIB management through a dual-track framework (resectable versus unresectable disease), outline practical algorithms integrating surgery, RT, and systemic therapy, and highlight translational strategies including SFRT and tumor-infiltrating lymphocyte (TIL)-based approaches, while clearly distinguishing established standards from investigational concepts.
We conducted a narrative review of pivotal trials and practice-shaping studies, emphasizing perioperative IO (neoadjuvant chemo-IO ± adjuvant IO), the PACIFIC paradigm, RT dose/fractionation strategies, and approaches to mitigate RT-related lymphopenia. We propose an evidence-anchored clinical pathway and a checklist for immune-preserving RT. KEY CONTENT AND FINDINGS: Neoadjuvant nivolumab-chemotherapy improves pathological complete response (pCR), event-free survival (EFS), and overall survival (OS) in resectable disease (CheckMate 816). Perioperative pembrolizumab (KEYNOTE-671), durvalumab (AEGEAN), and nivolumab (CheckMate 77T) significantly prolong EFS. In unresectable stage III, durvalumab after cCRT confers durable OS benefit (5-year OS 42.9%), whereas uniform dose escalation to 74 Gy did not improve survival. RT-related lymphopenia is frequent and prognostic; reducing low-dose bath, minimizing exposure to iOARs, and optimizing target selection may preserve immune competence. SBRT/SFRT integrations and TIL-based cellular approaches warrant prospective testing but remain investigational.
A dual-track algorithm-perioperative chemo-IO for operable IIIA and cCRT followed by durvalumab for unresectable IIIA/IIIB-remains the evidence-based standard. Refinements that prioritize immune preservation (iOAR-aware planning, limited-field and hypofractionated strategies) represent promising areas of investigation that should not compromise tumor control. In patients with oncogene-driven disease, targeted therapy should be considered. When surgical resection is performed, tissue acquisition for molecular profiling and, in the context of clinical trials, TIL expansion may support personalized treatment strategies. These investigational approaches require prospective validation.
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