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。
CELL INTELLIGENCE · 肿瘤细胞治疗研究
肿瘤细胞治疗研究
英文原题:A randomized phase II clinical trial of stereotactic body radiation therapy (SBRT) and systemic pembrolizumab with or without intratumoral avelumab/ipilimumab plus CD1c (BDCA-1)(+)/CD141 (BDCA-3)(+) myeloid dendritic cells in solid tumors.
A randomized phase II clinical trial of stereotactic body radiation therapy (SBRT) and systemic pembrolizumab with or without intratumoral avelumab/ipilimumab plus CD1c (BDCA-1)(+)/CD141 (BDCA-3)(+) myeloid dendritic cells in solid tumors.
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在寡转移患者中,SBRT 联合 pembrolizumab,加或不加 IT avelumab/ipilimumab 及 IT myDC,是安全可行的,并具有临床意义的肿瘤缓解率。然而,该研究未能达到其主要终点。
放疗(RT)与免疫检查点阻断(ICB)具有协同作用。肿瘤微环境中的 CD1c(BDCA-1)+/CD141(BDCA-3)+ 髓系树突状细胞(myDC)在启动效应 T 细胞应答及对 ICB 的应答中不可或缺。
在这项II期临床试验中,既往接受过抗PD-1 ICB治疗的寡转移患者(不限瘤种)接受白细胞分离术,随后分离CD1c(BDCA-1)+/CD141(BDCA-3)+ myDC。在大分割立体定向体部放疗(3×8 Gy)后,患者按3:1随机分组。分别地,在A组(立即治疗组),给予瘤内(IT)ipilimumab(10 mg)和avelumab(40 mg)联合静脉(IV)pembrolizumab(200 mg),随后IT注射myDC;之后继续IV pembrolizumab和IT ipilimumab/avelumab(每3周一次)。在B组(同期对照组),患者接受IV pembrolizumab,并可在疾病进展时交叉。主要终点为1年无进展生存率(PFS)。次要终点为安全性、可行性、客观缓解率、PFS和总生存期(OS)。
共纳入13例患者(A组10例,其中非小细胞肺癌8例,黑色素瘤5例)。2例患者交叉。A组1年PFS率为10%,B组为0%。A组有2例患者获得部分缓解,1例患者最佳疗效为疾病稳定。B组有1例患者获得SD。中位PFS和OS分别为21.8周(A组)对24.9周(B组),以及62.7周对57.9周。医源性气胸是唯一一例3级治疗相关不良事件。
Radiotherapy (RT) synergizes with immune checkpoint blockade (ICB). CD1c(BDCA-1) + /CD141(BDCA-3) + myeloid dendritic cells (myDC) in the tumor microenvironment are indispensable at initiating effector T-cell responses and response to ICB.
In this phase II clinical trial, anti-PD-1 ICB pretreated oligometastatic patients (tumor agnostic) underwent a leukapheresis followed by isolation of CD1c(BDCA-1) + /CD141(BDCA-3) + myDC. Following hypofractionated stereotactic body RT (3 × 8 Gy), patients were randomized (3:1). Respectively, in arm A (immediate treatment), intratumoral (IT) ipilimumab (10 mg) and avelumab (40 mg) combined with intravenous (IV) pembrolizumab (200 mg) were administered followed by IT injection of myDC; subsequently, IV pembrolizumab and IT ipilimumab/avelumab were continued (q3W). In arm B (contemporary control arm), patients received IV pembrolizumab, with possibility to cross-over at progression. Primary endpoint was 1-year progression-free survival rate (PFS). Secondary endpoints were safety, feasibility, objective response rate, PFS, and overall survival (OS).
Thirteen patients (10 in arm A, eight non-small cell lung cancer, and five melanoma) were enrolled. Two patients crossed over. One-year PFS rate was 10% in arm A and 0% in arm B. Two patients in arm A obtained a partial response, and one patient obtained a stable disease as best response. In arm B, one patient obtained a SD. Median PFS and OS were 21.8 weeks (arm A) versus 24.9 (arm B), and 62.7 versus 57.9 weeks, respectively. An iatrogenic pneumothorax was the only grade 3 treatment-related adverse event.
SBRT and pembrolizumab with or without IT avelumab/ipilimumab and IT myDC in oligometastatic patients are safe and feasible with a clinically meaningful tumor response rate. However, the study failed to reach its primary endpoint. TRIAL REGISTRATION NUMBER: Clinicaltrials.gov: NCT04571632 (09 AUG 2020). EUDRACT: 2019-003668-32. Date of registration: 17 DEC 2019, amendment 1: 6 MAR 2021, amendment 2: 4 FEB 2022.
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