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CD19 CAR-T 细胞疗法 (GLPG5101) 治疗复发/难治性 B 细胞非霍奇金淋巴瘤 (ATALANTA-1):单臂、多中心 1/2 期研究的 1 期结果

英文原题:CD19 CAR T-cell therapy (GLPG5101) for relapsed or refractory B-cell non-Hodgkin lymphoma (ATALANTA-1): phase 1 results from a single-arm, multicentre, phase 1/2 study.

查看英文原题

CD19 CAR T-cell therapy (GLPG5101) for relapsed or refractory B-cell non-Hodgkin lymphoma (ATALANTA-1): phase 1 results from a single-arm, multicentre, phase 1/2 study.

PubMed 2026/09/01(内容时间) Lancet Haematol Q1 · IF 20.4(JCR 2025)

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研究概要

本研究结果显示,在重度经治的 B 细胞非霍奇金淋巴瘤中,快速多中心分散式生产并递送新鲜 CAR-T 细胞疗法具有可行性。

中文摘要

嵌合抗原受体(CAR)T细胞疗法已改变B细胞非霍奇金淋巴瘤的治疗格局,但集中式生产流程物流复杂、从采集到回输的周期较长,推高了成本并限制治疗可及性。本研究旨在评估通过分散式流程生产的新鲜CD19 CAR-T 细胞产品GLPG5101的安全性,并确定Ⅱ期推荐剂量。

本研究为ATALANTA-1 Ⅰ/Ⅱ期单臂研究中的Ⅰ期剂量递增部分,在荷兰和比利时的5家医院开展。入组对象为年龄≥18岁、经组织学确诊为弥漫大B细胞淋巴瘤(DLBCL)、滤泡性淋巴瘤、边缘区淋巴瘤(MZL)或套细胞淋巴瘤(MCL)的患者;患者既往须接受过至少2线治疗,依据Lugano分类有可测量病灶,东部肿瘤协作组(ECOG)体能状态评分为0–2分,且器官功能充足。患者接受GLPG5101单次静脉输注,剂量分为3个水平:剂量水平1(35–50 × 10^6个有活性的CAR阳性T细胞)、剂量水平2(85–110 × 10^6个有活性的CAR阳性T细胞)和剂量水平3(200–250 × 10^6个有活性的CAR阳性T细胞)。Ⅰ期部分采用贝叶斯最优区间设计。主要终点为:接受任一剂量新鲜GLPG5101患者的安全性(截至治疗结束[第14周]的不良事件和严重不良事件发生率,以及截至第28天的剂量限制性毒性[DLT];不符合产品放行标准者不纳入安全性分析,但剂量不符除外),以及Ⅱ期推荐剂量的确定。本研究已在ClinicalTrials.gov注册(NCT06561425),目前已停止招募。

2022年3月15日至2024年9月10日期间,共筛查27例患者,其中24例入组;这24例患者均接受了白细胞单采、淋巴细胞清除化疗和GLPG5101输注。数据截止日期为2025年6月1日。在意向治疗人群(n=24)中,年龄中位数为66.5岁(IQR,59.0–71.5);15例(63%)为男性,9例(38%)为女性,21例(88%)为白人。24例患者中有1例接受了不符合标准的产品,因此未纳入安全性分析人群。中位随访时间为24.0个月(IQR,20.7–24.9)。共报告5例DLT:3级血小板减少(n=1,剂量水平1)、腹腔内出血死亡(n=1,剂量水平2),以及4级持续性中性粒细胞减少(至第28天仍未缓解至2级或以下;剂量水平1有1例,剂量水平2有2例)。安全性分析人群中的23例患者均发生3级或以上治疗期间出现的不良事件;最常见的事件为中性粒细胞减少(22例[96%])、白细胞减少(9例[39%])、淋巴细胞减少(7例[30%])、贫血(6例[26%])和血小板减少(5例[22%])。4例患者发生治疗相关死亡:1例在14周治疗期内因腹腔内出血死亡;另3例在治疗期结束后死亡,死因为大肠杆菌脓毒症(n=1)、免疫效应细胞相关噬血细胞性淋巴组织细胞增多症(n=1)和COVID-19(n=1)。安全性审查委员会将1.10 × 10^8个(范围为0.50–1.10 × 10^8个)有活性的CAR-T 细胞选定为Ⅱ期推荐剂量。 解释:本研究结果表明,在经多线治疗的B细胞非霍奇金淋巴瘤患者中,快速开展多中心分散式生产并输注新鲜CAR-T 细胞疗法是可行的。ATALANTA-1的Ⅱ期部分将进一步提供该疗法临床活性和安全性的信息。 资金来源:CellPoint、Lakefront Biotherapeutics。

展开英文摘要原文

Chimeric antigen receptor (CAR) T-cell therapies have transformed the treatment of B-cell non-Hodgkin lymphoma, but centralised manufacturing-with its complex logistics and long vein-to-vein times-drives up costs and restricts access. We aimed to evaluate the safety of GLPG5101, a fresh, CD19 CAR T-cell product manufactured through a decentralised process, and determine the recommended phase 2 dose.

This phase 1 dose-escalation part of the ATALANTA-1 phase 1/2, single-arm study, was executed in five hospitals in the Netherlands and Belgium. Patients aged 18 years or older, with histologically confirmed diffuse large B-cell lymphoma (DLBCL), follicular lymphoma, marginal zone lymphoma (MZL), or mantle cell lymphoma (MCL) after two or more lines of therapy, measurable disease according to the Lugano classification, Eastern Cooperative Oncology Group Performance Status 0-2, and adequate organ function were enrolled. Patients were treated with a single intravenous infusion at one of three dose levels of GLPG5101 (dose level 1 [35-50 10 6 viable CAR + T-cells], dose level 2 [85-110 10 6 viable CAR + T-cells], and dose level 3 [200-250 10 6 viable CAR + T-cells]). The phase 1 part of the study applied a Bayesian Optimal Interval design and the primary endpoints were safety (incidence of adverse events and serious adverse events until end of treatment [week 14], and dose-limiting toxicities [DLTs] until day 28) in patients who received fresh GLPG5101 at any dose (excluding recipients of non-conforming product [not meeting prespecified release criteria other than dose]) and determination of the recommended phase 2 dose. The study was registered with ClinicalTrials.gov (NCT06561425) and is closed for recruitment.

From March 15, 2022, to Sept 10, 2024, 27 patients were screened for eligibility, 24 of whom were enrolled, underwent leukapheresis and lymphodepleting chemotherapy and received GLPG5101. Data cutoff was June 1, 2025. In the intention-to-treat population (n=24), the median age was 66 5 years (IQR 59 0-71 5), 15 (63%) patients were male, nine (38%) were female, and 21 (88%) were White. One of the 24 patients received a non-conforming product and was excluded from the safety analysis population. Median follow-up was 24 0 months (IQR 20 7-24 9). Five DLTs were reported: grade 3 thrombocytopenia (n=1, dose level 1), death from intra-abdominal haemorrhage (n=1, dose level 2), and grade 4 prolonged neutropenia not resolving to grade 2 or lower within 28 days (n=1 at dose level 1 and n=2 at dose level 2). All 23 patients in the safety analysis population had grade 3 or higher treatment-emergent adverse events; the most common were neutropenia (22 [96%]), leukopenia (nine [39%]), lymphopenia (seven [30%]), anaemia (six [26%]), and thrombocytopenia (five [22%]). Treatment-related deaths occurred in four patients: one during the 14-week treatment period due to intra-abdominal haemorrhage, and three after the treatment period due to Escherichia coli sepsis (n=1), immune-effector cell-associated haemophagocytic lymphohistiocytic syndrome (n=1), and COVID-19 (n=1). The safety review committee selected 110 10 6 (range 50-110 10 6 ) viable CAR T-cells as the recommended phase 2 dose. INTERPRETATION: The results of this study showed the feasibility of rapid multicentre decentralised manufacturing and delivery of fresh CAR T-cell therapy in heavily pretreated B-cell non-Hodgkin lymphoma. The phase 2 part of ATALANTA-1 will provide further information on clinical activity and safety. FUNDING: CellPoint, Lakefront Biotherapeutics.

论文信息

作者
Kersten MJ、Kuipers MT、Mutsaers PGNJ、Willems E、Saevels K、Dreyling M、Jacobson C、Bishop MR
单位
Department of Hematology, Cancer Center Amsterdam, Amsterdam University Medical Center, University of Amsterdam, Amsterdam, Netherlands. Electronic address: m.j.kersten@amsterdamumc.nl.Netherlands
文献类型
多中心研究 · I 期临床试验 · II 期临床试验
期刊
The Lancet. Haematology2026 Sep
原文标识
PubMed 42660131 · DOI 10.1016/S2352-3026(26)00192-4