肿瘤细胞治疗研究
英文原题:Impact of Disease Biology and Bridging Strategy on Outcomes After CAR-T Cell Therapy in Relapsed/Refractory Multiple Myeloma.
Impact of Disease Biology and Bridging Strategy on Outcomes After CAR-T Cell Therapy in Relapsed/Refractory Multiple Myeloma.
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对于复发/难治性多发性骨髓瘤(RRMM),在靶向B细胞成熟抗原(BCMA)的嵌合抗原受体(CAR)T细胞治疗前通常会给予桥接治疗,以在产品制备期间维持疾病控制。
然而,最佳桥接方案及治疗强度尚不明确,治疗结局主要由桥接策略还是基础疾病生物学决定,仍存在争议。本研究旨在评估不同桥接策略对RRMM患者BCMA CAR-T 治疗结局的影响,同时校正疾病生物学、输注前应答和基线造血储备。本回顾性多中心真实世界研究纳入2024年1月至2025年7月间在奥地利接受BCMA CAR-T 细胞治疗(idecabtagene vicleucel或ciltacabtagene autoleucel)的90例连续RRMM患者。桥接方案分为多药化疗(PCHT)、talquetamab方案(Tal)或其他策略。采用Kaplan-Meier法估算生存结局,并利用单变量及多变量Cox比例风险模型分析与无进展生存期(PFS)相关的因素;以逻辑回归分析早期毒性相关因素。
中位随访9.9个月后,估算中位PFS为17.1个月。未校正分析中,与其他桥接方式相比,PCHT与较差PFS相关;但校正髓外病变/浆细胞白血病(EMD/PCL)和国际骨髓瘤工作组高危状态后,该关联不再保留。CAR-T 产品类型和既往治疗线数对PFS无影响。多变量分析中,EMD/PCL是较差PFS最强的独立预测因素(校正风险比4.85),而国际骨髓瘤工作组高危状态不具有独立预后意义。在一项次要模型中,CAR-T 输注前达到至少非常好的部分缓解与PFS改善呈趋势,但未达到统计学显著性。基于talquetamab的桥接方案与数值上较好的PFS相关,且未增加毒性。CAR-HEMATOTOX评分可独立预测较差PFS。
值得注意的是,PCHT与更高CAR-HEMATOTOX评分、持续性血细胞减少、感染并发症增加或作为CAR-T 扩增替代指标的绝对淋巴细胞计数(ALC)降低均无关。在这项全国性真实世界分析中,疾病生物学,尤其是EMD/PCL,是CAR-T 治疗后结局的主要决定因素,其影响超过桥接策略。这些发现提示,强化桥接后观察到的较差结局主要由不利的基线疾病特征驱动,而非治疗相关效应,支持依据疾病生物学选择桥接方案,并凸显CAR-T 输注前实现最佳疾病控制的重要性。
Bridging therapy is commonly administered prior to B-cell maturation antigen (BCMA)-directed chimeric antigen receptor (CAR)-T cell therapy in relapsed/refractory multiple myeloma (RRMM) to maintain disease control during the manufacturing period.
However, the optimal choice and intensity of bridging therapy remain unclear, and it is debated whether outcomes are primarily influenced by bridging strategy or underlying disease biology.
We aimed to evaluate the impact of different bridging strategies on outcomes after BCMA-directed CAR-T cell therapy in RRMM, while accounting for disease biology, response prior to infusion, and baseline hematopoietic reserve. This retrospective multicenter real-world study included 90 consecutive patients with RRMM treated with BCMA-directed CAR-T cells (idecabtagene vicleucel or ciltacabtagene autoleucel) in Austria between January 2024 and July 2025. Bridging approaches were categorized as polychemotherapy (PCHT), talquetamab-based regimens (Tal), or other strategies.
Survival outcomes were estimated using the Kaplan-Meier method, and factors associated with progression-free survival (PFS) were analyzed using univariable and multivariable Cox proportional hazards models. Logistic regression models were applied to assess associations with early toxicity. After a median follow-up of 9. 9 months, estimated median PFS was 17. 1 months. In unadjusted analyses, PCHT was associated with inferior PFS compared with other bridging approaches.
However, this association was not retained after adjustment for extramedullary disease/plasma cell leukemia (EMD/PCL) and International Myeloma Working Group high-risk status. CAR-T product type and number of prior lines of therapy showed no effect on PFS. EMD/PCL emerged as the strongest independent predictor of inferior PFS in multivariable analysis (adjusted hazard ratio 4.
85), whereas International Myeloma Working Group high-risk status was not independently prognostic. In a secondary model, achieving at least a very good partial response prior to CAR-T infusion was associated with a trend toward improved PFS but did not reach statistical significance. Talquetamab-based bridging was associated with numerically favorable PFS without increased toxicity. The CAR-HEMATOTOX score independently predicted inferior PFS.
Importantly, PCHT was not associated with higher CAR-HEMATOTOX scores, prolonged cytopenia, increased infectious complications, or lower ALC levels as a surrogate for CAR-T expansion. In this nationwide real-world analysis, disease biology-particularly the presence of EMD/PCL-was the dominant determinant of outcome after CAR-T cell therapy, outweighing the impact of bridging strategy.
These findings suggest that inferior outcomes observed after intensive bridging are largely driven by adverse baseline disease characteristics rather than treatment-related effects, supporting a biology-adapted approach to bridging and emphasizing the importance of achieving optimal disease control prior to CAR-T infusion.
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