PO.CL05.02 · 临床研究
基于流式细胞术监测输注前后 CAR-T 细胞的持久性和免疫表型:1/2 期血液恶性肿瘤试验中的挑战
Flow cytometry-based monitoring of CAR-T cell persistence and immune phenotypes pre- and post-infusion: Challenges in Phase 1/2 hematologic malignancy trials
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摘要 Abstract
中文摘要
用于治疗血液恶性肿瘤的嵌合抗原受体 T 细胞(CAR-T)疗法近来的治疗疗效已通过临床结局以及对 CAR-T 细胞本身的特定评估来确定。检测验证通常使用掺入健康 PBMC 中的对照 CAR-T 细胞,但这无法完全再现输注后患者来源 CAR-T 细胞的表型和散射特征。这种差异给设门准确性和数据解读带来了挑战。
Precision for Medicine(PfM)开发并验证了一种多参数流式细胞术检测方法,用于定量 CAR-T 持久性并表征免疫表型,包括 CD4、CD8 亚群、记忆、效应分化以及活化/耗竭标志物。在开发和验证过程中,使用对照 CAR-T 细胞来建立设门策略。
与验证对照相比,输注后 CAR 阳性细胞表现出改变的散射特征和标志物表达。批间对照确保了基线的可重复性,但需要采用适应性设门策略才能在患者样本中准确识别 CAR-T 细胞群。这些调整实现了稳健的持久性追踪和免疫分析。临床样本分析在输注前后的外周血单个核细胞(PBMC)上进行。验证对照与输注后 CAR-T 细胞之间的差异凸显了动态和灵活设门策略的必要性。应对这些挑战对于肿瘤学试验中可靠的免疫监测以及将 CAR-T 持久性与临床结局相关联至关重要。
查看英文原文 English abstract
Chimeric antigen receptor T-cell (CAR-T) therapies that support hematological malignancies have recently had their treatment efficacy determined by both clinical outcomes and specific assessments of the CAR-T cells themselves. Assay validation typically uses control CAR-T cells spiked into healthy PBMCs, which do not fully replicate the phenotypic and scatter characteristics of patient-derived CAR-T cells after infusion. This discrepancy introduces challenges in gating accuracy and data interpretation.
Precision for Medicine (PfM) developed and validated a multiparameter flow cytometry assay to quantify CAR-T persistence and characterize immune phenotypes, including CD4, CD8 subsets, memory, effector differentiation, and activation/exhaustion markers. In the development and validation control CAR-T cells were used to establish the gating strategy.
Post-infusion CAR-positive cells exhibited altered scatter profiles and marker expression compared to validation controls. Inter-assay controls ensured baseline reproducibility, but adaptive gating strategies were required for accurate identification of CAR-T populations in patient samples. These adjustments enabled robust persistence tracking and immune profiling. Clinical sample analysis was performed on peripheral blood mononuclear cells (PBMCs) pre- and post-infusion. Differences between validation controls and post-infusion CAR-T cells underscore the need for dynamic and flexible gating strategies. Addressing these challenges is critical for reliable immune monitoring in oncology trials and for correlating CAR-T persistence with clinical outcomes.
利益披露 Disclosure
J. Benko,
Precision for Medicine Employment.
B. Ella,
Precision for Medicine Employment.
S. Splitt,
Precision for Medicine Employment.
A. Bisconte,
Angelina Bisconte Employment.
R. Owen,
Precision for Medicine Employment.
D. J. Phippard,
Precision for Medicine Employment, g., Board of Directors, non-salaried role), Stock.