CAR-T(CAR-T)细胞疗法在非肿瘤性疾病中的应用
Chimeric antigen receptor T (CAR-T) cell therapy in non-oncological diseases.
CELL INTELLIGENCE · 肿瘤细胞治疗研究
肿瘤细胞治疗研究
英文原题:Neurofilament light chain levels as an early predictive biomarker of neurotoxicity after CAR T-cell therapy.
Neurofilament light chain levels as an early predictive biomarker of neurotoxicity after CAR T-cell therapy.
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免疫效应细胞相关神经毒性综合征 (ICANS) 仍然是 CD19靶向嵌合抗原受体 (CAR) T细胞疗法相关发病的重要原因。早期预测将发生 ICANS 的患者对于更好地指导高危患者的个体化管理至关重要,但特异性预测标志物仍然缺失。血清神经丝轻链 (NfL) 水平是神经系统疾病中神经轴突损伤的敏感指标。CAR-T 细胞输注时 NfL 水平升高与 ICANS 的严重程度相关,但其用于更早识别亚临床神经损伤患者的效用尚未得到评估。
我们研究了 2019年1月至2023年2月期间在圣路易医院接受商业化 CAR-T 细胞治疗复发/难治性 B细胞淋巴瘤的所有连续成人患者。排除已有或当前患有神经系统疾病的患者。在决定治疗时(即白细胞单采术当天)和治疗时(即输注当天)采集的冷冻血清中定量 NfL 水平。在 150 例研究患者中,28% 发生任何级别的 ICANS,包括 15.3% 为 2-4级。接受含 CD28 结构域的 CAR 构建体(58% 的患者)是 2-4级 ICANS 的最强预测因素。在白细胞单采术和输注时,2-4级 ICANS 患者的血清 NfL 水平均显著高于 0-1级 ICANS 患者。在多变量模型中,高于截断值的 NfL 与白细胞单采术时(NfL>75 pg/mL,OR 4.2,95% CI 1.2 to 14.2,p=0.022)和输注时(NfL>58 pg/mL,OR 4.3,95% CI 1.3 to 13.7,p=0.015)的 2-4级 ICANS 独立相关。
总之,在决定进行 CAR-T 细胞制备时,高 NfL 水平可能代表潜在的神经轴突完整性丧失的早期替代指标,而这种丧失会增加后续神经毒性的风险。将 NfL 水平纳入基于每位患者风险特征的决策过程,有助于在可能的情况下确定合适的 CAR 产品,并指导 ICANS 的预防性或治疗性管理。
Immune effector cell-associated neurotoxicity syndrome (ICANS) remains a significant cause of morbidity associated with CD19-targeted chimeric antigen receptor (CAR) T-cell therapy. Early prediction of patients who will develop ICANS would be crucial to better guide individualized management of high-risk patients, but specific predictive markers are still missing.
Serum neurofilament light chain (NfL) levels are a sensitive indicator of neuroaxonal injury in neurological diseases. Elevated NfL levels at the time of CAR T-cell infusion have been associated with the severity of ICANS, but their utility for earlier identification of patients with subclinical neurological damage has not been evaluated.
We studied all consecutive adult patients who received commercial CAR T cells for relapsed/refractory B-cell lymphomas at Saint-Louis Hospital between January 2019 and February 2023. Patients with pre-existing or current neurological disease were excluded. NfL levels were quantified in frozen serum collected at the time of the decision to treat (ie, the day of leukapheresis) and at the time of treatment (ie, the day of infusion). Of the 150 study patients, 28% developed ICANS of any grade, including 15. 3% of grade 2-4.
Receiving a CAR construct with a CD28 domain (58% of patients) was the strongest predictor of grade 2-4 ICANS. Serum NfL levels were significantly higher in patients with grade 2-4 ICANS than in those with grade 0-1 ICANS, both at the time of leukapheresis and infusion. In multivariate models, NfL above the cut-off value was independently associated with grade 2-4 ICANS at leukapheresis (NfL>75 pg/mL, OR 4. 2, 95% CI 1. 2 to 14. 2, p=0. 022) and infusion (NfL>58 pg/mL, OR 4. 3, 95% CI 1. 3 to 13. 7, p=0. 015).
In conclusion, high NfL levels at the time of the decision to proceed with CAR T-cell manufacturing may represent an early surrogate of underlying loss of neuroaxonal integrity that increases the risk of subsequent neurotoxicity. Incorporating NfL levels into the decision-making process based on each patient's risk profile could help determine the appropriate CAR product when possible, and guide the prophylactic or therapeutic management of ICANS.
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