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.
CAR-T(CAR-T)细胞在血液系统恶性肿瘤中的应用推动了这种免疫治疗形式的显著进展。
CELL INTELLIGENCE · 肿瘤细胞治疗研究
肿瘤细胞治疗研究
英文原题:Effective MRD clearance and long-term survival with CD19 CAR-T in pediatric B-ALL patients with MRD positivity or chemotherapy intolerance.
Effective MRD clearance and long-term survival with CD19 CAR-T in pediatric B-ALL patients with MRD positivity or chemotherapy intolerance.
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CD19 CAR-T 疗法在 MRD 阳性或无法耐受化疗的儿童 B-ALL 患者中展现出高效的 MRD 清除,并带来长期生存获益,安全性可控。
CD19靶向CAR-T 细胞疗法治疗复发/难治性(R/R)急性淋巴细胞白血病(ALL)疗效显著,但将其用于更早治疗线仍需进一步研究。本研究旨在评估CD19 CAR-T 治疗微小残留病(MRD)阳性或化疗不耐受儿童B细胞ALL(B-ALL)患者的疗效、安全性和细胞动力学。
2017至2021年,50例符合条件的儿童B-ALL患者(MRD阳性或化疗不耐受)接受CD19 CAR-T 治疗。疗效终点包括完全缓解(CR)、MRD阴性CR(MRD-CR)、总生存期(OS)和无白血病生存期(LFS)。通过qPCR定量CAR-T 细胞动力学参数(Cmax、0–28天药时曲线下面积AUC及持续存在情况),并分析其与临床结局的关联。安全性评估包括细胞因子释放综合征(CRS)、免疫效应细胞相关神经毒性综合征(ICANS)和感染。
输注后第28天,CR率和MRD-CR率分别为98%和96%。中位随访68.7个月时,5年OS率和LFS率分别为74.9%和67.8%。多因素分析显示,B细胞再生障碍(BCA)持续时间较长(风险比0.969,p=0.021)和女性(风险比0.235,p=0.032)是LFS的独立保护因素。细胞动力学分析显示,98%的患者体内扩增有效,Cmax中位数为每微克DNA 30,860个拷贝,达峰时间中位数为10.5天。与非MRD-CR组相比,第28天MRD-CR组的Cmax和0–28天AUC显著更高(p分别为0.017和0.029),CAR-T 持续存在情况也更好(p=0.030)。输注前肿瘤负荷未显著影响CAR-T 扩增或持续时间。BCA持续时间与CAR-T 持续存在呈正相关(r=0.570,p<0.001),但CAR-T 扩增参数(Cmax和AUC0–28天)对BCA无显著影响。安全性方面,16%的患者发生3级CRS,10%的患者发生ICANS。输注前MRD为10^-3是重度CRS的独立预测因素。
CD19 CAR-T 治疗可有效清除MRD,并为MRD阳性或化疗不耐受的儿童B-ALL患者带来长期生存获益,且安全性可控。即使肿瘤负荷较低,CAR-T 也能有效扩增。这些发现支持将CAR-T 治疗推进至更早治疗线,但其价值仍需前瞻性研究进一步验证。
While CD19-directed chimeric antigen receptor T-cell (CAR-T) therapy demonstrates remarkable efficacy in relapsed/refractory (R/R) ALL, its application in earlier treatment lines requires further investigation. This study aimed to evaluate the efficacy, safety, and cellular kinetics of CD19 CAR-T therapy in pediatric B-cell ALL (B-ALL) patients with minimal residual disease (MRD) positivity or chemotherapy intolerance.
Between 2017 and 2021, 50 eligible pediatric B-ALL patients (with positive MRD or chemotherapy intolerance) received CD19 CAR-T therapy. Efficacy endpoints included complete remission (CR), MRD-negative CR (MRD-CR), overall survival (OS), and leukemia-free survival (LFS). CAR-T cellular kinetics parameters (C max , AUC 0-28d , persistence) were quantified via qPCR and correlated with clinical outcomes. Safety assessment covered cytokine release syndrome (CRS), immune effector cell-associated neurotoxicity syndrome (ICANS), and infections.
At day 28 post-infusion, the CR and MRD-CR rates were 98% and 96%, respectively. With a median follow-up of 68.7 months, the 5-year OS and LFS rates were 74.9% and 67.8%. Multivariate analysis identified prolonged B-cell aplasia (BCA) duration (HR = 0.969, p = 0.021) and female sex (HR = 0.235, p = 0.032) as independent protective factors for LFS. Cellular kinetics analysis showed effective in vivo expansion in 98% of patients, with a median C max of 30,860 copies/ g DNA and a median time-to-peak of 10.5 days. The MRD-CR group at day 28 exhibited significantly higher C max and AUC 0-28d ( p = 0.017; p = 0.029) and superior CAR-T persistence ( p = 0.030) compared to the non-MRD-CR group. Pre-infusion tumor burden levels did not significantly impact CAR-T expansion or duration. BCA duration positively correlated with CAR-T persistence (r=0.570, p < 0.001), but CAR-T expansion parameters (Cmax and AUC0-28d) did not significantly influence BCA. Regarding safety, grade 3 CRS occurred in 16% of patients, and ICANS in 10%. Pre-infusion MRD 10 -3 was an independent predictor of severe CRS.
CD19 CAR-T therapy demonstrates highly effective MRD clearance and provides long-term survival benefits with a manageable safety profile in pediatric B-ALL patients with MRD positivity or chemotherapy intolerance. Effective CAR-T expansion occurs even at low tumor burdens. These findings support the potential for advancing CAR-T therapy into earlier treatment lines, although its value requires further validation in prospective studies.
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