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:Adverse events and efficacy of second-round CAR-T cell therapy in relapsed pediatric B-ALL.
Adverse events and efficacy of second-round CAR-T cell therapy in relapsed pediatric B-ALL.
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尽管由于疾病严重程度较高,CAR-T2 的缓解率不如 CAR-T1,但其在 CRS、CRES、感染和器官损伤方面的安全性仍然良好。
嵌合抗原受体(CAR)T 细胞疗法已改变复发/难治性 B 急性淋巴细胞白血病(B-ALL)儿童患者的治疗方式,但目前关于该人群第二轮 CAR-T 治疗相关挑战的数据有限。
分析 2019 年 6 月至 2023 年 5 月单中心接受第二轮 CAR-T 治疗的 9 例儿童病历。在临床试验过程中,评估 CRS、CRES、感染、血液学毒性、器官损伤等不良事件以及 CAR-T 应答。
除 1 例因睾丸复发选择 CAR-T 治疗外,其余患者均因骨髓单独复发或骨髓合并其他部位复发而接受 CAR-T。第一轮(CAR-T1)和第二轮(CAR-T2)的 CAR-T 输注剂量无差异。两轮治疗的 CRS 发生率和严重程度均无差异。此外,CRES 发生率在 CAR-T1 中较高(3/9,33.3%),在 CAR-T2 中为 1/9(11.1%)。CAR-T1 与 CAR-T2 之间 IL-2、IL-4、IL-6、IL-10、IFN-γ 和 TNF-α 水平没有差异,但 CAR-T1 患者 IL-17A 峰值显著高于 CAR-T2 患者(p = 0.011)。CAR-T1 后早期和晚期感染率均高于 CAR-T2。根据 ANC、血红蛋白和血小板动态变化,CAR-T 治疗后 ANC 和血小板明显下降。CAR-T1 组严重血小板减少和严重贫血发生率似乎高于 CAR-T2 组。CAR-T1 和 CAR-T2 的 MRD 阴性完全缓解率分别为 100% 和 44.4%(p = 0.029)。所有患者在 CAR-T2 后均发生了事件(复发、化疗、移植或死亡),其中 1 例死亡,3 例自动出院,其余 5 例存活。
由于疾病严重程度较高,CAR-T2 缓解率不及 CAR-T1,但在 CRS、CRES、感染和器官损伤方面的安全性仍然良好。因此,CAR-T2 仍是治疗儿童复发 B-ALL 的可行选择。
Chimeric antigen receptor (CAR) T-cell therapy has transformed the treatment approach for pediatric patients suffering from relapsed/refractory B-cell acute lymphoblastic leukemia (B-ALL). However, there was a paucity of data on the challenges associated with second-round CAR-T therapy in this population.
Medical records of nine pediatric patients who received second-round CAR-T therapy in a single center from June 2019 to May 2023 were analyzed. Throughout the course of the clinical trial, we evaluated adverse events including CRS, CRES, infections, hematologic toxicity, and organ injury, as well as CAR-T responses.
Except for one patient who chose CART therapy due to testicular relapse, the remaining patients had indications for CAR-T therapy due to relapse with bone marrow alone or combined with other site. There were no difference between the transfusion dose of CART1 and CART2. No differences of incidence and grade of CRS was found between the first-round CAR-T therapy (CART1) and second-round CAR-T therapy (CART2). Additionally, we found that the incidence of CRES was higher for CART1(3/9,33.3%) than CART2(1/9,11.1%). Our findings revealed that there were no differences of IL-2, IL-4, IL-6, IL-10, IFN- , and TNF- between CART1 and CART2, but the peak level of IL-17A was significantly higher in patients receiving CART1 compared to those receiving CART2 (p = .011). Early and late infection rates after CART1 were higher than CART2. Based on the dynamic changes of ANC, hemoglobin and platelet, ANC, and platelet were reduced obviously post CART. It seems that the incidences of severe thrombocytopenia and severe anemia were higher in the CART1 group compared to CART2. The MRD-negative CR rates for CART1 and CART2 are 100% and 44.4%, respectively (p = .029). All patients experienced events (relapse, chemotherapy, transplantation, or death) after receiving CART2, including one died, three discharged automatically, and the remaining five patients survived.
Although the remission rate of CART2 is not as high as the CART1 due to the severity of the disease, its safety regarding CRS, CRES, infections, and organ injury is still excellent. Therefore, CART2 remains a viable option for treating pediatric relapsed B-ALL.
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