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:Post-transplant relapse in pediatric acute lymphoblastic leukemia in the era of CAR-T cell therapy. A multicenter analysis of Grupo Español de Trasplante Hematopoyetico y Terapia Celular (GETH-TC) Pediatric Committee.
Post-transplant relapse in pediatric acute lymphoblastic leukemia in the era of CAR-T cell therapy. A multicenter analysis of Grupo Español de Trasplante Hematopoyetico y Terapia Celular (GETH-TC) Pediatric Committee.
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对于 HSCT 后复发的 ALL 患儿,如果复发发生在首次移植后 6 个月以上且不存在慢性 GVHD,则获得长期生存的机会相当大。
造血干细胞移植(HSCT)后复发的急性淋巴细胞白血病(ALL)的管理方式已有显著演变。最初的治疗选择仅限于姑息治疗、挽救性化疗和第二次HSCT。目前治疗重点已转向创新免疫疗法,尤其是CAR-T 细胞疗法。
本研究旨在:(i)分析HSCT后复发的结局,并确定与长期生存相关的预后因素;(ii)评估并比较不同治疗策略,包括免疫治疗(如CAR-T 细胞疗法),以及再次缓解后进行第二次HSCT,或在高危病例中联合采用两种治疗。
这项回顾性多中心研究评估儿童ALL患者HSCT后复发的结局。主要终点包括无病生存期(DFS)、复发率和非复发死亡率(NRM)。研究纳入西班牙移植小组儿科委员会(GETH-TC)10家医院于2013至2021年间收治的73名HSCT后复发ALL患儿。其中56人(77%)为B细胞ALL,17人(23%)为T细胞ALL。
首次HSCT后复发的中位时间为6个月。31名患者接受CAR-T 细胞治疗,均达到微小残留病(MRD)阴性的完全缓解。然而,2名患者因细胞因子释放综合征(CRS)早期死亡,非复发死亡率为7.4%。16名患者在CAR-T 治疗后复发,累积发生率为65.11%。其中7人随后接受第二次HSCT。DFS唯一显著的预后因素是CAR-T 治疗前的MRD水平:MRD≥3%的患者DFS为20.8%,MRD<3%的患者为100%(p=0.002)。CAR-T 治疗后中位随访17个月时,DFS为28.10%,总生存期(OS)为40.10%。共有23名患者接受第二次异基因HSCT,其中7人此前接受过CAR-T 治疗。3人死于非复发原因(累积发生率:19.10%)。第二次HSCT后8人复发(累积发生率:52.13%),其中2人经CAR-T 治疗后成功。第二次HSCT后中位随访33个月时,DFS为29.11%,OS为32.10%。17名T细胞ALL患者中,仅2人在第二次HSCT后存活,DFS为12.9%。73名患者中有20人存活,中位随访4年(DFS:20.5%)。HSCT后复发时间是结局最强的预测因素;首次HSCT后6个月内复发的患者无人存活。首次移植期间发生慢性移植物抗宿主病(GVHD)的患者DFS有较差趋势,其中9名复发患者有8名尽管接受挽救治疗仍复发(p<0.07)。
首次移植后超过6个月才复发且未发生慢性GVHD的ALL患儿,获得长期生存的机会相当可观。治疗模式已转向免疫疗法,包括单克隆抗体和CAR-T 治疗。CAR-T 治疗后桥接至第二次异基因HSCT能否改善长期生存,仍存在争议。
The management of relapsed acute lymphoblastic leukemia (ALL) after hematopoietic stem cell transplantation (HSCT) has evolved significantly. Initially, treatment options were limited to palliative care, salvage chemotherapy, and second HSCT. Currently, the focus has shifted to innovative immunotherapies, particularly CAR T-cell therapy. AIMS: This study aims to: (i) Analyze outcomes after relapse following HSCT and identify prognostic factors associated with prolonged survival. (ii) To evaluate and compare treatment strategies, including immunotherapy (e.g., CAR T-cell therapy) and second HSCT after achieving a new remission, or both treatments in high-risk cases.
This retrospective, multicenter study will evaluate the outcomes of HSCT relapse in pediatric ALL patients. Key endpoints include disease-free survival (DFS), relapse rate, and NRM. We enrolled 73 children with ALL who relapsed after HSCT in 10 hospitals of the Pediatric Committee of the Spanish Group of Transplantation (GETH-TC) between 2013 and 2021. Among them, 56 patients (77%) had B-cell ALL and 17 (23%) had T-cell ALL.
The median time to relapse was 6 months after the first HSCT. CAR-T cell therapy was administered to 31 patients, all of whom achieved complete remission with negative MRD. However, two patients died prematurely due to cytokine release syndrome (CRS), resulting in a NRM of 7 4%. Sixteen patients relapsed after CAR-T therapy with a cumulative incidence (CI) of 65 11%. Seven of these patients subsequently underwent a second HSCT. The only significant prognostic factor for DFS was the MRD level prior to CAR-T therapy: DFS was 20 8% with MRD 3% compared to 100% with MRD <3% (p = 0.002). At a median follow-up of 17 months after CAR-T therapy, DFS was 28 10% and overall survival (OS) was 40 10%. Second allogeneic HSCT was performed in 23 patients, including 7 who had previously received CAR-T therapy. Three patients died from NRM (CI: 19 10%). Eight patients relapsed after the second HSCT (CI: 52 13%), of which 2 were successfully treated with CAR-T therapy. At a median follow-up of 33 months after the second HSCT, DFS was 29 11% and OS was 32 10%. Of 17 patients with T-cell ALL, only 2 survived after a second HSCT with a DFS of 12 9%. Of the 73 patients, 20 are alive with a median follow-up of 4 years (DFS: 20 5%). Time to relapse after HSCT was the strongest predictor of outcome; no patient who relapsed within 6 months after the first HSCT survived. There was a trend towards worse DFS in patients who developed chronic GVHD during the first transplant, with 8 out of 9 relapsing despite rescue therapy (p < 0.07).
Children with relapsed ALL after HSCT have a substantial chance of long-term survival if relapse occurs more than 6 months after the first transplant and if chronic GVHD was not present. The treatment paradigm has shifted to immunotherapy, including monoclonal antibodies and CAR-T therapy. The role of bridging to a second allogeneic HSCT after CAR-T therapy to improve long-term survival remains a subject of ongoing debate.
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