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:Prognostic factors of second hematopoietic allogeneic stem cell transplantation among hematological malignancy patients relapsed after first hematopoietic stem cell transplantation: A single center study.
Prognostic factors of second hematopoietic allogeneic stem cell transplantation among hematological malignancy patients relapsed after first hematopoietic stem cell transplantation: A single center study.
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第二次异基因造血干细胞移植(allo-HSCT2)是可行的,在 allo-HSCT2 前具有良好预后特征——疾病状态为 CR/MRD- 且 HCT-CI 评分为 0——以及拥有新错配合型的第二供者的患者,可从第二次 allo-HSCT 中获得最大获益。
研究者回顾性分析了2012年11月至2021年10月间,在allo-HSCT1复发后接受allo-HSCT2作为挽救治疗的199名血液系统恶性肿瘤患者。
allo-HSCT2时患者中位年龄为23岁(范围3–60岁);HSCT1后至复发的中位时间为9个月(范围1–72个月)。allo-HSCT2前,127名患者的造血细胞移植合并症指数(HCT-CI)为0分,52名为1分,20名为2分或以上。半数患者在HSCT1后复发时接受了嵌合抗原受体(CAR)T细胞治疗。allo-HSCT2前,119名患者处于微小残留病(MRD)阴性完全缓解(CR),37名为MRD阳性CR,43名未缓解(NR)。194名患者(97.4%)的allo-HSCT2使用新供者,134名患者(67.3%)接受了带有新错配单倍型的移植物。中位随访时间为24个月(范围6–98个月);2年总生存率(OS)为43.8%±4.0%,无白血病生存率(LFS)为42.1%±4.1%。2年复发累积发生率(CIR)和非复发死亡率(NRM)分别为30.0%±4.8%和38.5%±3.8%。Cox多变量回归分析显示,与不具备这些特征的患者相比,allo-HSCT2前处于MRD阴性CR、HCT-CI为0分以及供者具有新的错配单倍型,均预示OS和LFS改善。研究依据这三项有利因素建立了allo-HSCT2患者预后评分系统。具备全部三项因素、预后评分为3分的患者,其2年OS和LFS均为63.3%±6.7%,CIR为5.5%±3.1%,优于评分为0分的患者。
allo-HSCT2可行;移植前具有良好预后特征(CR/MRD阴性、HCT-CI为0分)且第二位供者带有新的错配单倍型的患者,可能从第二次移植中获益最大。
We retrospectively analyzed 199 hematological malignancy patients who received allo-HSCT2 as a salvage treatment post allo-HSCT1 relapse between November 2012 and October 2021.
The median age at allo-HSCT2 was 23 (range: 3-60) years. The median time to relapse after HSCT1 was 9 (range: 1-72) months. Prior to allo-HSCT2, patients had the following hematopoietic cell transplantation-comorbidity indexes (HCT-CI): 127 with a score of 0, 52 with a score of 1, and 20 with a score of 2 or greater. Fifty percent of patients received chimeric antigen receptor (CAR) T-cell therapy following HSCT1 relapse. Disease status was minimal residual disease (MRD)-negative complete remission (CR) among 119 patients, MRD-positive CR among 37 patients and non-remission (NR) for 43 patients prior to allo-HSCT2. Allo-HSCT2 was performed from a new donor in 194 patients (97.4%) and 134 patients (67.3%) received a graft with a new mismatched haplotype. The median follow-up time was 24 months (range: 6-98 months), and the 2-year OS and LFS were 43.8% 4.0% and 42.1% 4.1%, respectively. The 2-year cumulative incidence of relapse (CIR) and non-relapse mortality (NRM) was 30.0% 4.8% and 38.5% 3.8%, respectively. Cox regression multivariate analysis showed that disease statusof MRD-negative CR, HCT-CI score of 0 prior to allo-HSCT2, and new mismatched haplotype donor were predictive factors of improved OS and LFS compared to patients without these characteristics. Based on these three favorable factors, we developed a predictive scoring system for patients who received allo-HSCT2. Patients with a prognostic score of 3 who had the three factors showed a superior 2-year OS of 63.3% 6.7% and LFS of 63.3% 6.7% and a lower CIR of 5.5% 3.1% than patients with a prognostic score of 0. Allo-HSCT2 is feasible and patients with good prognostic features prior to allo-HSCT2 -disease status of CR/MRD- and HCT-CI score of 0 as well as a second donor with a new mismatched haplotype could have the maximal benefit from the second allo-HSCT.
Allo-HSCT2 is feasible and patients with good prognostic features prior to allo-HSCT2 -disease status of CR/MRD- and HCT-CI score of 0 as well as a second donor with a new mismatched haplotype could have the maximal benefit from the second allo-HSCT.
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