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:Outcomes with bridging radiation therapy prior to chimeric antigen receptor T-cell therapy in patients with aggressive large B-cell lymphomas.
Outcomes with bridging radiation therapy prior to chimeric antigen receptor T-cell therapy in patients with aggressive large B-cell lymphomas.
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bRT 和 CAR-T 是侵袭性 B 细胞淋巴瘤特定患者的良好治疗策略。涵盖所有病灶的全面 bRT 与改善的结局相关。
选择复发/难治性侵袭性B细胞淋巴瘤患者可能从抗CD19CAR-T 细胞治疗(CAR-T)前的桥接放疗(bRT)中获益。在此,我们研究了与bRT和CAR-T 后结局及失败模式相关的患者和治疗因素。
我们回顾性分析了2017年11月至2023年4月期间接受axicabtagene ciloleucel、tisagenlecleucel或lisocabtagene maraleucel前接受bRT的弥漫性大B细胞淋巴瘤(DLBCL)成人患者。提取了临床/治疗特征、缓解情况和毒性。对于随时间分布的事件,使用Kaplan-Meier或Cox回归模型对生存进行建模,对于疾病缓解则使用二元logistic回归。使用了Fisher精确检验或Mann-Whitney U方法。
51例患者中,25.5%在RT时为bulky disease,64.7%为III/IV期疾病。51%的患者接受了针对所有疾病部位的全面bRT单独治疗,29.4%额外接受了系统性治疗桥接。中位随访时间为10.3个月(95% CI:7.7-16.4)。CAR-T 输注后30天的总体缓解率(ORR)为82.4%。中位总体生存期(OS)为22.1个月(6.6-未达到),中位无进展生存期(PFS)为7.4个月(5.5-30)。1年OS/PFS分别为80%(66-99)/78%(64-87),2年OS/PFS分别为59%(44-71)/54%(40-67)。针对所有疾病部位的全面RT与PFS和OS改善相关,p 0.04。此外,ECOG 2和III/IV期疾病预测OS较差(p 0.02)。Disease bulk、IPI 3和非GCB组织学是疾病特异性生存期(DSS)的不良预测因素,p <0.05。后两者以及bRT剂量30 Gy预测PFS较差(p <0.05)。在晚期疾病患者中,针对所有疾病部位的全面bRT(n=10)与局部bRT(n=23)相比,未与OS和PFS改善相关,p >0.17。桥接RT与chemoRT之间未见差异。26例患者出现复发(50.9%),其中46%为野内复发。野内复发风险与bulky disease(OR=7,95% CI:1.2-41,p =0.03)和CAR-T 后30天评估时缺乏缓解(OR=16.8,95% CI:1.6-176,p =0.02)相关,但与bRT剂量无关(p =0.27)。
Select patients with relapsed/refractory aggressive B cell lymphoma may benefit from bridging radiation (bRT) prior to anti-CD19-directed chimeric antigen receptor T cell therapy (CAR-T). Here, we examined patient and treatment factors associated with outcomes and patterns of failure after bRT and CAR-T.
We retrospectively reviewed adults with diffuse large B-cell lymphoma (DLBCL) who received bRT prior to axicabtagene ciloleucel, tisagenlecleucel, or lisocabtagene maraleucel between 11/2017-4/2023. Clinical/treatment characteristics, response, and toxicity were extracted. Survival was modeled using Kaplan-Meier or Cox regression models for events distributed over time, or binary logistic regression for disease response. Fisher's Exact Test or Mann-Whitney U methods were used.
Of 51 patients, 25.5% had bulky disease and 64.7% had Stage III/IV disease at the time of RT. Comprehensive bRT alone to all disease sites was delivered to 51% of patients, and 29.4% were additionally bridged with systemic therapy. Median follow-up was 10.3 months (95% CI: 7.7-16.4). Overall response rate (ORR) was 82.4% at 30 days post-CAR-T infusion. Median overall survival (OS) was 22.1 months (6.6-not reached) and the median progression-free survival (PFS) was 7.4 months (5.5-30). OS/PFS were 80% (66-99)/78% (64-87) at 1-year, and 59% (44-71)/54% (40-67) at 2-years, respectively. Comprehensive RT to all sites of disease correlated with improved PFS and OS, p 0.04. Additionally, ECOG 2 and Stage III/IV disease predicted poor OS ( p 0.02). Disease bulk, IPI 3, and non-GCB histology were poor predictors for disease-specific survival (DSS), p <0.05. The latter two, as well as bRT dose of 30 Gy predicted worse PFS ( p <0.05). Among patients with advanced stage disease, comprehensive bRT to all sites of disease ( n =10) was not associated with improved OS and PFS compared to focal bRT ( n =23), p >0.17. No difference was seen in bridging RT vs. chemoRT. Twenty-six patients developed relapse (50.9%), of which 46% was in-field. Risk of in-field relapse correlated with bulky disease (OR=7, 95% CI: 1.2-41, p =0.03) and lack of response at 30 day post-CAR-T evaluation (OR=16.8, 95% CI: 1.6-176, p =0.02), but not with bRT dose ( p =0.27).
bRT and CART is a good treatment strategy for select patients with aggressive B cell lymphoma. Comprehensive bRT including all sites of disease is associated with improved outcomes.
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