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:Efficacy and safety of zanubrutinib combined with chimeric antigen receptor T-cell therapy targeting CD19 in refractory or relapsed diffuse large B cell lymphoma: A retrospective analysis.
Efficacy and safety of zanubrutinib combined with chimeric antigen receptor T-cell therapy targeting CD19 in refractory or relapsed diffuse large B cell lymphoma: A retrospective analysis.
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泽布替尼联合 CAR-T 细胞治疗为 R/R DLBCL 患者提供了有效的治疗选择,可提高缓解率和生存。
CAR-T 细胞治疗 B 细胞非霍奇金淋巴瘤已显示前景,但初始应答不佳患者中的疗效不一。本研究考察 zanubrutinib 联合靶向 CD19 的 CAR-T 治疗难治性/复发性弥漫大 B 细胞淋巴瘤(DLBCL)的疗效和安全性。
回顾性研究纳入 17 例接受 zanubrutinib 联合抗 CD19 CAR-T 治疗的 R/R DLBCL 患者。评估总生存期(OS)和无进展生存期(PFS),并开展亚组分析;通过定量检测载体拷贝数(VCN)监测 CAR-T 扩增。通过记录 CRS 和神经毒性等不良事件评估安全性和耐受性。
中位随访 30 个月(范围 4–36 个月)。总体缓解率(ORR)为 88.2%,70.5% 达完全缓解。24 个月时估计 PFS 为 59%(95% CI 40%–88%),OS 为 71%(95% CI 52%–90%);36 个月时估计 OS 为 65%(95% CI 46%–92%)。乳酸脱氢酶(LDH)未升高患者的 PFS 概率更高,为 100%;LDH 升高者为 42%(95% CI 21%–81%)(log-rank,p = 0.071)。CAR-T 峰值扩增 ROC 曲线下面积为 0.773,提示第 13 天可能是改善生存的最佳截断时间点(敏感度 66.7%,特异度 90.9%,p = 0.07)。早期峰值扩增(第 13 天之前)与更好的 PFS 和 OS 相关(log-rank,p 分别为 0.0018 和 0.0053)。总 VCN 曲线下面积为 0.636;截断值 12,690 对生存有预测意义(敏感度 83.3%,特异度 72.7%,p = 0.366)。Kaplan-Meier 分析显示,VCN 低于 12,690 患者的 OS 与高于 12,690 者存在统计学显著差异(log-rank,p = 0.017),但 PFS 趋势未达统计学显著性(log-rank,p = 0.12)。安全性分析显示 CRS 可控,未报告重度神经毒性。
zanubrutinib 联合 CAR-T 为 R/R DLBCL 患者提供了有效治疗选择,可改善缓解率和生存。对 CAR-T 扩增情况的详细分析揭示了细胞应答动态,支持依据生物标志物制定个体化治疗策略的潜力。
While chimeric antigen receptor T-cell (CAR T) therapy has shown promise in treating B-cell non-Hodgkin lymphoma, its efficacy is variable in patients with poor initial responses. This study investigates the efficacy and safety of zanubrutinib combined with CAR T therapy targeting CD19 in refractory/relapsed diffuse large B cell lymphoma (DLBCL).
We conducted a retrospective study of 17 patients with R/R DLBCL who received zanubrutinib combined with anti-CD19 CAR T-cell therapy. We assessed overall survival (OS) and progression-free survival (PFS) and conducted subgroup analyses. We also monitored CAR T-cell expansion by quantifying vector copy numbers (VCN). Safety and tolerability were assessed by documenting adverse events, including cytokine release syndrome and neurotoxicity.
The median follow-up was 30 months (range, 4-36). The overall response rate(ORR) was 88.2 %, with 70.5 % achieving complete remission. At 24 months, the estimated PFS was 59 % (95 %CI, 40-88 %), and the OS was 71 % (95 %CI, 52-90 %). At 36 months, the estimated OS was 65 % (95 %CI, 46-92 %). Patients with non-elevated lactate dehydrogenase(LDH) levels showed a higher PFS probability (100 %) compared to those with elevated LDH (42 %, 95 %CI: 21 %-81 %) (log-rank, p = 0.071). The area under the receiver-operating characteristic (ROC) curve for peak CAR T-cell expansion was 0.773, suggesting an optimal cutoff at day 13 for enhancing survival (sensitivity 66.7 %, specificity 90.9 %; p = 0.07). Early peak expansion (before day 13) correlated with better PFS and OS (log-rank, p = 0.0018 and p = 0.0053, respectively). The total VCN AUC was 0.636, with a cutoff of 12,690 significantly predicting survival (sensitivity 83.3 %, specificity 72.7 %; p = 0.366). Kaplan-Meier analysis indicated statistically significant differences in OS for patients with VCN below 12,690 (log-rank, p = 0.017) in comparison to those exceeding 12,690, though trends in PFS did not reach statistical significance (log-rank, p = 0.12). Safety profiles indicated manageable cytokine release syndrome, with no severe neurotoxicity reported.
Zanubrutinib combined with CAR T-cell therapy offers an effective treatment option for patients with R/R DLBCL, enhancing response rates and survival. Detailed analysis of CAR T-cell expansion provides insight into the dynamics of cellular responses, underscoring the potential for tailored therapeutic approaches based on biological markers.
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