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:Tocilizumab Prophylaxis Following Axicabtagene Ciloleucel in Relapsed or Refractory Large B-Cell Lymphoma.
Tocilizumab Prophylaxis Following Axicabtagene Ciloleucel in Relapsed or Refractory Large B-Cell Lymphoma.
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Axicabtagene ciloleucel(axi-cel)是一种自体抗CD19嵌合抗原受体(CAR)T细胞疗法,已获批用于复发/难治性(R/R)大B细胞淋巴瘤(LBCL)。多数axi-cel治疗患者会发生细胞因子释放综合征(CRS)和/或神经系统不良事件。为探索降低axi-cel相关CAR-T 毒性的可能方法,关键性ZUMA-1试验增加了多个安全性扩展队列。ZUMA-1第3队列为探索性安全队列,评估IL-6受体阻断抗体托珠单抗和抗惊厥药左乙拉西坦预防axi-cel治疗患者CRS和神经系统不良事件的效果。R/R LBCL患者入组后于第-5至-3天接受预处理化疗,随后第0天单次输注axi-cel(每千克2×10⁶个细胞)。axi-cel输注48小时后预防性给予托珠单抗(8 mg/kg)。
主要终点为CRS和神经系统不良事件的发生率及严重程度;关键次要终点包括不良事件发生率、客观缓解率(ORR)、缓解持续时间、无进展生存期、总生存期(OS)及生物标志物分析(如循环CAR-T 细胞、细胞因子和趋化因子)。第3队列共纳入42例患者,其中38例接受axi-cel。24个月分析显示,任意级别CRS和神经系统事件分别发生于92%和87%的患者;3级CRS和神经系统事件分别发生于3%和42%。发生1例5级神经系统事件(脑水肿)。最短随访24个月时,ORR为63%,39.5%的患者仍持续应答。随访48个月时,OS中位数为34.8个月(95%置信区间5.4个月至不可估计)。第3队列CAR-T 细胞扩增与关键性第1、2队列相当。与托珠单抗介导的IL-6受体抑制一致,患者血清IL-6水平高于第1、2队列。3级神经系统事件与脑脊液中IL-6、促炎细胞因子及髓系细胞升高相关。基于这些结果,不建议使用预防性托珠单抗预防CAR-T 相关不良事件;预防性左乙拉西坦对R/R LBCL患者的获益仍不确定。
Axicabtagene ciloleucel (axi-cel) is an autologous anti-CD19 chimeric antigen receptor (CAR) T-cell therapy approved in patients with relapsed/refractory (R/R) large B-cell lymphoma (LBCL). Most patients treated with axi-cel experience cytokine release syndrome (CRS) and/or adverse neurologic events (NEs). To explore potential approaches for reducing CAR T-cell-related toxicities with axi-cel, several safety expansion cohorts were added to the pivotal ZUMA-1 trial. ZUMA-1 Cohort 3 was an exploratory safety cohort that investigated the use of the IL-6 receptor-blocking antibody tocilizumab and anticonvulsant levetiracetam as prophylaxis against CRS and NEs in patients treated with axi-cel. Patients with R/R LBCL were enrolled in Cohort 3 and received conditioning chemotherapy on d -5 through -3 followed by a single infusion of axi-cel (2 10 6 cells/kg) on d 0. Prophylactic tocilizumab (8 mg/kg) was administered 48 h after axi-cel infusion. Primary endpoints were incidence and severity of CRS and NEs.
Key secondary endpoints included the incidence of adverse events, objective response rate (ORR), duration of response, progression-free survival, overall survival (OS), and biomarker analyses (eg, circulating CAR T cells, cytokines, chemokines). Forty-two patients were enrolled in Cohort 3, 38 of whom received axi-cel. In the 24-month analysis, any-grade CRS and NEs occurred in 92% and 87% of patients, and Grade 3 CRS and NEs occurred in 3% and 42% of patients, respectively. One Grade 5 NE (cerebral edema) occurred. With 24-mo minimum follow-up, the ORR was 63%, and 39. 5% of patients had ongoing response.
With 48-month follow-up, median OS was 34. 8 mo (95% CI, 5. 4-not estimable). CAR T-cell expansion in ZUMA-1 Cohort 3 was comparable with pivotal Cohorts 1 and 2. Consistent with tocilizumab-mediated inhibition of IL-6R, serum IL-6 levels were increased relative to Cohorts 1 and 2.
Grade 3 NEs were associated with elevated IL-6 levels, proinflammatory cytokines, and myeloid cells in the cerebrospinal fluid. Based on these findings, prophylactic tocilizumab is not recommended to prevent CAR T-cell-related adverse events, and beneficial effects of prophylactic levetiracetam remain uncertain in patients with R/R LBCL.
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