不适合移植的大 B 细胞淋巴瘤二线使用 axicabtagene ciloleucel:ALYCANTE 最终分析
Second-line axicabtagene ciloleucel in large B-cell lymphoma ineligible for transplantation: ALYCANTE final analysis.
CELL INTELLIGENCE · 肿瘤细胞治疗研究
肿瘤细胞治疗研究
英文原题:Ex Vivo Expanded Cord Blood Natural Killer Cells Combined with Rituximab and High-Dose Chemotherapy and Autologous Stem Cell Transplantation for B Cell Non-Hodgkin Lymphoma.
Ex Vivo Expanded Cord Blood Natural Killer Cells Combined with Rituximab and High-Dose Chemotherapy and Autologous Stem Cell Transplantation for B Cell Non-Hodgkin Lymphoma.
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大剂量化疗(HDC)联合自体干细胞移植(ASCT)治疗B细胞非霍奇金淋巴瘤(B-NHL)失败的主要原因是复发。改善策略包括联合有效免疫疗法。
我们假设,利妥昔单抗/HDC/ASCT联合扩增的脐带血(CB)来源自然杀伤(NK)细胞,对B-NHL安全且有效。年龄15至70岁、适合接受ASCT的B-NHL患者可入组。选择CB单位时不考虑其与受者的HLA匹配情况。CB NK细胞于第-19日至第-5日扩增。治疗包括第-13日和第-7日利妥昔单抗、第-13日至第-7日BEAM方案(卡莫司汀/依托泊苷/阿糖胞苷/美法仑)、第-7日至第-2日来那度胺、第-5日输注CB NK细胞(10⁸/kg),以及第0日ASCT。主要终点为30天治疗相关死亡率(TRM);次要终点包括无复发生存期(RFS)、总生存期(OS)及CB NK细胞持续存在情况。
共入组20例患者。CB NK细胞中位扩增1552倍,纯度>98%,存活率>96%。未见归因于CB NK细胞的不良事件,30天TRM为0%。中位随访47个月时,RFS率和OS率分别为53%和74%。不论HLA错配状态如何,血液中均可检测到CB NK细胞,持续2周。供者NK细胞CD16表达与结局呈有利相关;CB NK细胞中高亲和力CD16变体(158 V/V)纯合(但受者NK细胞中该情况)也与较好结局相关。数据表明,扩增且高度纯化的CB来源NK细胞联合HDC/ASCT治疗B-NHL是安全的。供者NK细胞CD16表达,尤其是高亲和力CD16变体纯合时,与较好结局相关。
Relapse is the major cause of failure of high-dose chemotherapy (HDC) with autologous stem cell transplantation (ASCT) for B cell non-Hodgkin lymphomas (B-NHL). Improvement strategies include use in combination with effective immunotherapies.
We hypothesized that the combination of rituximab/HDC/ASCT with expanded cord blood (CB)-derived natural killer (NK) cells is safe and active in B-NHL. Patients with B-NHL age 15 to 70 years and appropriate ASCT candidates were eligible for the study. The CB units were selected without considering HLA match with the recipient. The CB NK cells were expanded from day -19 to day -5.
Treatment included rituximab on days -13 and -7, BEAM (carmustine/etoposide/cytarabine/melphalan) on days -13 to -7, lenalidomide on days -7 to -2, CB NK infusion (10 8 /kg) on day -5, and ASCT (day 0). The primary endpoint was 30-day treatment-related mortality (TRM); secondary endpoints included relapse-free survival (RFS), overall survival (OS), and persistence of CB NK cells.
We enrolled 20 patients. CB NK cells were expanded a median of 1552-fold with >98% purity and >96% viability.
We saw no adverse events attributable to the CB NK cells and 0% 30-day TRM. At median follow-up of 47 months, the RFS and OS rates were 53% and 74%, respectively. CB NK cells were detectable in blood for 2 weeks, independent of HLA-mismatch status. CD16 expression in donor NK cells was correlated favorably with outcome, and homozygosity for the high-affinity CD16 variant (158 V/V) in CB, but not recipient, NK cells was correlated with better outcomes.
Our data indicate that the combination of expanded and highly purified CB-derived NK cells with HDC/ASCT for B-NHL is safe. CD16 expression in donor NK cells, particularly if homozygous for the high-affinity CD16 variant, was correlated with better outcomes.
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