决定异体 CAR T 细胞排斥与扩增的细胞和分子机制
Cellular and molecular mechanisms determining allogeneic CAR T cell rejection and expansion.
我们评估了11例接受单一批次cemacabtagene ansegedleucel(cema-cel)治疗的大B细胞淋巴瘤患者,cemacabtagene ansegedleucel是一种异体抗CD19 CAR T产品。
英文原题:KIR2DS1-HLA-C status as a predictive marker for benefit from rituximab: a post-hoc analysis of the RICOVER-60 and CLL8 trials.
KIR2DS1-HLA-C status as a predictive marker for benefit from rituximab: a post-hoc analysis of the RICOVER-60 and CLL8 trials.
评估KIR2DS1和HLA-C基因型可能识别出无法从利妥昔单抗治疗中获益的患者,从而允许给予替代疗法。这些发现需要在前瞻性临床试验中进一步验证。
利妥昔单抗加入化疗方案已显著改善B细胞恶性肿瘤患者的预后。利妥昔单抗的作用机制包括激活NK 细胞。杀伤细胞免疫球蛋白样受体(KIRs)通过与HLA相互作用介导NK 细胞功能。我们评估了KIR-HLA基因型对含利妥昔单抗治疗的临床影响。
在这项事后分析中,我们使用RICOVER-60试验(NCT00052936)的数据作为发现队列,CLL8试验(NCT00281918)作为验证队列。RICOVER-60纳入年龄61-80岁、接受CHOP(环磷酰胺、多柔比星、长春新碱和泼尼松)联合或不联合利妥昔单抗治疗的侵袭性B细胞淋巴瘤患者。CLL8纳入年龄30-81岁、接受化疗(氟达拉滨和环磷酰胺;FC)联合或不联合利妥昔单抗治疗的慢性淋巴细胞白血病患者。我们评估了RICOVER-60试验中519例有可用血液样本的患者的KIR和HLA-C状态,以及CLL8试验中549例有可用血液样本的患者的KIR2DS1和HLA-C状态,并评估了它们与无事件生存期(RICOVER-60)、无进展生存期和总生存期(RICOVER-60和CLL8)的关联。
在RICOVER-60试验中,201例(39%)患者KIR2DS1阳性,79例(15%)为HLA-C2纯合子,36例(7%)为KIR2DS1阳性且HLA-C2纯合子。在CLL8试验中,206例(38%)患者KIR2DS1阳性,75例(14%)为HLA-C2纯合子,26例(5%)为KIR2DS1阳性且HLA-C2纯合子。在RICOVER-60试验中,KIR2DS1和HLA-C状态均被确定为生存的独立危险因素。KIR2DS1阳性、HLA-C2纯合子以及随后的KIR2DS1-HLA-C状态与接受含利妥昔单抗治疗患者的不良临床结局相关(KIR2DS1-HLA-C2/C2患者与其他所有患者相比的无事件生存期,HR 2·6 [95% CI 1·4-4·7],p=0·0015;无进展生存期,2·7 [1·5-5·1],p=0·0013;总生存期,2·8 [1·5-5·4],p=0·0016),但在仅接受CHOP化疗的患者中则不相关(无事件生存期,0·9 [0·5-1·7],p=0·85;无进展生存期,1·1 [0·6-2·0],p=0·81;总生存期,1·2 [0·6-2·4],p=0·53)。观察到KIR2DS1-HLA-C状态与利妥昔单抗之间存在显著交互作用(无事件生存期p=0·018,无进展生存期p=0·034)。与其他所有患者相比,KIR2DS1阳性且HLA-C2纯合子的患者未能从CHOP化疗中加入利妥昔单抗中获益(无事件生存期,1·9 [0·8-4·6],p=0·16;无进展生存期,1·4 [0·6-3·4],p=0·48;总生存期,1·6 [0·6-4·3],p=0·33)。在CLL8试验中,KIR2DS1-HLA-C状态被证实为利妥昔单抗治疗获益的预测标志物(KIR2DS1-HLA-C状态与利妥昔单抗关于无进展生存期的交互作用p=0·024)。与其他所有患者相比,KIR2DS1阳性且HLA-C2纯合的患者未能从FC化疗中加入利妥昔单抗中获益(无进展生存期,2·1 [0·9-4·9],p=0·094;总生存期,2·6 [0·5-12·7],p=0·21)。
BACKGROUND: The addition of rituximab to chemotherapy has substantially improved outcomes for patients with B-cell malignancies. The mechanisms of action of rituximab include activation of natural killer cells. Killer-cell immunoglobulin-like receptors (KIRs) mediate natural killer cell function through interaction with HLA. We evaluated the clinical impact of KIR-HLA genotypes on rituximab-containing therapy. METHODS: For this post-hoc analysis, we used data from the RICOVER-60 trial (NCT00052936) as the discovery cohort and the CLL8 trial (NCT00281918) as the validation cohort. RICOVER-60 included patients aged 61-80 years with aggressive B-cell lymphoma treated with CHOP (cyclophosphamide, doxorubicin, vincristine, and prednisone) with or without rituximab. CLL8 included patients aged 30-81 years with chronic lymphocytic leukaemia treated with chemotherapy (fludarabine and cyclophosphamide; FC) with or without rituximab. We evaluated the KIR and HLA-C status of 519 patients with available blood samples in the RICOVER-60 trial and the KIR2DS1 and HLA-C status of 549 patients with available blood samples in the CLL8 trial, and evaluated their associations with event-free survival (RICOVER-60), progression-free survival, and overall survival (RICOVER-60 and CLL8). FINDINGS: In the RICOVER-60 trial, 201 (39%) patients were positive for KIR2DS1, 79 (15%) were homozygous for HLA-C2, and 36 (7%) were positive for KIR2DS1 and homozygous for HLA-C2. In the CLL8 trial, 206 (38%) patients were positive for KIR2DS1, 75 (14%) were homozygous for HLA-C2, and 26 (5%) were positive for KIR2DS1 and homozygous for HLA-C2. In the RICOVER-60 trial, both KIR2DS1 and HLA-C status were identified as independent risk factors for survival. KIR2DS1 positivity, homozygosity for HLA-C2, and subsequent KIR2DS1-HLA-C status were associated with adverse clinical outcome in patients receiving rituximab-containing therapy (event-free survival for patients with KIR2DS1-HLA-C2/C2 vs all other patients, HR 2·6 [95% CI 1·4-4·7], p=0·0015; progression-free survival, 2·7 [1·5-5·1], p=0·0013; overall survival, 2·8 [1·5-5·4], p=0·0016) but not in patients receiving CHOP chemotherapy only (event-free survival, 0·9 [0·5-1·7], p=0·85; progression-free survival, 1·1 [0·6-2·0], p=0·81; overall survival, 1·2 [0·6-2·4], p=0·53). A significant interaction between KIR2DS1-HLA-C status and rituximab was observed (p=0·018 for event-free survival and p=0·034 for progression-free survival). In contrast to all other patients, those positive for KIR2DS1 and homozygous for HLA-C2 did not benefit from adding rituximab to CHOP chemotherapy (event-free survival, 1·9 [0·8-4·6], p=0·16; progression-free survival, 1·4 [0·6-3·4], p=0·48; overall survival, 1·6 [0·6-4·3], p=0·33). In the CLL8 trial, KIR2DS1-HLA-C status was confirmed as a predictive marker for benefit from rituximab therapy (p=0·024 for the interaction of KIR2DS1-HLA-C status and rituximab regarding progression-free survival). In contrast to all other patients, those positive for KIR2DS1 and homozygous for HLA-C2 did not benefit from adding rituximab to FC chemotherapy (progression-free survival, 2·1 [0·9-4·9], p=0·094; overall survival, 2·6 [0·5-12·7], p=0·21). INTERPRETATION: Assessment of KIR2DS1 and HLA-C genotype might identify patients who would not benefit from rituximab, thereby allowing alternative therapies to be given. Further validation of these findings in prospective clinical trials is needed. FUNDING: F Hoffman La Roche.
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