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:Long-read KIR genotyping reveals donor KIR/HLA polymorphisms linked to posttransplant relapse in T-cell malignancies.
这些发现支持基于KIR/HLA的供者选择,并强调了抗肿瘤NK细胞免疫的作用。
供者杀伤细胞免疫球蛋白样受体(KIR)和HLA的多态性塑造自然杀伤(NK)细胞活性,这可能影响异基因造血干细胞移植(allo-HSCT)后的复发风险。然而,既往关联研究受限于缺乏等位基因水平的KIR基因分型。我们采用高分辨率长读长基因分型技术对15个KIR基因进行检测,在219例接受allo-HSCT的T细胞白血病/淋巴瘤(ATL)患者中开展无偏倚发现分析,以识别与复发相关的供者KIR/HLA多态性。我们全面检验了供者KIR/HLA氨基酸水平组合与复发风险之间的关联,并校正了KIR单倍型之间的连锁不平衡,随后在独立队列中验证了这些发现。在ATL中,KIR3DL1 005或KIR3DS1 013与HLA-B 2结构域第62位谷氨酸(HLA-B-D2-62E)的组合,以及KIR3DL1 001/007/015/020与HLA-B-D2-62V(缬氨酸)的组合,属于高风险(H)组合。同时,KIR3DL1 015与HLA-B 1结构域第80位异亮氨酸(HLA-B-D1-80I)的组合,以及KIR3DL1 001/005/007/020与HLA-B-D1-80T(苏氨酸)的组合,属于低风险(L)组合。与L-/H+供者(n = 119)相比,L+/H-、L-/H-和L+/H+供者(n = 80)表现出复发减少(校正风险比[HR],0.36;95%置信区间[CI],0.19-0.65;P = 7.5 10-4)和总生存改善(校正HR,0.67;95% CI,0.45-0.98;P = .038)。这些供者与其他T细胞恶性肿瘤的复发减少相关(n = 145;校正HR,0.37;95% CI,0.16-0.89;P = .026),但在急性髓系白血病中不相关(n = 965;P = .77),提示具有疾病特异性。低风险组合增加了 KIR3DL1+ NK 细胞针对 HLA I 类缺陷靶标的 CD107a 脱颗粒,与 NK 细胞教育增强一致。这些发现支持基于 KIR/HLA 的供者选择,并凸显了抗肿瘤 NK 细胞免疫的作用。
Donor polymorphisms in killer-cell immunoglobulin-like receptor (KIR) and HLA shape natural killer (NK) cell activity, which may influence relapse risk after allogeneic hematopoietic stem cell transplantation (allo-HSCT). However, association studies have been limited by insufficient allele-level KIR genotyping. Using high-resolution, long-read genotyping of 15 KIR genes, we performed an unbiased discovery analysis in 219 patients with T-cell leukemia/lymphoma (ATL) who underwent allo-HSCT to identify relapse-associated donor KIR/HLA polymorphisms. We comprehensively tested associations between donor KIR/HLA amino acid-level combinations and relapse risk, accounting for linkage disequilibrium across KIR haplotypes, and validated the findings in independent cohorts. In ATL, KIR3DL1 005 or KIR3DS1 013 with glutamic acid at position 62 in the HLA-B 2 domain (HLA-B-D2-62E) and KIR3DL1 001/ 007/ 015/ 020 with HLA-B-D2-62V (valine) were high-risk (H) combinations. Meanwhile, KIR3DL1 015 with isoleucine at position 80 in the HLA-B 1 domain (HLA-B-D1-80I) and KIR3DL1 001/ 005/ 007/ 020 with HLA-B-D1-80T (threonine) were low-risk (L) combinations. Compared with L-/H+ donors (n = 119), L+/H-, L-/H-, and L+/H+ donors (n = 80) showed reduced relapse (adjusted hazard ratio [HR], 0.36; 95% confidence interval [CI], 0.19-0.65; P = 7.5 10-4) and improved overall survival (adjusted HR, 0.67; 95% CI, 0.45-0.98; P = .038). Those donors were associated with reduced relapse in other T-cell malignancies (n = 145; adjusted HR, 0.37; 95% CI, 0.16-0.89; P = .026) but not in acute myeloid leukemia (n = 965; P = .77), suggesting disease specificity. Low-risk combinations increased CD107a degranulation of KIR3DL1+ NK cells against HLA class I-deficient targets, consistent with enhanced NK cell education. These findings support KIR/HLA-based donor selection and underscore the role of antitumor NK cell immunity.
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