抗 CD22/CD19 CAR-T 细胞疗法 CART2219.1 在成人和儿童复发/难治性 B-ALL 中的 I/II 期试验
A Phase I/II Trial of Anti-CD22/CD19 CAR-T Cell Therapy, CART2219.1, in Adult and Pediatric Relapsed/Refractory B-ALL.
在一项多中心I/II期试验中,所有患者(n=11;7名儿童,4名成人)在第28天均达到完全缓解(91%为微小残留病阴性)。
英文原题:A T-cell receptor targeting RUNX1 frameshift mutations in acute myeloid leukemia.
A T-cell receptor targeting RUNX1 frameshift mutations in acute myeloid leukemia.
我们证明了RUNX1移码突变可以被有效靶向,展示了基于TCR的免疫治疗用于治疗RUNX1突变型AML患者的潜在相关性。
Runt相关转录因子1(RUNX1)是造血分化的关键调控因子。急性髓系白血病(AML)中的RUNX1突变与不良预后相关。其中三分之一为移码突变,编码一种具有延长C末端、以替代阅读框翻译的致癌蛋白。在此,我们研究了致癌性RUNX1的替代阅读框是否可作为免疫治疗的靶点。我们将携带RUNX1移码突变的构建体导入具有常见HLA I类等位基因的B细胞系,并通过免疫肽组学鉴定出13个新肽。为研究这些肽是否为新抗原,我们使用肽-MHC四聚体在健康个体中筛选RUNX1新抗原特异性CD8 T细胞。针对4个HLA等位基因中的5个新抗原分离出T细胞克隆。其中两个新抗原在具有内源性RUNX1移码突变的HLA-B*07:02阳性AML细胞系上被识别。对这些克隆的T细胞受体(TCR)进行测序,并在转入CD8 T细胞后进行分析。其中一个TCR在体外和免疫缺陷小鼠中诱导了对RUNX1突变AML细胞的有效杀伤。TCR工程化T细胞还杀伤了患者来源的AML细胞,包括白血病干细胞。总之,我们表明RUNX1移码突变可以被有效靶向,证明了基于TCR的免疫治疗用于治疗RUNX1突变AML患者的潜在相关性。
Runt-related transcription factor 1 (RUNX1) is a key regulator of hematopoietic differentiation. RUNX1 mutations in acute myeloid leukemia (AML) are associated with poor prognosis. One-third are frameshift mutations encoding an oncogenic protein with an elongated C-terminus translated in an alternative reading frame. Here, we investigated whether the alternative reading frame of oncogenic RUNX1 can be targeted by immunotherapy. We introduced a construct with a RUNX1 frameshift mutation into B-cell lines with common HLA class I alleles and identified 13 neopeptides by immunopeptidomics. To investigate whether these peptides are neoantigens, peptide-MHC tetramers were used to screen healthy individuals for RUNX1 neoantigen-specific CD8 T cells. T-cell clones were isolated against 5 neoantigens in 4 HLA alleles. Two neoantigens were recognized on an HLA-B*07:02-positive AML cell line with an endogenous RUNX1 frameshift mutation. The T-cell receptors (TCRs) of these clones were sequenced, and analyzed after transfer into CD8 T cells. One TCR induced effective killing of RUNX1-mutated AML cells in vitro and in immunodeficient mice. TCR-engineered T cells also killed patient-derived AML cells, including leukemic stem cells. In conclusion, we showed that RUNX1 frameshift mutations can be effectively targeted, demonstrating the potential relevance of TCR-based immunotherapy to treat patients with RUNX1-mutated AML.
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