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:Homeodomain-driven oncogenic diversion to a γδTCR phenotype in T-cell acute lymphoblastic leukemia.
在我们中心进行表型分析的1233例T-ALL中,33%(n = 403)表达TCR,其中47%(n = 191;113例成人,78例儿童)为γδTCR阳性(γδTCR+)。
T细胞急性淋巴细胞白血病(T-ALL)源于分化受阻的胸腺细胞的恶性转化。γδ T细胞受体(γδTCR)在T-ALL中的表面表达出乎意料地常见,这使人们对γδ谱系对白血病发生的易感性产生疑问。在我们中心进行表型分析的1233例T-ALL中,33%(n = 403)表达TCR,其中47%(n = 191;113例成人,78例儿童)为γδTCR阳性(γδTCR+)。通过综合分析,我们得以描绘出2种不同的γδTCR+ T-ALL亚型,其具有不同的生理对应细胞。第一种(占75%的病例)以含同源结构域癌基因的异位表达(HD+)、Vβ-Jβ重排以及类似于皮质胸腺细胞的表型(包括表面pre-TCRα链)和转录谱为特征,因此被命名为皮质样γδ T-ALL。用HOXA9或TLX3(HD+癌基因)转导小鼠T细胞祖细胞和人CD34+细胞,可导致向表达γδTCR的胸腺细胞分化偏移。第二种亚型(25%)表现出类似于γδ胸腺细胞的表型和转录谱,被命名为真正的γδ T-ALL。这些发现在COGAALL0434队列中得到验证。尽管真正的γδ T-ALL富集了早期T细胞祖细胞(ETP)样和KMT2A重排病例,但它们大多不符合ETP-ALL的表型定义。与ETP样亚型相似,真正的γδ T-ALL与对化疗的初始反应差相关,但对BCL2抑制剂venetoclax敏感。我们的结果揭示了T-ALL中γδTCR表达背后的发育异质性,并提示该亚型的过度代表反映了HD+癌基因对αβ谱系定向的抑制。这些试验已在www.clinicaltrials.gov注册,注册号为NCT00222027(GRAALL2003)、NCT00327678(GRAALL2005)、NCT03709719(GRAALL2014)和NCT00408005(儿童肿瘤组AALL0434试验)。
T-cell acute lymphoblastic leukemia (T-ALL) results from the malignant transformation of thymocytes blocked in their differentiation. Surface expression of the γδ T-cell receptor (γδTCR) is surprisingly frequent in T-ALLs, questioning the susceptibility of the γδ-lineage to leukemogenesis. Among 1233 T-ALLs phenotyped in our center, 33% (n = 403) expressed a TCR, of which 47% (n = 191; 113 adults, 78 children) were positive for γδTCR (γδTCR+). Using a comprehensive analysis, we were able to delineate 2 distinct γδTCR+ T-ALL subtypes, with distinct physiological counterparts. The first (75% of cases) was characterized by ectopic expression of homeodomain-containing oncogenes (HD+), Vβ-Jβ rearrangements, and phenotypic (including surface pre-TCRα chain) and transcriptional profiles reminiscent of cortical thymocytes and was, therefore, termed cortical-like γδ T-ALLs. Transduction of murine T-cell progenitors and human CD34+ cells with HOXA9 or TLX3 (HD+ oncogenes) led to a differentiation bias toward γδTCR-expressing thymocytes. The second subtype (25%) exhibited phenotypic and transcriptional profiles reminiscent of γδ thymocytes, and was termed bona fide γδ T-ALLs. These findings were validated in the COGAALL0434 cohort. Although bona fide γδ T-ALLs were enriched for early T-cell progenitor (ETP)-like and KMT2A-rearranged cases, they mostly eluded the phenotypic definition of ETP-ALLs. Similar to the ETP-like subtype, bona fide γδ T-ALLs were associated with a poor initial response to chemotherapy but were sensitive to the BCL2 inhibitor venetoclax. Our results reveal developmental heterogeneity behind γδTCR expression in T-ALLs and suggest that overrepresentation of this subtype reflects αβ-lineage commitment repression by HD+ oncogenes. These trials were registered at www.clinicaltrials.gov as NCT00222027 (GRAALL2003), NCT00327678 (GRAALL2005), NCT03709719 (GRAALL2014), and NCT00408005 (Children's Oncology Group AALL0434 trial).
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