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:Combining CRISPR-Cas9 and TCR exchange to generate a safe and efficient cord blood-derived T cell product for pediatric relapsed AML.
我们展示了开发针对WT1的有效脐带血来源CD8+ T细胞产品的可行性,为移植后同种异体免疫细胞治疗或作为现成产品提供了选择,以预防复发并改善儿童AML的临床结局。
造血细胞移植(HCT)是治疗高危、难治或复发性急性髓系白血病(AML)儿科患者的有效方法。然而,很大一部分移植患者最终因复发而死亡。为了提高总生存率,我们提出了一种基于脐血(CB)-HCT联合应用源自同一CB移植物AML特异性T细胞受体(TCR)工程化T细胞疗法的策略。
我们制备了表达针对Wilms瘤1(WT1)的重组TCR(rTCR)的CB-CD8+ T细胞,同时缺乏内源性TCR(eTCR)表达,以避免错配和竞争。采用CRISPR-Cas9多重编辑靶向内源性TCRα(TRAC)和TCRβ(TRBC)链的恒定区。随后,使用优化的慢病毒转导方法引入重组WT1-TCR。通过共培养实验,对细胞系和原发性儿童AML原始细胞评估了产品的细胞毒性和迁移能力。
基因编辑和转导程序实现了高效率,高达95%的细胞缺乏eTCR,超过70%的T细胞表达rWT1-TCR。与仍表达其eTCR的WT1-TCR工程化T细胞(eTCR +/+ WT1-TCR)相比,缺乏其eTCR表达的WT1-TCR工程化T细胞(eTCR -/- WT1-TCR)在抗原识别时显示出rTCR的细胞表面表达增加以及细胞毒性细胞因子的产生增加,如颗粒酶A和B、穿孔素、干扰素-γ(IFNγ)和肿瘤坏死因子-α(TNFα)。CRISPR-Cas9编辑不影响免疫表型特征或T细胞活化,也未诱导抑制性分子表达增加。eTCR -/- WT1-TCR CD8 + CB-T细胞在与肿瘤细胞系和原发性AML母细胞共培养中显示出有效的迁移和杀伤能力,但未显示出对健康细胞的毒性。
BACKGROUND: Hematopoietic cell transplantation (HCT) is an effective treatment for pediatric patients with high-risk, refractory, or relapsed acute myeloid leukemia (AML). However, a large proportion of transplanted patients eventually die due to relapse. To improve overall survival, we propose a combined strategy based on cord blood (CB)-HCT with the application of AML-specific T cell receptor (TCR)-engineered T cell therapy derived from the same CB graft. METHODS: We produced CB-CD8 + T cells expressing a recombinant TCR (rTCR) against Wilms tumor 1 (WT1) while lacking endogenous TCR (eTCR) expression to avoid mispairing and competition. CRISPR-Cas9 multiplexing was used to target the constant region of the endogenous TCRα ( TRAC ) and TCRβ ( TRBC ) chains. Next, an optimized method for lentiviral transduction was used to introduce recombinant WT1-TCR. The cytotoxic and migration capacity of the product was evaluated in coculture assays for both cell lines and primary pediatric AML blasts. RESULTS: The gene editing and transduction procedures achieved high efficiency, with up to 95% of cells lacking eTCR and over 70% of T cells expressing rWT1-TCR. WT1-TCR-engineered T cells lacking the expression of their eTCR (eTCR -/- WT1-TCR) showed increased cell surface expression of the rTCR and production of cytotoxic cytokines, such as granzyme A and B, perforin, interferon-γ (IFNγ), and tumor necrosis factor-α (TNFα), on antigen recognition when compared with WT1-TCR-engineered T cells still expressing their eTCR (eTCR +/+ WT1-TCR). CRISPR-Cas9 editing did not affect immunophenotypic characteristics or T cell activation and did not induce increased expression of inhibitory molecules. eTCR -/- WT1-TCR CD8 + CB-T cells showed effective migratory and killing capacity in cocultures with neoplastic cell lines and primary AML blasts, but did not show toxicity toward healthy cells. CONCLUSIONS: In summary, we show the feasibility of developing a potent CB-derived CD8 + T cell product targeting WT1, providing an option for post-transplant allogeneic immune cell therapy or as an off-the-shelf product, to prevent relapse and improve the clinical outcome of children with AML.
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