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:BAFF-based trifunctional T-cell engagers trigger robust tumor immunity against B-cell malignancies.
蛋白质工程的进步推动了T细胞衔接器(TCEs)的持续优化,在B细胞恶性肿瘤治疗中取得了显著的临床疗效。
蛋白质工程的进步推动了T细胞衔接器(TCEs)的持续优化,在B细胞恶性肿瘤治疗中取得了显著的临床疗效。此外,开发三特异性或多特异性TCEs已成为应对肿瘤异质性和抗原逃逸挑战的一种有前景的策略。然而,仍存在相当大的障碍,主要在于格式设计方面。在本研究中,我们设计了基于BAFF的TCEs,采用多种格式,将抗CD3 Fab或IgG结构域与BAFF配体融合,以靶向BAFF受体(BAFFR、BCMA和TACI)。这些构建体在价数以及是否含有长效元件(如Fc结构域或白蛋白结合域共有序列(ABDCon))方面各不相同。尽管引入Fc结构域并未增强持久的肿瘤清除,但价数和空间构型的差异深刻影响了细胞毒性。我们鉴定出TriBAFF/CD3/ABDCon为最佳三功能构建体,其以抗CD3 Fab为骨架,将BAFF和ABDCon融合至重链和轻链的C端。该设计促进了靶细胞与T细胞之间最佳免疫突触的形成,并在多种B细胞恶性肿瘤模型中有效控制肿瘤负荷,且耐受性良好。值得注意的是,在异质性白血病和侵袭性淋巴瘤模型中,TriBAFF/CD3/ABDCon优于常规疗法,包括blinatumomab和基于BAFF的CAR-T细胞。这些发现强调了利用天然配体作为抗体靶向模块的潜力,并为下一代多特异性TCEs的设计提供了宝贵见解,有望改善多种恶性肿瘤及其他疾病的治疗结局。
Advancements in protein engineering have driven the continuous optimization of T-cell engagers (TCEs), resulting in remarkable clinical outcomes in the treatment of B-cell malignancies. Moreover, developing tri- or multispecific TCEs has emerged as a promising strategy to address the challenges of tumor heterogeneity and antigen escape. However, considerable obstacles remain, primarily in format design. In this study, we engineered BAFF-based TCEs with various formats that incorporate anti-CD3 Fab or IgG domains fused with BAFF ligands to target BAFF receptors (BAFFR, BCMA, and TACI). These constructs varied in valency and the presence or absence of long-acting elements such as Fc domains or the albumin binding domain consensus sequence (ABDCon). Although the inclusion of an Fc domain did not enhance sustained tumor eradication, variations in valency and spatial configuration profoundly influenced cytotoxicity. We identified TriBAFF/CD3/ABDCon as the optimal trifunctional construct, featuring an anti-CD3 Fab backbone with BAFF and ABDCon fused to the C-termini of the heavy and light chains. This design facilitates optimal immune synapse formation between the target cells and T cells and effectively controls tumor burdens in various B-cell malignancy models with good tolerability. Notably, TriBAFF/CD3/ABDCon outperformed conventional therapies, including blinatumomab and BAFF-based CAR-T cells, in models of heterogeneous leukemia and aggressive lymphoma. These findings underscore the potential of using natural ligands as antibody-targeting modules and provide valuable insights into the design of the next generation of multispecific TCEs, which hold promise for improving treatment outcomes in a wide range of malignancies and beyond.
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