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:Mesothelin-targeted CAR-T cells secreting NKG2D-BiTEs exhibit potent efficacy against triple-negative breast cancer.
这些发现表明,BiTE CAR-T 细胞通过解决抗原异质性和免疫逃逸机制,为 TNBC 提供了一种极具前景的治疗策略,并具有良好的临床应用转化潜力。
三阴性乳腺癌(TNBC)是一种侵袭性亚型,预后差且治疗选择有限。嵌合抗原受体(CAR)-T 细胞疗法前景广阔,但其疗效受到肿瘤抗原逃逸和异质性的制约。为应对这些挑战,我们开发了一种新型的双特异性 T 细胞衔接器 CAR-T(BiTEs CAR-T),其靶向间皮素(MSLN)并分泌 NKG2D-双特异性 T 细胞衔接器(BiTEs)以结合 NKG2D 配体(NKG2DL)。利用癌症基因组图谱(The Cancer Genome Atlas)和肿瘤组织芯片对 TNBC 组织进行分析,发现 MSLN 与 NKG2DL 呈高表达但相关性较弱,使其成为双重结合的理想靶点。为降低免疫原性并增强稳定性,我们在 CAR 构建体中采用纳米抗体和天然受体 NKG2D 作为抗原结合结构域,而非传统的 scFv。所分泌的 BiTEs 可促进未转导 T 细胞对 NKG2DL+ 肿瘤细胞的细胞毒性。体外实验中,与 MSLN CAR-T 相比,BiTEs CAR-T 细胞针对异质性靶细胞表现出更优的细胞毒性、T 细胞活化和细胞因子产生。体内实验中,BiTEs CAR-T 细胞在斑马鱼和小鼠 TNBC 模型中展现出强效抗肿瘤活性,显著降低肿瘤负荷并延长生存期,且未检测到毒性。这些发现提示,BiTE CAR-T 细胞通过应对抗原异质性和免疫逃逸机制,为 TNBC 提供了一种极具前景的治疗策略,并具有良好的临床应用转化潜力。
Triple-negative breast cancer (TNBC) is an aggressive subtype with poor prognosis and limited treatment options. Chimeric antigen receptor (CAR)-T cell therapy holds promise, but its efficacy is hindered by tumor antigen escape and heterogeneity. To address these challenges, we developed a novel bispecific T cell engagers CAR-T (BiTEs CAR-T) targeting Mesothelin (MSLN) and secreting NKG2D-Bispecific T cell Engagers (BiTEs) to engage NKG2D ligands (NKG2DL). Analysis of TNBC tissues using The Cancer Genome Atlas and tumor microarrays revealed high but weakly correlated expression of MSLN and NKG2DL, making them ideal targets for dual engagement. To reduce immunogenicity and enhance stability, we used a nanobody and the natural receptor NKG2D as antigen-binding domains instead of traditional scFvs in the CAR construct. The secreted BiTEs could promote the cytotoxicity of untransduced T cells against NKG2DL + tumor cells. In vitro, BiTEs CAR-T cells exhibited superior cytotoxicity, T cell activation, and cytokines production against heterogeneous target cells compared to MSLN CAR-T. In vivo, BiTEs CAR-T cells demonstrated potent antitumor activity in zebrafish and murine TNBC models, significantly reducing tumor burden and prolonging survival without detectable toxicity. These findings suggest that BiTE CAR-T cells offer a highly promising therapeutic strategy for TNBC by addressing antigen heterogeneity and immune escape mechanisms, with promising translational potential for clinical application.
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