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:Novel chimeric antigen receptor-expressing T cells targeting the malignant mesothelioma-specific antigen sialylated HEG1.
我们开发了具有4-1BB共刺激结构域的新型SKM9-2衍生CAR-T细胞,这可能为治疗难治性MM提供一种有前景的治疗方法。
高特异性靶抗原的选择对于开发临床有效且安全的嵌合抗原受体(CAR)至关重要。在寻找恶性间皮瘤(MM)诊断标志物的过程中,我们建立了SKM9-2单克隆抗体(mAb),该抗体能够以高特异性和高灵敏度识别MM特异性分子——唾液酸化的Protein HEG homolog 1(HEG1)。在本研究中,为开发针对MM的新型治疗策略,我们构建了来源于SKM9-2 mAb的CAR,分别包含CD28(SKM-28z)或4-1BB(SKM-BBz)共刺激结构域。SKM-28z CAR-T细胞在体外表现出持续增殖以及Tim-3、LAG-3和PD-1表达增强,这可能是由自激活引起的强直信号所诱导;然而,这些表型在SKM-BBz CAR-T细胞中未观察到。此外,SKM-BBz CAR-T细胞对MM细胞系的体外杀伤活性略强于SKM-28z CAR-T细胞。更重要的是,在MM细胞系异种移植小鼠模型中,仅SKM-BBz CAR-T细胞而非SKM-28z CAR-T细胞显著抑制了体内肿瘤生长。基因表达谱分析和报告基因实验揭示了不同的信号通路激活模式;特别是,SKM-BBz CAR-T细胞表现出NF-kB信号增强和NFAT激活降低。此外,SKM-BBz CAR-T细胞显示早期记忆标志物如TCF7和CCR7上调,以及促凋亡蛋白如BAK1和BID下调,这可能与SKM-BBz和SKM-28z CAR-T细胞之间的表型和功能差异相关。总之,我们开发了具有4-1BB共刺激结构域的新型SKM9-2衍生CAR-T细胞,这可能为难治性MM提供一种有前景的治疗方法。
The selection of highly specific target antigens is critical for the development of clinically efficient and safe chimeric antigen receptors (CARs). In search of diagnostic marker for malignant mesothelioma (MM), we have established SKM9-2 monoclonal antibody (mAb) which recognizes a MM-specific molecule, sialylated Protein HEG homolog 1 (HEG1), with high specificity and sensitivity. In this study, to develop a novel therapeutic approach against MM, we generated SKM9-2 mAb-derived CARs that included the CD28 (SKM-28z) or 4-1BB (SKM-BBz) costimulatory domain. SKM-28z CAR-T cells showed continuous growth and enhanced Tim-3, LAG-3, and PD-1 expression in vitro, which might be induced by tonic signaling caused by self-activation; however, these phenotypes were not observed in SKM-BBz CAR-T cells. In addition, SKM-BBz CAR-T cells exhibited slightly stronger in vitro killing activity against MM cell lines than SKM-28z CAR-T cells. More importantly, only SKM-BBz CAR-T cells, but not SKM-28z CAR-T cells, significantly inhibited tumor growth in vivo in a MM cell line xenograft mouse model. Gene expression profiling and reporter assays revealed differential signaling pathway activation; in particular, SKM-BBz CAR-T cells exhibited enhanced NF-kB signaling and reduced NFAT activation. In addition, SKM-BBz CAR-T cells showed upregulation of early memory markers, such as TCF7 and CCR7, as well as downregulation of pro-apoptotic proteins, such as BAK1 and BID, which may be associated with phenotypical and functional differences between SKM-BBz and SKM-28z CAR-T cells. In conclusion, we developed novel SKM9-2-derived CAR-T cells with the 4-1BB costimulatory domain, which could provide a promising therapeutic approach against refractory MM.
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