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:The development of novel chimeric antigen receptor gamma-delta T cells against multiple myeloma and single-cell RNA sequencing analysis.
The development of novel chimeric antigen receptor gamma-delta T cells against multiple myeloma and single-cell RNA sequencing analysis.
我们开发的新型CAR γδ T细胞在体外有效清除了MM细胞,但与传统的CAR αβT细胞相比,其体内持久性有限。
嵌合抗原受体(CAR)γδ T细胞提供了一种不依赖主要组织相容性复合体的、现成的替代方案,可替代传统的CAR αβ T细胞,但其在多发性骨髓瘤(MM)中的疗效仍未被充分探索。在本研究中,我们开发了一系列靶向B细胞成熟抗原(BCMA)的新型CAR γδ T细胞,并与CAR αβ T细胞进行比较,开展了功能实验。结果,新型CAR γδ T细胞在抗原刺激后表现出与CAR αβ T细胞相似的激活,但增殖能力较低,细胞毒性持久性较差。在体内,需要更高剂量的CAR γδ T细胞才能达到与CAR αβ T细胞相当的肿瘤控制效果。在CAR结构中,含有分化簇3(CD3ε或CD3ζ)胞内结构域的结构表现出更优的细胞毒性和体内疗效。单细胞转录组分析揭示,抗原刺激后循环中的CAR γδ T细胞比例较低,限制了CAR γδ T细胞的持久性。总之,我们开发的新型CAR γδ T细胞在体外能有效清除MM细胞,但与传统的CAR αβ T细胞相比,体内持久性有限。这些发现为利用γδ T细胞作为现成平台奠定了基础,并强调通过进一步工程化改造来解决增殖瓶颈对于未来临床转化至关重要。
Chimeric antigen receptor (CAR) gamma-delta (γδ) T cells offer a major histocompatibility complex-independent, off-the-shelf alternative to conventional CAR alpha-beta (αβ) Tcells, but their efficacy in multiple myeloma (MM) remains underexplored. In this work, we developed a series of novel CAR γδ T cells redirected to B-cell maturation antigen (BCMA) and performed functional assays compared to CAR αβ T cells. As a result, novel CAR γδ T cells demonstrated similar activation upon antigen stimulation compared with CAR αβ T cells but showed lower proliferative capacity and less durable cytotoxicity. In vivo, higher doses of CAR γδ T cells were required to achieve tumour control comparable to CAR αβ T cells. Among CAR constructs, those with cluster of differentiation 3 (CD3ε or CD3ζ) intracellular domain exhibited superior cytotoxicity and in vivo efficacy. Single-cell transcriptomic profiling revealed the low ratio of cycling CAR γδ T cells after antigen stimulation limited the persistence of CAR γδ T cells. In conclusion, our developed novel CAR γδ T cells effectively eliminated MM cells in vitro, but exhibited limited in vivo persistence compared to traditional CAR αβT cells. These findings establish a baseline for utilizing γδ T cells as an off-the-shelf platform and highlight that addressing the proliferation bottleneck through further engineering is essential for future clinical translation.
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