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:Genetic disruption of Blimp-1 drastically augments the antitumor efficacy of BCMA-targeting CAR T cells.
我们的研究结果共同表明,抑制 Blimp-1 表达改变了抗 BCMA CAR T 细胞的表型和功能,从而增强了其治疗多发性骨髓瘤的疗效。
靶向B细胞成熟抗原(BCMA)的嵌合抗原受体(CAR)T细胞是治疗多发性骨髓瘤(MM)的有效方法,但细胞持久性短和频繁复发仍是挑战。疗效不持久被认为与CAR-T细胞过早发生终末分化有关,这会妨碍形成维持抗肿瘤应答的长期记忆细胞。为提高长期疗效,研究者采用CRISPR/Cas9基因编辑敲除转录因子Blimp-1。与模拟处理(Mock)CAR-T细胞相比,Blimp-1敲除(KO)CAR-T细胞具有类记忆表型,但效应功能降低,颗粒酶B显著丢失。然而,在晚期MM小鼠模型中,Blimp-1 KO CAR-T细胞有效减缓甚至阻止疾病进展,在改善生存方面显著优于Mock CAR-T细胞(P=0.006)。为理解体内疗效增强的原因,研究者在体外反复用肿瘤细胞刺激CAR-T细胞并进行表征。在此条件下,Blimp-1 KO CAR-T细胞保持高度活化状态,记忆标志物表达较高;更重要的是,其效应功能和能量能力增强。对接触肿瘤后的Blimp-1 KO CAR-T细胞进行RNA测序,证实其具有类记忆转录特征,并发现核糖体生物发生增强、CAR-T功能障碍受到抑制,这些机制可能促进其抗肿瘤活性。综上,降低Blimp-1表达改变了抗BCMA CAR-T细胞表型和功能,增强了其治疗MM的效力。
Chimeric antigen receptor (CAR) T cells directed against B-cell maturation antigen (BCMA) are an effective treatment for multiple myeloma (MM), but short persistence and frequent relapses are challenges for this immunotherapy. This lack of durability has been attributed to the premature terminal differentiation of CAR T cells, which prevents the formation of long-lived memory cells that maintain antitumor responses. To improve long-term efficacy, we used CRISPR/CRISPR-associated protein 9-mediated gene editing to ablate the expression of the transcription factor Blimp-1. Blimp-1 knockout (KO) CAR T cells displayed a memory-like phenotype compared with control (Mock) CAR T cells, but had reduced effector function, with a striking loss of granzyme B. However, in a murine model of advanced MM, Blimp-1 KO CAR T cells effectively slowed or even prevented disease progression, significantly outperforming Mock CAR T cells in improving survival (P = .006). To understand this enhanced in vivo effectiveness, Blimp-1 KO CAR T cells were characterized after being repeatedly challenged with tumor cells in vitro. In this setting, Blimp-1 KO CAR T cells maintained a highly active state with high expression of memory markers, but, crucially, demonstrated enhanced effector function and increased energetic capacity. RNA-sequencing analysis of tumor-exposed Blimp-1 KO CAR T cells confirmed the presence of a memory-like transcriptomic signature and, additionally, revealed enhanced ribosome biogenesis and repressed CAR T-cell dysfunction as mechanisms that could contribute to improved antitumor activity. Put together, our findings show that dampening Blimp-1 expression altered the phenotype and function of anti-BCMA CAR T cells, leading to augmented therapeutic efficacy in MM.
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