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:CD19/CD20 dual-targeted chimeric antigen receptor-engineered natural killer cells exhibit improved cytotoxicity against acute lymphoblastic leukemia.
CD19/CD20 dual-targeted chimeric antigen receptor-engineered natural killer cells exhibit improved cytotoxicity against acute lymphoblastic leukemia.
CD19/CD20双靶向CAR-NK细胞的创建解决了ALL中因抗原异质性导致的肿瘤逃逸风险,提供了高效、安全的“现货型”细胞产品。这些细胞在ALL中靶向CD20和/或CD19抗原方面显示出疗效,为其在ALL治疗中的应用奠定了实验基础。
嵌合抗原受体自然杀伤(CAR-NK)细胞代表了CAR细胞治疗领域的一项有前景的进展,解决了CAR-T细胞治疗中观察到的局限性。然而,我们此前的研究揭示了靶向CD19抗原的CAR-NK细胞面临的挑战,因为它们未能清除NSG荷瘤小鼠体内的CD19+ Raji细胞,并注意到部分Raji细胞中CD19抗原表达下调或缺失。为此,本研究旨在通过开发CD19和CD20(CD19/CD20)双靶向CAR-NK细胞,增强CD19 CAR-NK细胞的疗效并降低因靶抗原逃逸导致的肿瘤复发风险。
首先,通过体外转录构建了编码抗CD19 CAR(FMC63 scFv-CD8-4-1BB-CD3)和抗CD20 CAR(LEU16 scFv-CD8-4-1BB-CD3)的mRNA。随后,通过将CD19/CD20 CAR mRNA同时电转染至脐带血来源NK细胞(UCB-NK)中,生成了CD19/CD20双靶向CAR-NK细胞。
共电转后,流式细胞术检测显示NK细胞上双CAR表达比例为86.4% 1.83%。CAR表达在电转后8 h即可检测到,24 h达到峰值,96 h仍可检测到。与UCB-NK、CD19 CAR-NK和CD20 CAR-NK细胞相比,CD19/CD20双靶向CAR-NK细胞对急性淋巴细胞白血病(ALL)细胞系(BALL-1:CD19 + CD20 +,REH:CD19 + CD20 -,Jurkat:CD19 - CD20 -)表现出增强的特异性细胞毒性。此外,CD19/CD20双靶向CAR-NK细胞释放的穿孔素、IFN- 和IL-15水平升高。CD69等多种活化标志物和细胞毒性物质高表达。
BACKGROUND: Chimeric antigen receptor natural killer (CAR-NK) cells represent a promising advancement in CAR cell therapy, addressing limitations observed in CAR-T cell therapy. However, our prior study revealed challenges in CAR-NK cells targeting CD19 antigens, as they failed to eliminate CD19 + Raji cells in NSG tumor-bearing mice, noting down-regulation or loss of CD19 antigen expression in some Raji cells. In response, this study aims to enhance CD19 CAR-NK cell efficacy and mitigate the risk of tumor recurrence due to target antigen escape by developing CD19 and CD20 (CD19/CD20) dual-targeted CAR-NK cells. METHODS: Initially, mRNA encoding anti-CD19 CARs (FMC63 scFv-CD8 -4-1BB-CD3 ) and anti-CD20 CARs (LEU16 scFv-CD8 -4-1BB-CD3 ) was constructed via in vitro transcription. Subsequently, CD19/CD20 dual-targeted CAR-NK cells were generated through simultaneous electrotransfection of CD19/CD20 CAR mRNA into umbilical cord blood-derived NK cells (UCB-NK). RESULTS: Following co-electroporation, the percentage of dual-CAR expression on NK cells was 86.4% 1.83%, as determined by flow cytometry. CAR expression was detectable at 8 h post-electric transfer, peaked at 24 h, and remained detectable at 96 h. CD19/CD20 dual-targeted CAR-NK cells exhibited increased specific cytotoxicity against acute lymphoblastic leukemia (ALL) cell lines (BALL-1: CD19 + CD20 + , REH: CD19 + CD20 - , Jurkat: CD19 - CD20 - ) compared to UCB-NK, CD19 CAR-NK, and CD20 CAR-NK cells. Moreover, CD19/CD20 dual-targeted CAR-NK cells released elevated levels of perforin, IFN- , and IL-15. Multiple activation markers such as CD69 and cytotoxic substances were highly expressed. CONCLUSIONS: The creation of CD19/CD20 dual-targeted CAR-NK cells addressed the risk of tumor escape due to antigen heterogeneity in ALL, offering efficient and safe 'off-the-shelf' cell products. These cells demonstrate efficacy in targeting CD20 and/or CD19 antigens in ALL, laying an experimental foundation for their application in ALL treatment.
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