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:Simultaneous targeting of Tim3 and A2a receptors modulates MSLN-CAR T cell antitumor function in a human cervical tumor xenograft model.
这些发现凸显了同时基因靶向 Tim3 和 A2a 受体以增强 CAR T 细胞治疗实体瘤疗效的潜力。
引言:嵌合抗原受体(CAR)T 细胞疗法已改变血液系统恶性肿瘤治疗方式。然而,实体瘤中的免疫抑制性肿瘤微环境会损害临床环境下 CAR T 细胞的抗肿瘤功能,限制其疗效。为克服这一挑战,研究人员探索抑制特定免疫检查点受体的潜力,包括 A2aR(腺苷 A2 受体)和 Tim3(T 细胞免疫球蛋白和黏蛋白结构域蛋白 3),以增强 CAR T 细胞功能。本研究在体内外评估基因靶向 Tim3 和 A2a 受体对人间皮素特异性 CAR T 细胞(MSLN-CAR)抗肿瘤功能的影响。方法:采用标准细胞和分子生物学技术制备第二代抗间皮素 CAR T 细胞。利用 shRNA 介导的基因沉默,制备 A2aR 敲低和/或 Tim3 敲低的抗间皮素 CAR T 细胞。通过与宫颈癌细胞(HeLa 细胞系)共培养,测量体外细胞因子生成、增殖和细胞毒性,以评估 CAR T 细胞抗肿瘤功能。在人宫颈癌异种移植模型中监测肿瘤生长和小鼠生存,以评估制备的 CAR T 细胞体内抗肿瘤疗效。结果:体外实验显示,单独敲低 A2aR 或联合敲低 Tim3,可在有肿瘤细胞存在且抗原特异性作用的情况下,显著提高 CAR T 细胞增殖、细胞因子生成和细胞毒性。此外,在人源化异种移植模型中,双敲低 CAR T 细胞和对照 CAR T 细胞均可有效控制肿瘤生长,但单敲低 CAR T 细胞与小鼠生存率降低相关。结论:这些发现凸显了同步基因靶向 Tim3 和 A2a 受体以增强 CAR T 细胞治疗实体瘤疗效的潜力。然而,鉴于观察到单独敲低 MSLN-CAR T 细胞治疗组小鼠生存率下降,仍须谨慎行事并仔细权衡疗效。
INTRODUCTION: Chimeric antigen receptor (CAR) T cell therapy has transformed the treatment of hematological malignancies. However, its efficacy in solid tumors is limited by the immunosuppressive tumor microenvironment that compromises CAR T cell antitumor function in clinical settings. To overcome this challenge, researchers have investigated the potential of inhibiting specific immune checkpoint receptors, including A2aR (Adenosine A2 Receptor) and Tim3 (T cell immunoglobulin and mucin domain-containing protein 3), to enhance CAR T cell function. In this study, we evaluated the impact of genetic targeting of Tim3 and A2a receptors on the antitumor function of human mesothelin-specific CAR T cells (MSLN-CAR) in vitro and in vivo. METHODS: Second-generation anti-mesothelin CAR T cells were produced using standard cellular and molecular techniques. A2aR-knockdown and/or Tim3- knockdown anti-mesothelin-CAR T cells were generated using shRNA-mediated gene silencing. The antitumor function of CAR T cells was evaluated by measuring cytokine production, proliferation, and cytotoxicity in vitro through coculture with cervical cancer cells (HeLa cell line). To evaluate in vivo antitumor efficacy of manufactured CAR T cells, tumor growth and mouse survival were monitored in a human cervical cancer xenograft model. RESULTS: In vitro experiments demonstrated that knockdown of A2aR alone or in combination with Tim3 significantly improved CAR T cell proliferation, cytokine production, and cytotoxicity in presence of tumor cells in an antigen-specific manner. Furthermore, in the humanized xenograft model, both double knockdown CAR T cells and control CAR T cells could effectively control tumor growth. However, single knockdown CAR T cells were associated with reduced survival in mice. CONCLUSION: These findings highlight the potential of concomitant genetic targeting of Tim3 and A2a receptors to augment the efficacy of CAR T cell therapy in solid tumors. Nevertheless, caution should be exercised in light of our observation of decreased survival in mice treated with single knockdown MSLN-CAR T cells, emphasizing the need for careful efficacy considerations.
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