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:Bispecific ANXA2/CD147 CAR-T cell therapy for osteosarcoma.
基于第二代 CAR 骨架,采用磁珠分选、原代 T 细胞培养和慢病毒转导,构建了双特异性 ANXA2/CD147 CAR-T 结构,转导效率达到 47.1%。
骨肉瘤是一种高度恶性的肿瘤,预后较差。目前的骨肉瘤 CAR-T 细胞疗法大多设计为单靶点,但其疗效仍不理想。在本研究中,开发了一种新型双特异性 CAR-T 细胞,为改善骨肉瘤的治疗效果提供实验依据。单细胞 RNA 测序(scRNA-seq)鉴定出骨肉瘤细胞中高表达的两种抗原 ANXA2 和 CD147,其表达通过 qRT-PCR、流式细胞术和免疫组织化学在组织水平得到进一步验证。基于第二代 CAR 骨架,通过磁珠分选、原代 T 细胞培养和慢病毒转导,构建了双特异性 ANXA2/CD147 CAR-T 构建体,转导效率达到 47.1%。LDH 释放实验表明,双特异性 CAR-T 细胞对肿瘤细胞的细胞毒性显著高于单靶点和对照组。ELISA 证实,双特异性 CAR-T 细胞释放更高水平的效应分子,包括 GZMB 和 TNF。在皮下 CDX 模型中,双特异性 CAR-T 细胞表现出更优的抗肿瘤活性和更强的 T 细胞浸润。在足垫异种移植模型中,接受双特异性 CAR-T 细胞治疗的小鼠肿瘤体积最小、肿瘤重量最低,且淋巴结转移率降低。此外,PDX 模型证实双特异性 CAR-T 细胞有效抑制骨肉瘤生长。对来自 CDX 模型的肿瘤进行 scRNA-seq 以及免疫组织化学显示,双特异性组中 M1 巨噬细胞浸润显著增加。总之,本研究成功构建了具有强效抗肿瘤活性的双特异性 ANXA2/CD147 CAR-T 细胞,为骨肉瘤的免疫治疗提供了一种有前景的新策略。
Osteosarcoma is a highly malignant tumor with poor prognosis. Current CAR-T cell therapies for osteosarcoma are predominantly designed with single targets, but their efficacy remains unsatisfactory. In this study, a novel bispecific CAR-T cell was developed to provide an experimental basis for improving the therapeutic outcome of osteosarcoma. Single-cell RNA sequencing (scRNA-seq) identified two antigens highly expressed in osteosarcoma cells, ANXA2 and CD147, whose expression was further validated at the tissue level by qRT-PCR, flow cytometry, and immunohistochemistry. Based on a second-generation CAR backbone, a bispecific ANXA2/CD147 CAR-T construct was generated using magnetic bead sorting, primary T-cell culture, and lentiviral transduction, achieving a transduction efficiency of 47.1%. LDH release assays demonstrated that bispecific CAR-T cells exhibited significantly greater cytotoxicity against tumor cells than single-target and control groups. ELISA confirmed that bispecific CAR-T cells released higher levels of effector molecules, including GZMB and TNF . In a subcutaneous CDX model, bispecific CAR-T cells displayed superior antitumor activity and greater T-cell infiltration. In a paw pad xenograft model, mice treated with bispecific CAR-T cells exhibited the smallest tumor volumes, lowest tumor weights, and reduced rates of lymph node metastasis. Furthermore, PDX models confirmed that bispecific CAR-T cells effectively suppressed osteosarcoma growth. ScRNA-seq of tumors derived from CDX models and immunohistochemistry revealed markedly increased infiltration of M1 macrophages in the bispecific group. Collectively, this study successfully generated a bispecific ANXA2/CD147 CAR-T cell with robust antitumor activity, providing a promising new strategy for the immunotherapy of osteosarcoma.
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