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:Compromised antigen binding and signaling interfere with bispecific CD19 and CD79a chimeric antigen receptor function.
Compromised antigen binding and signaling interfere with bispecific CD19 and CD79a chimeric antigen receptor function.
我们发现,作为 B 细胞受体异二聚体组分的 CD79a 和 b 通过免疫组化在 84.3% 的淋巴瘤病例中表达,且 87.3% 的 CD79ab 阳性肿瘤同时共表达 CD19。
CD19靶向嵌合抗原受体(CAR)T细胞疗法已改变晚期B细胞恶性肿瘤的治疗方式。然而,抗原表达丢失或降低可使肿瘤逃逸,并缩短CAR T细胞治疗带来的缓解持续时间。构建同时靶向两种肿瘤抗原的双特异性CAR T细胞,可能克服抗原阴性肿瘤逃逸。免疫组化显示,84.3%的淋巴瘤病例表达B细胞受体异二聚体组分CD79a和CD79b;在CD79a/b阳性肿瘤中,87.3%也共表达CD19。研究构建了三种双特异性形式:串联型、双顺反子型,以及CD79a-CD19或CD79b-CD19 CAR T细胞混合产品。在CD19缺失的淋巴瘤异种移植模型中,双特异性CAR T细胞可阻止抗原阴性细胞扩增。然而,对仅表达CD19或CD79的肿瘤,串联型和双顺反子型CAR T细胞的疗效均不如相应的单特异性CD19或CD79a CAR T细胞。与单特异性CAR T细胞相比,表达串联CAR的T细胞对每种靶抗原的结合能力均降低;表达双顺反子CAR载体的T细胞则出现下游CAR信号分子磷酸化降低。本研究表明,尽管增加了靶向特异性,串联型和双顺反子型CAR T细胞仍存在不同缺陷,影响其识别仅表达单一抗原的肿瘤细胞。结果支持靶向多种B细胞抗原以提高疗效,同时也指出了双特异性受体设计仍需改进之处。
Therapy with CD19-directed chimeric antigen receptor (CAR) T cells has transformed the treatment of advanced B-cell malignancies. However, loss of or low antigen expression can enable tumor escape and limit the duration of responses achieved with CAR T-cell therapy. Engineering bispecific CAR T cells that target 2 tumor antigens could overcome antigen-negative escape. We found that CD79a and b, which are heterodimeric components of the B-cell receptor, were expressed on 84.3% of lymphoma cases using immunohistochemistry, and 87.3% of CD79ab-positive tumors also coexpressed CD19. We generated 3 bispecific permutations: tandem, bicistronic, and pooled products of CD79a-CD19 or CD79b-CD19 CAR T cells and showed that bispecific CAR T cells prevented the outgrowth of antigen-negative cells in a CD19-loss lymphoma xenograft model. However, tandem and bicistronic CAR T cells were less effective than monospecific CD19 or CD79a CAR T cells for the treatment of tumors that only expressed CD19 or CD79, respectively. When compared with monospecific CAR T cells, T cells expressing a tandem CAR exhibited reduced binding of each target antigen, and T cells expressing a bicistronic CAR vector exhibited reduced phosphorylation of downstream CAR signaling molecules. Our study showed that despite added specificity, tandem and bicistronic CAR T cells exhibit different defects that impair recognition of tumor cells expressing a single antigen. Our data provide support for targeting multiple B-cell antigens to improve efficacy and identify areas for improvement in bispecific receptor designs.
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