TCR-JANUS 衔接蛋白实现双特异性靶向以克服 TCR-T 细胞治疗中的肿瘤异质性
TCR-JANUS engager proteins enable bispecific targeting to overcome tumor heterogeneity in TCR-T cell therapy.
基于 T 细胞受体(TCR)的免疫疗法受限于肿瘤抗原异质性,后者常导致复发。
英文原题:Potentiating T cell tumor targeting using a combination of TCR with a Siglec-7 based CSR.
鉴于 Siglec-7 配体在肿瘤细胞上的广泛表达模式,我们的数据提示该 CSR 可作为通用佐剂来增强 TCR T 细胞功能。
引言:肿瘤可采用多种策略逃避免疫监视。除了过表达PD-L1等检查点配体或分泌免疫抑制因子外,多项研究显示,癌症异常唾液酸化可通过与Siglec家族等特定受体相互作用,中和NK细胞和T细胞功能。方法:本研究利用肿瘤细胞表面存在抑制性唾液酸配体的特点,增强T细胞抗肿瘤活性。为此,我们设计了一种新型嵌合受体,由Siglec-7胞外部分和4-1BB胞内部分组成;该受体在人T细胞中表达时,可将抑制信号转化为刺激信号。结果:当这种共刺激嵌合转换受体(CSR)与肿瘤特异性TCR共表达时,与肿瘤细胞共培养后,T细胞细胞因子分泌和活化特征均增强。此外,表达Siglec-7 CSR的T细胞在体内表现出增强的抗肿瘤功能。讨论:鉴于肿瘤细胞广泛表达Siglec-7配体,我们的数据提示该CSR可能作为通用佐剂增强TCR T细胞功能。总体而言,本研究提供了一种改善工程化T细胞癌症治疗的方法。
INTRODUCTION: Tumors may utilize different strategies to escape T cell immunosurveillance. Besides the overexpression of checkpoint ligands (such as PDL1) or the secretion of immunosuppressive agents, several studies have shown that cancer aberrant sialylation can, through interaction with selected receptors such as those from the Siglec family, neutralize NK and T cell function. METHODS: Herein, we wanted to take advantage of the presence of inhibitory sialic acid ligands on the tumor cell surface to enhance T cell anti-tumor activity. To this end, we devised a novel chimeric receptor consisting of the extracellular portion of Siglec-7 and the intracellular portion of 41BB, which can convert inhibitory signals into stimulatory ones when expressed in human T-cells. RESULTS: This co-stimulatory chimeric switch receptor (CSR), when co-expressed with a tumor-specific TCR, facilitated higher cytokine secretion and activation profiles following co-culture with tumor cells. Additionally, T cells equipped with Siglec-7 CSR demonstrated improved anti-tumor function in vivo . DISCUSSION: Given the broad expression pattern of Siglec-7 ligands on tumor cells, our data suggest this CSR may act as a general adjuvant to boost TCR T cell function. Overall, this work provides an approach to improve engineered T-cell-based cancer treatment.
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