间皮素作为癌症免疫治疗的生物标志物和治疗靶点
Mesothelin as Biomarker and Therapeutic Target for Immunotherapy in Cancer.
癌症仍是一个关键的全球健康问题,原因在于发现晚、耐药和高死亡率。
CELL INTELLIGENCE · 肿瘤细胞治疗研究
肿瘤细胞治疗研究
英文原题:PD-1-CD28 fusion protein strengthens mesothelin-specific TRuC T cells in preclinical solid tumor models.
PD-1-CD28 fusion protein strengthens mesothelin-specific TRuC T cells in preclinical solid tumor models.
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这些结果证明了在 TRuC T 细胞中 PD-1-CD28 共表达的治疗潜力,能够防止 PD-L1 诱导的 T 细胞功能低下。
T 细胞受体融合构建体(TRuC)由基于抗体的单链可变片段(scFv)与 T 细胞受体链(TCR)融合而成,能够以不依赖 HLA 的方式识别癌细胞。与嵌合抗原受体(CAR)不同,TRuC 整合入 TCR 复合物中,形成具有新特异性的功能性嵌合体,同时保留 TCR 信号传导。为进一步增强抗肿瘤功能,我们在 TRuC T 细胞中表达了 PD-1-CD28 融合受体,旨在防止肿瘤诱导的免疫抑制和 T 细胞无能。
在与肿瘤细胞的共培养实验中研究了工程化T细胞的活化水平,随后使用ELISA对释放的细胞因子进行定量。为了研究体外T细胞介导的肿瘤细胞裂解,测量了基于阻抗的实时肿瘤细胞杀伤和LDH释放。最后,采用两种异种移植小鼠癌症模型来探索工程化T细胞的治疗潜力。
在共培养试验中,PD-1-CD28的共表达增强了TRuC T细胞的细胞因子产生。这一效应依赖于PD-L1与PD-1-CD28的相互作用,因为阻断PD-L1使未修饰的TRuC T细胞产生的IFN-γ水平提高到比TRuC-PD-1-CD28 T细胞更高的程度。在体内,PD-1-CD28的共表达在两个异种移植小鼠癌症模型中支持了TRuC T细胞的抗肿瘤疗效。
T cell receptor fusion constructs (TRuC) consist of an antibody-based single chain variable fragment (scFv) fused to a T cell receptor chain (TCR) and allow recognition of cancer cells in an HLA-independent manner. Unlike chimeric antigen receptors (CAR), TRuC are integrated into the TCR complex resulting in a functional chimera with novel specificity, whilst retaining TCR signaling. To further enhance anti-tumor function, we expressed a PD-1-CD28 fusion receptor in TRuC T cells aiming to prevent tumor-induced immune suppression and T cell anergy.
The activation level of engineered T cells was investigated in co-culture experiments with tumor cells followed by quantification of released cytokines using ELISA. To study T cell-mediated tumor cell lysis in vitro, impedance-based real-time tumor cell killing and LDH release was measured. Finally, two xenograft mouse cancer models were employed to explore the therapeutic potential of engineered T cells.
In co-culture assays, co-expression of PD-1-CD28 enhanced cytokine production of TRuC T cells. This effect was dependent on PD-L1 to PD-1-CD28 interactions, as blockade of PD-L1 amplified IFN-γ production in unmodified TRuC T cells to a greater level compared to TRuC-PD-1-CD28 T cells. In vivo, PD-1-CD28 co-expression supported the anti-tumor efficacy of TRuC T cells in two xenograft mouse cancer models.
Together, these results demonstrate the therapeutic potential of PD-1-CD28 co-expression in TRuC T cells to prevent PD-L1-induced T cell hypofunction.
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