γδ T 细胞调节小细胞肺癌中的抗肿瘤免疫
γδ T cells modulate anti-tumor immunity in small cell lung cancer.
肿瘤细胞治疗研究
英文原题:Unmodified γδ T cells exhibit potent antitumor activity in hepatocellular carcinoma and are enhanced by PD-L1 blockade.
Unmodified γδ T cells exhibit potent antitumor activity in hepatocellular carcinoma and are enhanced by PD-L1 blockade.
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未修饰的γδ T 细胞在 HCC 中表现出强大的抗肿瘤活性和良好的安全性,但在 PD-L1 阳性肿瘤中受到适应性 PD-L1 介导的免疫抵抗的限制。这些发现为将基于γδ T 细胞的疗法与免疫检查点抑制联合使用以提高晚期 HCC 的治疗疗效提供了机制依据。
肝细胞癌(HCC)具有深度免疫抑制的微环境,限制了当前免疫疗法的疗效。本研究评估了未修饰γδ T细胞在HCC中的抗肿瘤活性,并明确了限制其治疗持久性的免疫检查点介导机制。
对LIHC数据集进行生物信息学分析,以鉴定候选的预后T细胞受体γ可变(TRGV)基因。通过体外共培养实验,使用PD-L1低表达(Huh7)和PD-L1高表达(HCC-LM3)HCC细胞系、实时细胞毒性分析以及细胞因子谱分析,对离体扩增的γδ T细胞进行了评估。在皮下异种移植小鼠模型中,采用共植入和静脉给药策略,进一步评估了治疗效果、免疫检查点调控和全身安全性。
TRGV3表达与改善的总生存期相关,并反映了肿瘤微环境中γδ T细胞的存在。未经修饰的γδ T细胞对HCC细胞发挥强效、剂量依赖性的细胞毒性,并在体内抑制肿瘤生长,尤其是在PD-L1阴性模型中。在PD-L1阳性HCC-LM3肿瘤中,全身给药后γδ T细胞疗效降低,并与肿瘤诱导的PD-L1上调、延迟的细胞毒性及肿瘤复发相关。阻断PD-L1/PD-1轴可恢复持久的γδ T细胞介导的肿瘤控制。重要的是,γδ T细胞治疗耐受性良好,未观察到明显的全身毒性。
Hepatocellular carcinoma (HCC) exhibits a profoundly immunosuppressive microenvironment that limits the efficacy of current immunotherapies. This study evaluated the antitumor activity of unmodified γδ T cells in HCC and defined immune checkpoint-mediated mechanisms that restrict their therapeutic durability.
Bioinformatic analyses of LIHC datasets were performed to identify candidate prognostic T-cell receptor γ variable (TRGV) genes. Ex vivo-expanded γδ T cells were evaluated using in vitro co-culture assays with PD-L1-low (Huh7) and PD-L1-high (HCC-LM3) HCC cell lines, real-time cytotoxicity analyses, and cytokine profiling. Therapeutic efficacy, immune checkpoint regulation, and systemic safety were further assessed in subcutaneous xenograft mouse models using co-implantation and intravenous administration strategies.
TRGV3 expression correlated with improved overall survival and reflected γδ T-cell presence within the tumor microenvironment. Unmodified γδ T cells exerted potent, dose-dependent cytotoxicity against HCC cells and suppressed tumor growth in vivo, particularly in PD-L1-negative models. In PD-L1-positive HCC-LM3 tumors, γδ T cell efficacy was reduced following systemic administration and was associated with tumor-induced PD-L1 upregulation, delayed cytotoxicity, and tumor recurrence. Blockade of the PD-L1/PD-1 axis restored durable γδ T cell-mediated tumor control. Importantly, γδ T-cell treatment was well tolerated, with no overt systemic toxicity observed.
Unmodified γδ T cells demonstrate strong antitumor activity and a favorable safety profile in HCC but are limited by adaptive PD-L1-mediated immune resistance in PD-L1-positive tumors. These findings provide a mechanistic rationale for combining γδ T cell-based therapies with immune checkpoint inhibition to enhance therapeutic efficacy in advanced HCC.
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