帕博利珠单抗联合二甲双胍治疗转移性头颈部癌的 II 期可行性研究
A Phase II Feasibility Study Combining Pembrolizumab and Metformin in Patients with Metastatic Head and Neck Cancer.
二甲双胍联合帕博利珠单抗耐受性良好,仅出现轻度胃肠道不良事件,并展现出有前景的活性,值得在随机试验中进一步研究。
CELL INTELLIGENCE · 肿瘤细胞治疗研究
肿瘤细胞治疗研究
英文原题:Tumor-specific T cells in head and neck cancer have rescuable functionality and can be identified through single-cell co-culture.
Tumor-specific T cells in head and neck cancer have rescuable functionality and can be identified through single-cell co-culture.
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这些研究表明,在 HNSCC 患者中普遍存在具有可挽救免疫原性的肿瘤特异性 T 细胞,并可在单细胞水平上进行识别。这些数据为在 HNSCC 中开发患者特异性 T 细胞免疫疗法奠定了基础。
HPV阴性头颈部鳞状细胞癌(HNSCC)仍是一种治疗耐药性疾病,对免疫治疗反应有限。虽然已知HNSCC中的T细胞表现出表型功能障碍,但它们是否保留可挽救的功能能力和肿瘤杀伤能力仍不清楚。
为探究TIL在HNSCC中的功能及肿瘤特异性,从31例HPV阴性HNSCC患者标准手术切除时获取恶性细胞系和TIL。通过离体扩增、免疫表型分析和IsoLight单细胞蛋白质组学评估T细胞功能能力。通过批量及单细胞肿瘤-TIL共培养研究肿瘤特异性。
TILs可从24例患者(77%)中成功生成,包括既往未治疗和放疗后复发的HNSCC。我们证明,在各类HNSCC中,TILs表达多种耗竭标志物,但主要维持效应记忆表型。经过体外扩增后,即使来自放疗耐药、耗竭和T细胞耗竭的疾病,TILs仍保留免疫原性功能。我们进一步通过患者配对的恶性细胞-T细胞共培养,证明了跨HNSCC患者的T细胞肿瘤特异性。最后,我们利用光流控技术建立了HNSCC的自体单肿瘤细胞-单T细胞共培养平台。来自三例HNSCC患者的细胞进行了单细胞共培养,从而能够在所有患者中实时识别和可视化单个杀瘤TILs。
Human papillomavirus (HPV)-negative head and neck squamous cell carcinoma (HNSCC) remains a treatment-resistance disease with limited response to immunotherapy. While T cells in HNSCC are known to display phenotypic dysfunction, whether they retain rescuable functional capacity and tumor-killing capability remains unclear.
To investigate the functionality and tumor-specificity of tumor-infiltrating lymphocytes (TILs) across HNSCCs, malignant cell lines and TILs were derived from 31 HPV-negative HNSCCs at the time of standard surgical resection. T cell functional capacity was evaluated through ex vivo expansion, immunophenotyping, and IsoLight single-cell proteomics. Tumor-specificity was investigated through both bulk and single-cell tumor-TIL co-culture.
TILs could be successfully generated from 24 patients (77%), including both previously untreated and radiation recurrent HNSCCs. We demonstrate that across HNSCCs, TILs express multiple exhaustion markers but maintain a predominantly effector memory phenotype. After ex vivo expansion, TILs retain immunogenic functionality even from radiation-resistant, exhausted, and T cell-depleted disease. We further demonstrate tumor-specificity of T cells across HNSCC patients through patient-matched malignant cell-T cell co-culture. Finally, we use optofluidic technology to establish an autologous single tumor cell-single T cell co-culture platform for HNSCC. Cells derived from three HNSCC patients underwent single-cell co-culture which enabled identification and visualization of individual tumor-killing TILs in real-time in all patients.
These studies show that cancer-specific T cells exist across HNSCC patients with rescuable immunogenicity and can be identified on a single-cell level. These data lay the foundation for development of patient-specific T cell immunotherapies in HNSCC.
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