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。
英文原题:Preexisting TCR Clones Drive Major Pathologic Responses in Patients with HNSCC Treated with Dual Immune Checkpoint Inhibitors.
双 ICI 主要通过既有免疫的适应性和功能重编程驱动 MPR。成功的治疗依赖于协调的免疫组库应答,促进推定的肿瘤反应性超级扩增克隆转变为有效的功能状态。TRS 整合的 TAI 提供了一个高通量框架,结合克隆动力学和功能重编程来预测治疗疗效。
免疫检查点抑制剂(ICI)在头颈部鳞状细胞癌(HNSCC)中引发的反应各不相同,但驱动主要病理缓解(MPR)的机制仍不明确。我们试图通过评估CD8 T细胞库的纵向演变来识别MPR的决定因素。
我们分析了接受新辅助抗PD-1联合抗CTLA-4或抗LAG3治疗的HNSCC患者配对治疗前和治疗后CD8TIL(肿瘤浸润淋巴细胞)的高分辨率单细胞T细胞受体(TCR)测序数据。
与克隆替换假说相反,无论临床结局如何,治疗后CD8 T细胞库均以原有TCR克隆为主。MPR的独特特征在于超级扩增克隆的丰度更高、扩增幅度更大。我们开发了TCR适应性指数(TAI),用于量化治疗前和治疗后时间点检测到的所有TCR克隆的协同变化(扩增和收缩);该指数成为与MPR相关的最显著参数。重要的是,在非MPR中,克隆扩增与MPR中观察到的有效的、治疗诱导的转录重编程——以效应活力和细胞适应性标志物为特征——相脱钩。此外,扩增动态与通过肿瘤反应性特征(TRS)评分计算得出的预测肿瘤反应性呈正相关。最后,TRS整合的TAI仍与MPR显著相关。
PURPOSE: Immune checkpoint inhibitors (ICI) elicit variable responses in head and neck squamous cell carcinoma (HNSCC), yet mechanisms driving major pathologic responses (MPR) remain poorly defined. We sought to evaluate longitudinal CD8 T-cell repertoire evolution to identify determinants of MPR. PATIENTS AND METHODS: We analyzed high-resolution single-cell T-cell receptor (TCR) sequencing data from paired pretreatment and posttreatment CD8 tumor-infiltrating lymphocytes obtained from patients with HNSCC treated with neoadjuvant anti-PD-1 combined with either anti-CTLA-4 or anti-LAG3. RESULTS: Contrary to the clonal replacement hypothesis, posttreatment CD8 T-cell pools were dominated by preexisting TCR clones regardless of clinical outcome. MPR was uniquely characterized by higher abundance and greater expansion magnitude of super-expanded clones. We developed the TCR adaptivity index (TAI) to quantify coordinate flux (expansion and contraction) of all TCR clones detected across pretreatment and posttreatment time points; this index emerged as the most significant parameter associated with MPR. Importantly, clonal expansion in non-MPR was uncoupled from the productive, therapy-induced transcriptional reprogramming-characterized by markers of effector vigor and cellular fitness-that was observed in MPR. Furthermore, expansion dynamics positively correlated with predicted tumor reactivity as calculated by the tumor-reactive signature (TRS) score. Finally, a TRS-integrated TAI remained significantly correlated with MPR. CONCLUSIONS: Dual-ICI drives MPR predominantly through the adaptivity and functional reprogramming of preexisting immunity. Successful therapy relies on a coordinate repertoire response that promotes transition of putative tumor-reactive super-expanders into productive functional states. TRS-integrated TAI provides a high-throughput framework incorporating clonal dynamics and functional reprogramming to predict therapeutic efficacy.
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