单细胞追踪揭示黑色素瘤 TIL 治疗过程中肿瘤反应性 T 细胞的可塑性
Single-cell tracking reveals tumor-reactive T cell plasticity during melanoma TIL therapy.
TIL(肿瘤浸润淋巴细胞)过继细胞治疗可在转移性黑色素瘤中诱导持久缓解,然而在体外扩增过程中及回输后,调控肿瘤反应性T细胞命运的克隆和转录动态仍知之甚少。
英文原题:Sensitivity to immune checkpoint inhibitors in BRAF/MEK inhibitor refractory melanoma.
Sensitivity to immune checkpoint inhibitors in BRAF/MEK inhibitor refractory melanoma.
EGFR 过表达成为 BRAFi/MEKi 耐药黑色素瘤中二线 ICIs 应答的潜在预测性生物标志物。
背景:转移性黑色素瘤对BRAF和MEK抑制剂(BRAFi/MEKi)耐药,常导致对免疫检查点抑制剂(ICI)交叉耐药,限制有效治疗选择。然而,一部分BRAFi/MEKi耐药患者仍对二线ICI有应答,提示其潜在耐药机制存在异质性。本研究旨在探究BRAFi/MEKi耐药黑色素瘤的肿瘤免疫微环境,发现影响二线ICI敏感性的因素。方法:使用BRAFi/MEKi耐药黑色素瘤小鼠模型研究耐药及二线ICI应答机制。采用流式细胞术分析肿瘤微环境中的免疫细胞群,重点关注CD8+效应T细胞及其他关键免疫亚群的变化。采用RNA测序描绘耐药肿瘤转录组变化,以揭示与耐药相关的信号通路。进一步评估BRAFi/MEKi耐药患者临床样本中免疫特征与关键信号通路的相关性,以支持临床前模型结果。结果:在BRAFi/MEKi耐药黑色素瘤小鼠模型中,我们观察到肿瘤免疫微环境发生不同改变。经BRAFi/MEKi治疗后,耐药肿瘤中CD8+效应T细胞显著增加,提示出现免疫刺激反应。机制分析发现,EGFR–STAT信号通路活化是这些模型中内在耐药的关键驱动因素。值得注意的是,这些肿瘤仍对二线ICI敏感,与由NRAS驱动的BRAFi/MEKi耐药肿瘤形成对照,后者对ICI表现出交叉耐药。支持上述发现的是,BRAFi/MEKi耐药患者临床样本中EGFR活化升高与免疫评分较高相关,提示该亚组患者可能对ICI治疗敏感。结论:EGFR过表达可能成为预测BRAFi/MEKi耐药黑色素瘤患者对二线ICI应答的生物标志物。这些发现强调需要分层治疗策略,并提示EGFR是改善ICI疗效的潜在靶点。
BACKGROUND: Resistance to BRAF and MEK inhibitors (BRAFi/MEKi) in metastatic melanoma frequently results in cross-resistance to immune checkpoint inhibitors (ICI), limiting effective treatment options. However, a subset of BRAFi/MEKi-resistant patients remains responsive to second-line ICI, suggesting heterogeneous underlying resistance mechanisms. This study aimed to explore the tumor immune microenvironment in BRAFi/MEKi-resistant melanoma to uncover factors influencing sensitivity to second-line ICI therapy. METHOD: To investigate mechanisms underlying resistance and responsiveness to second-line ICIs, BRAFi/MEKi-resistant melanoma mouse models were used. Flow cytometry was employed to analyze immune cell populations within the tumor microenvironment, focusing on changes in CD8+T effector cells and other key immune subsets. RNA sequencing was performed to profile transcriptomic changes in resistant tumors, providing insights into the signaling pathways associated with resistance. Clinical samples from BRAFi/MEKi-resistant patients were further evaluated for correlations between immune profiles and key signaling pathways to support findings from the preclinical models. RESULTS: Using BRAFi/MEKi-resistant melanoma mouse models, we observed distinct alterations in the tumor-immune microenvironment. Tumors exhibiting resistance showed a significant increase in CD8+T effector cells following BRAFi/MEKi treatment, suggesting an immune-stimulatory response. Mechanistic analysis identified the activation of the EGFR-STAT signaling pathway as a key driver of intrinsic resistance in these models. Notably, these tumors retained sensitivity to second-line ICI therapy, contrasting with NRAS-driven BRAFi/MEKi-resistant tumors, which demonstrated cross-resistance to ICIs. Supporting these findings, clinical samples from BRAFi/MEKi-resistant patients revealed a correlation between elevated EGFR activation and higher immune scores, indicating potential sensitivity to ICI therapy in this subset of patients. CONCLUSION: EGFR overexpression emerges as a potential predictive biomarker for responsiveness to second-line ICIs in BRAFi/MEKi-resistant melanoma. These findings underscore the need for stratified therapeutic approaches and highlight EGFR as a target for improving outcomes in ICI therapy.
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