下一代肿瘤不可知靶点即将出现
Next-generation tumor-agnostic targets on the horizon.
肿瘤不可知药物开发将肿瘤学重新聚焦于共享的分子依赖性而非组织来源,从而能够针对跨肿瘤的罕见可操作驱动因素进行高效开发。
英文原题:Tumor immune microenvironmental characteristics in Human Epidermal Growth Factor-2 (HER2) positive esophageal adenocarcinoma: A comparative analysis and biomarker study.
Tumor immune microenvironmental characteristics in Human Epidermal Growth Factor-2 (HER2) positive esophageal adenocarcinoma: A comparative analysis and biomarker study.
HER2表达与上皮性肿瘤特征相关。HER2阳性TIME显示免疫细胞浸润减少,但免疫耗竭相关抑制信号表达也较低,这对anti-HER2药物与检查点抑制剂联合给药潜在临床获益的机制提出了疑问。由于有限应答与VEGF信号增强相关,研究可探讨靶向VEGF与HER2的潜在协同作用。
HER2靶向治疗在食管腺癌(EAC)中已显示出潜力,但往往未能产生持久缓解。鉴于肿瘤免疫微环境(TIME)对治疗反应的贡献,我们旨在描绘HER2阳性肿瘤的TIME特征。
从TRAP队列(根据CROSS方案进行新辅助放化疗(nCRT)联合曲妥珠单抗和帕妥珠单抗;n = 40;HER2 + n = 40)和一个仅接受nCRT的对照队列(n = 44;HER2- n = 40,HER2 + n = 4)在治疗前获取了84份活检样本。使用靶向基因表达分析(Nanostring免疫肿瘤学面板,750个基因)对活检样本进行分析。评估了HER2阳性(n = 44)与阴性活检(n = 40)之间,以及抗HER2治疗无应答者(n = 17)与应答者(n = 23)之间的差异基因表达。统计学显著性确定为p值<0.05,并经过多重检验校正。
83例活检在质量控制后符合分析条件(TRAP队列 n = 40;对照队列 n = 43);TRAP队列与对照队列之间,或HER2阳性与HER2阴性活检之间的临床特征无显著差异。HER2表达与上皮标志物相关(EPCAM p < 0.001;E-cadherin p < 0.001)。此外,HER2表达与免疫细胞浸润表达较低相关,如NK细胞(p < 0.001)和CD8 T细胞(p < 0.001),但也与免疫耗竭标志物表达较低相关(PDCD1LG2、CTLA4;p < 0.001)。在抗HER2治疗无应答者中,基线活检显示免疫耗竭标志物表达增加,以及缺氧和VEGF信号传导增加。
BACKGROUND: HER2 targeting in esophageal adenocarcinoma (EAC) has shown potential, but often fails to show durable response. Given the contributions of the tumor immune microenvironment (TIME) to therapeutic responses, we aimed to chart the TIME characteristics of HER2 positive tumors. METHODS: 84 biopsies were taken from the TRAP cohort (neoadjuvant chemoradiotherapy (nCRT) according to CROSS with trastuzumab and pertuzumab; n = 40; HER2 + n = 40) and a control cohort with nCRT only (n = 44; HER2- n = 40, HER2 + n = 4) before treatment. Biopsies were analysed using targeted gene expression analysis (Nanostring immune-oncology panel, 750 genes). Differential gene expression was assessed between HER2 positive (n = 44) vs. negative biopsies (n = 40), and non-responders (n = 17) vs. responders (n = 23) to anti-HER2 treatment. Statistical significance was determined as p-value <0.05, adjusted for multiple testing correction. RESULTS: 83 biopsies were eligible for analyses following quality control (TRAP cohort n = 40; control cohort n = 43); there were no significant differences in clinical characteristics between the TRAP vs. control the cohort or HER2 positive vs. HER2 negative biopsies. HER2 expression was found to associate with epithelial markers (EPCAM p < 0.001; E-cadherin p < 0.001). Moreover, HER2 expression was associated with a lower expression of immune cell infiltration, such as NK-cells (p < 0.001) and CD8 T-cells (p < 0.001), but also lower expression of immune exhaustion markers (PDCD1LG2, CTLA4; p < 0.001). In non-responders to anti-HER2 treatment, baseline biopsies showed increased expression of immune exhaustion markers, as well as hypoxia and VEGF signalling. DISCUSSION: HER2 expression was associated with epithelial tumor characteristics. The HER2 positive TIME showed reduced immune cell infiltration but also lower expression of inhibitory signals associated with immune exhaustion, questioning the mechanism behind potential clinical benefit of co-administration of anti-HER2 agents and checkpoint inhibitors. As limited response was associated with increased VEGF signalling, studies could investigate potential synergism of targeting VEGF and HER2.
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