更正:B7-H3 CAR T 细胞清除肝内胆管癌并诱导持久应答
Correction: B7-H3 CAR T cells eradicate intrahepatic cholangiocarcinoma and induce durable response.
英文原题:Clinical prognosticators and targets in the immune microenvironment of intrahepatic cholangiocarcinoma.
这些结果强调了CD4+ T细胞在抗ICC免疫应答中的重要性。其次,具有“热”TIME的肿瘤亚群是ICI的潜在候选者,而刺激STAT1通路可能是将ICC中“冷”TIME转变为“热”TIME的潜在靶点。肿瘤免疫微环境(TIME)在许多癌症(包括肝内胆管癌(ICC))的免疫应答中起关键作用。ICC微环境的分子分型已揭示出肿瘤间异质性,并伴有免疫细胞浸润的不同特征。最近一项研究创建了胆道癌TIME的深入免疫细胞图谱,并能够证明特定免疫细胞亚群与患者结局的相关性。
肝内胆管癌(ICC)是一种预后差、治疗选择有限的疾病。我们研究了肿瘤免疫微环境(TIME),以确定疾病结局的预测因素并探索治疗调控的靶点。
肝组织样本收集于2008-2019年间,来自诊断为ICC并接受根治性意向手术且未接受新辅助化疗的患者(n = 139)。发现队列(n = 86)的样本在组织微阵列(TMAs)上通过免疫组化分析了肿瘤核心和间质区域中CD68、CD3、CD4、CD8、Foxp3、PD-L1、STAT1和p-STAT1的表达。结果使用QuPath软件进行数字化分析,并与临床病理特征进行相关性分析。为验证TIME相关生物标志物,我们在验证队列(n = 53)中进行了多重成像质谱流式(IMC)。
CD68+细胞是ICC的TIME中主要的免疫细胞类型。CD4+高T细胞密度与更好的总生存期(OS)相关。预测模型结合验证队列证实了CD4+细胞、基质中免疫细胞的PD-L1表达以及N分期与总体疾病结局的相关性。反过来,IMC分析显示,静默的CD3+CD4+簇对生存产生不利影响。在注释的免疫细胞簇中,PD-L1最相关地由CD4+FoxP3+细胞表达。免疫细胞高密度的肿瘤亚群(“热”簇)与PD-L1表达相关,并可识别出一组适合免疫检查点抑制(ICI)的候选者。最终,较高的STAT1表达水平与较高的淋巴细胞浸润和PD-L1表达相关。
BACKGROUND: Intrahepatic cholangiocarcinoma (ICC) is a disease with poor prognosis and limited therapeutic options. We investigated the tumor immune microenvironment (TIME) to identify predictors of disease outcome and to explore targets for therapeutic modulation. METHODS: Liver tissue samples were collected during 2008-2019 from patients ( n = 139) diagnosed with ICC who underwent curative intent surgery without neoadjuvant chemotherapy. Samples from the discovery cohort ( n = 86) were immunohistochemically analyzed on tissue microarrays (TMAs) for the expression of CD68, CD3, CD4, CD8, Foxp3, PD-L1, STAT1, and p-STAT1 in tumor core and stroma areas. Results were digitally analyzed using QuPath software and correlated with clinicopathological characteristics. For validation of TIME-related biomarkers, we performed multiplex imaging mass cytometry (IMC) in a validation cohort ( n = 53). RESULTS: CD68+ cells were the predominant immune cell type in the TIME of ICC. CD4+ high T cell density correlated with better overall survival (OS). Prediction modeling together with validation cohort confirmed relevance of CD4+ cells, PD-L1 expression by immune cells in the stroma and N-stage on overall disease outcome. In turn, IMC analyses revealed that silent CD3+CD4+ clusters inversely impacted survival. Among annotated immune cell clusters, PD-L1 was most relevantly expressed by CD4+FoxP3+ cells. A subset of tumors with high density of immune cells ("hot" cluster) correlated with PD-L1 expression and could identify a group of candidates for immune checkpoint inhibition (ICI). Ultimately, higher levels of STAT1 expression were associated with higher lymphocyte infiltration and PD-L1 expression. CONCLUSIONS: These results highlight the importance of CD4+ T cells in immune response against ICC. Secondly, a subset of tumors with "hot" TIME represents potential candidates for ICI, while stimulation of STAT1 pathway could be a potential target to turn "cold" into "hot" TIME in ICC. The tumor immune microenvironment (TIME) plays a critical role in the immune response In many cancers, including intrahepatic cholangiocarcinoma (ICC). Molecular subtyping of the ICC microenvironment already revealed inter-tumoral heterogeneity with variant profiles of immune cell infiltrates. A recent study created an in-depth immune cell atlas of the TIME in biliary tract cancers and could demonstrate the relevance of specific immune cell subpopulations on patient outcome. We are able to provide a distinctive characterization of TIME, separating tumor epithelial- and stroma areas, in a large and representative ICC cohort using digitalized image analysis on tissue microarrays (TMA) as well as multiplex imaging mass cytometry (IMC). The study was designed for identification of immune cell prognosticators allocating institutional ICC patients into a discovery (2008–15) and a validation (2010–19) cohort. Immune cell subpopulations were correlated with clinicopathological characteristics and patient outcome. Our results highlight: i. The important role of CD4+ T cell infiltration in ICC patients; ii. ICC tumors with high density of immune cells associated with PD-L1 expression identifies a subset of patients with variant tumor biology; iii. Stimulation of STAT1 pathway may be a relevant target to turn “ cold ” into “ hot ” tumors.
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