研究概要
本研究描述了鼻咽癌免疫微环境的空间异质性,并突出了免疫表型中的免疫相关生物标志物,这可能有助于为治疗目的对患者进行分层。
中文摘要
鼻咽癌(NPC)是一种恶性肿瘤。在最近的一篇论文中,我们描述了NPC中CD8+ T细胞的存在和分布,并利用这些信息识别出“炎症型”、“免疫排斥型”和“荒漠型”免疫表型,其中“炎症型”和“免疫排斥型”NPC与CD8 T细胞浸润和生存相关。可以说,需要更详细、尤其是空间分辨的数据来进行患者分层和识别新的治疗靶点。在本研究中,我们通过对先前分析的NPC样本应用多重组织分析来研究CD45+白细胞的表型,以评估细胞类型的空间分布并量化选定的生物标志物。基于CD45、CD8和PanCK形态学染色,共生成47个指定感兴趣区域(ROIs)。使用GeoMx®数字空间分析仪(DSP),从包含30个独特NPC活检组织的组织微阵列的选定ROIs中数字化定量了49个目标蛋白。与B细胞(CD20)、NK细胞(CD56)、巨噬细胞(CD68)和调节性T细胞(PD-1、FOXP3)相关的蛋白靶点在肿瘤“免疫丰富癌巢”区域的CD45+片段中表达差异最大(cf. “周围间质白细胞”区域)。相比之下,与抑制性髓系细胞群体(CD163、B7-H3、VISTA)和T细胞(CD4、LAG3、Tim-3)相关的标志物在“周围间质白细胞”区域的CD45+片段中表达水平更高(cf. “免疫丰富癌巢”区域)。在比较三种表型时,“炎症型”特征(cf. “免疫排斥型和荒漠型表现出与B细胞、NK细胞、巨噬细胞和髓系细胞相关的标志物表达更高。髓系标志物在免疫排斥型中高表达。粒细胞标志物和免疫调节标志物在荒漠型中更高(相较于炎症型和免疫排斥型)。总之,本研究描述了鼻咽癌免疫微环境的空间异质性,并突出了免疫表型中的免疫相关生物标志物,这可能有助于为治疗目的对患者进行分层。
展开英文摘要原文
Nasopharyngeal cancer (NPC) is a malignant tumor. In a recent publication, we described the presence and distribution of CD8 + T cells in NPC and used the information to identify 'inflamed', 'immune-excluded', and 'desert' immune phenotypes, where 'inflamed' and 'immune-excluded' NPCs were correlated with CD8 T cell infiltration and survival. Arguably, more detailed and, in particular, spatially resolved data are required for patient stratification and for the identification of new treatment targets. In this study, we investigate the phenotype of CD45 + leukocytes in the previously analyzed NPC samples by applying multiplexed tissue analysis to assess the spatial distribution of cell types and to quantify selected biomarkers. A total of 47 specified regions-of-interest (ROIs) were generated based on CD45, CD8, and PanCK morphological staining. Using the GeoMx ® Digital Spatial Profiler (DSP), 49 target proteins were digitally quantified from the selected ROIs of a tissue microarray consisting of 30 unique NPC biopsies. Protein targets associated with B cells (CD20), NK cells (CD56), macrophages (CD68), and regulatory T cells (PD-1, FOXP3) were most differentially expressed in CD45 + segments within 'immune-rich cancer cell islet' regions of the tumor ( cf . 'surrounding stromal leukocyte' regions). In contrast, markers associated with suppressive populations of myeloid cells (CD163, B7-H3, VISTA) and T cells (CD4, LAG3, Tim-3) were expressed at a higher level in CD45 + segments in the 'surrounding stromal leukocyte' regions ( cf . 'immune-rich cancer cell islet' regions). When comparing the three phenotypes, the 'inflamed' profile ( cf. 'immune-excluded' and 'desert') exhibited higher expression of markers associated with B cells, NK cells, macrophages, and myeloid cells. Myeloid markers were highly expressed in the 'immune-excluded' phenotype. Granulocyte markers and immune-regulatory markers were higher in the 'desert' profile ( cf. 'inflamed' and 'immune-excluded'). In conclusion, this study describes the spatial heterogeneity of the immune microenvironment in NPC and highlights immune-related biomarkers in immune phenotypes, which may aid in the stratification of patients for therapeutic purposes.
论文信息
- 作者
- Sobti A、Sakellariou C、Nilsson JS、Askmyr D、Greiff L、Lindstedt M
- 单位
- Department of Immunotechnology, Lund University, 223 81 Lund, Sweden.Sweden
- 期刊
- Cancers2023 Apr 5