PO.TB10.19 · 肿瘤生物学

鉴定三阴性乳腺癌中高淋巴细胞浸润的肿瘤微环境

Identification of tumor microenvironment for high infiltration of lymphocytes in triple negative breast cancer

海报缩略图:鉴定三阴性乳腺癌中高淋巴细胞浸润的肿瘤微环境
编号 4986 展板 11 时间 4/21 09:00–12:00 区域 Section 32 主讲 Sowon Choi, BS;MS
分会场 Tumor-Immune Crosstalk
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作者与单位 Authors & Affiliations

Sowon Choi1, Hee Jin Lee2, Byung-Kwan Jeong2, Hyun Je Kim1

1Seoul National University, Seoul, Korea, Republic of,2Asan Medical Center, Seoul, Korea, Republic of

摘要 Abstract

中文摘要
阐明促进三阴性乳腺癌高TIL微环境的肿瘤内巨噬细胞亚型的作用。基质区室内高水平的肿瘤浸润淋巴细胞(TIL)与三阴性乳腺癌(TNBC)的良好预后和对免疫检查点阻断的改善应答相关。为阐明TIL高和TIL低肿瘤微环境(TME)之间差异的机制,我们分析了未经治疗的早期TNBC样本。我们使用单细胞分辨率空间转录组学对21例患者的TME进行了分析,材料为FFPE组织芯片块。TIL在基质中占比超过60%的患者被归类为高TIL组。在H&E染色切片上评估sTIL(0-100%),sTIL≥60%和≤10%的肿瘤分别归类为高TIL和低TIL。这些阈值比常用的与远处RFS相关的sTIL≥50%和<30%的界值更严格。使用该分类,11例患者被归入TIL高组,10例被归入TIL低组。我们使用Xenium 5K平台对TNBC样本聚类出40种细胞类型,并通过SCIMAP(v2.2.11)发现具有相似空间模式的复现性细胞邻域(RCN)鉴定出12个空间域。在这12个空间域中,域9和域0分别代表肿瘤中心和肿瘤边缘。我们鉴定出10种髓系细胞亚型,并发现表达LDHA和PLAUR的巨噬细胞亚型MC2特异性富集于由域9和域0构成的肿瘤域中。有趣的是,与TIL低组相比,MC2(LDHA_PLAUR)亚型在TIL高组肿瘤域中呈现较低的PLAUR表达。尽管肿瘤域内浸润的MC2(LDHA_PLAUR)巨噬细胞比例在TIL高组高于TIL低组,但MC2细胞内PLAUR的表达水平在TIL高组反而更低。此外,与TIL低组相比,MC2(LDHA_PLAUR)在TIL高组中表达更多的IFN刺激基因,如CXCL9、GBP5和IRF1。已知PLAUR在肿瘤微环境中高度诱导HIF1A。由于HIF1A阻碍对建立TIL高环境重要的IFNG信号,PLAUR的高表达促进巨噬细胞中IFNG信号的抑制。因此,TIL高组中MC2的低PLAUR表达有助于巨噬细胞中正常的IFNG信号通路。综上所述,这些发现表明位于癌症中心和边缘区域的MC2巨噬细胞均显示PLAUR表达降低,使其较不易受HIF1A驱动的抑制,从而在高TIL肿瘤中维持持续的IFNG信号。这提示这些MC2细胞通过持续供应CXCL9、CXCL10和CXCL11,帮助建立有利于TIL浸润的肿瘤内环境。
查看英文原文 English abstract
Elucidating the roles of intra-tumoral macrophage subtypes that promote a high-TIL microenvironment in triple-negative breast cancer. High levels of tumor-infiltrating lymphocytes (TILs) within the stromal compartment are associated with favorable prognosis and improved response to immune checkpoint blockade in triple-negative breast cancer (TNBC). To elucidate the mechanisms underlying the divergence between TIL-high and TIL-low tumor microenvironments (TMEs), we analyzed treatment-naïve, early-stage TNBC samples. We profiled the TME of 21 patients using single-cell-resolution spatial transcriptomics on FFPE tissue microarray blocks. Patients were classified into high TIL group with over 60% ratio of TIL in stroma. sTILs (0-100%) were evaluated on H&E-stained slides, and tumors with sTIL ≥ 60% and ≤ 10% were classified as high and low TIL, respectively. These thresholds are stricter than the commonly used sTIL ≥ 50% and < 30% cutoffs associated with distant RFS. Using this classification, 11 patients were assigned to the TIL-high group and 10 to the TIL-low group. We clustered 40 cell types for TNBC samples using Xenium 5K platform and identified 12 spatial domains by uncovering recurrent cellular neighborhoods (RCNs) that share similar spatial patterns using SCIMAP(v2.2.11). Among those 12 spatial domains, domain 9 and domain 0 represented tumor center and tumor edge, respectively. We identified 10 myeloid cell subtypes and discovered macrophage subtype MC2 expressing LDHA and PLAUR are enriched specifically in tumor domains consisting of domain 9 and 0. Interestingly, the MC2(LDHA_PLAUR) subtype present low PLAUR expression in TIL-high group compared to TIL-low group in tumor domains. Although the proportion of infiltrating MC2 (LDHA_PLAUR) macrophages within tumor domains was higher in the TIL-high group compared with the TIL-low group, the expression level of PLAUR within MC2 cells was paradoxically lower in the TIL-high group. Additionally, the MC2(LDHA_PLAUR) expressed more IFN-stimulated genes such as CXCL9, GBP5, and IRF1 in TIL-high group compared to TIL-low group. PLAUR has been known for inducing HIF1A highly in tumor microenvironment. As HIF1A hinders IFNG-signaling important to establish TIL-high environments, high expression of PLAUR promotes inhibition of IFNG-signaling in macrophages. So, low expression of PLAUR for MC2 in TIL-high group helps normal IFNG-signaling pathways in macrophages. Taken together, these findings indicate MC2 macrophages located in both the cancer center and edge regions showed reduced PLAUR expression, rendering them less susceptible to HIF1A-driven suppression and allowing sustained IFNG-signaling in high-TIL tumors. This suggests that these MC2 cells help establish an intra-tumoral environment conducive to TIL infiltration by continuously supplying CXCL9, CXCL10, and CXCL11.
利益披露 Disclosure
S. Choi, None.. H. Lee, None.. B. Jeong, None.. H. Kim, None.

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