肝细胞癌
癌症干细胞
癌症研究
MMP9公司
转移
医学
细胞角蛋白
肿瘤微环境
血管生成
癌症
肿瘤科
生物
病理
内科学
免疫组织化学
基因
下调和上调
生物化学
作者
Cheng-Lei Yang,Rui Song,Junwen Hu,Juntao Huang,Nannan Li,Hang-Hang Ni,Yuankuan Li,Jie Zhang,Zhan Lü,Min Zhou,Junduo Wang,Min-Jun Li,Guo-Hua Zhan,Tao Peng,Hongping Yu,Lu‐Nan Qi,Qiuyan Wang,Bang‐De Xiang
标识
DOI:10.1007/s12072-023-10615-9
摘要
Cytokeratin 19-positive cancer stem cells (CK19 + CSCs) and their tumor-associated macrophages (TAMs) have not been fully explored yet in the hepatitis B virus (HBV)-related hepatocellular carcinoma (HCC). Single-cell RNA sequencing was performed on the viable cells obtained from 11 treatment-naïve HBV-associated HCC patients, including 8 CK19 + patients, to elucidate their transcriptomic landscape, CK19 + CSC heterogeneity, and immune microenvironment. Two in-house primary HCC cohorts (96 cases-related HBV and 89 cases with recurrence), TCGA external cohort, and in vitro and in vivo experiments were used to validate the results. A total of 64,581 single cells derived from the human HCC and adjacent normal tissues were sequenced, and 11 cell types were identified. The result showed that CK19 + CSCs were phenotypically and transcriptionally heterogeneous, co-expressed multiple hepatics CSC markers, and were positively correlated with worse prognosis. Moreover, the SPP1 + TAMs (TAM_SPP1) with strong M2-like features and worse prognosis were specifically enriched in the CK19 + HCC and promoted tumor invasion and metastasis by activating angiogenesis. Importantly, matrix metalloproteinase 9 (MMP9) derived from TAM_SPP1, as the hub gene of CK19 + HCC, was activated by the VEGFA signal. This study revealed the heterogeneity and stemness characteristics of CK19 + CSCs and specific immunosuppressive TAM_SPP1 in CK19 + HCC. The VEGFA signal can activate TAM_SPP1-derived MMP9 to promote the invasion and metastasis of CK19 + HCC tumors. This might provide novel insights into the clinical treatment of HCC patients. Lay summary: Cytokeratin 19-positive hepatocellular carcinoma is a highly aggressive malignancy with poor therapeutic progress. Understanding the characteristics of CK19 + CSCs and their immune microenvironment better might facilitate the development of effective targeted and immunotherapy. This study identified the heterogeneity and characteristics of CK19 + CSCs and explored their unique immunosuppressive SPP1+TAM niche. The results suggested that the VEGFA signal activates TAM_SPP1-derived MMP9 to promote the invasion and metastasis of CK19 + HCC tumors. The study might have an important therapeutic value.
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