Single-cell and spatial architecture of primary liver cancer

Author:

Zhou Pei-YunORCID,Zhou Cheng,Gan Wei,Tang Zheng,Sun Bao-YeORCID,Huang Jin-Long,Liu Gao,Liu Wei-Ren,Tian Meng-Xin,Jiang Xi-Fei,Wang Han,Tao Chen-Yang,Fang Yuan,Qu Wei-Feng,Huang Run,Zhu Gui-QiORCID,Huang Cheng,Fu Xiu-Tao,Ding Zhen-BinORCID,Gao Qiang,Zhou JianORCID,Shi Ying-Hong,Yi YongORCID,Fan JiaORCID,Qiu Shuang-JianORCID

Abstract

AbstractPrimary liver cancer (PLC) poses a leading threat to human health, and its treatment options are limited. Meanwhile, the investigation of homogeneity and heterogeneity among PLCs remains challenging. Here, using single-cell RNA sequencing, spatial transcriptomic and bulk multi-omics, we elaborated a molecular architecture of 3 PLC types, namely hepatocellular carcinoma (HCC), intrahepatic cholangiocarcinoma (ICC) and combined hepatocellular-cholangiocarcinoma (CHC). Taking a high-resolution perspective, our observations revealed that CHC cells exhibit internally discordant phenotypes, whereas ICC and HCC exhibit distinct tumor-specific features. Specifically, ICC was found to be the primary source of cancer-associated fibroblasts, while HCC exhibited disrupted metabolism and greater individual heterogeneity of T cells. We further revealed a diversity of intermediate-state cells residing in the tumor-peritumor junctional zone, including a congregation of CPE+ intermediate-state endothelial cells (ECs), which harbored the molecular characteristics of tumor-associated ECs and normal ECs. This architecture offers insights into molecular characteristics of PLC microenvironment, and hints that the tumor-peritumor junctional zone could serve as a targeted region for precise therapeutical strategies.

Publisher

Springer Science and Business Media LLC

Subject

General Agricultural and Biological Sciences,General Biochemistry, Genetics and Molecular Biology,Medicine (miscellaneous)

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