An invasive zone in human liver cancer identified by Stereo-seq promotes hepatocyte–tumor cell crosstalk, local immunosuppression and tumor progression

生物 癌症研究 转移 免疫抑制 肿瘤微环境 基质 肿瘤进展 肝细胞 肝肿瘤 癌症 免疫学 免疫组织化学 肝细胞癌 肿瘤细胞 体外 生物化学 遗传学
作者
Liang Wu,Jiayan Yan,Yinqi Bai,Feiyu Chen,Xuanxuan Zou,Jiangshan Xu,Ao Huang,Liangzhen Hou,Yu Zhong,Zehua Jing,Qichao Yu,Xiaorui Zhou,Zhifeng Jiang,Chunqing Wang,Mengnan Cheng,Yuan Ji,Yingyong Hou,Rongkui Luo,Qinqin Li,Liang Wu
出处
期刊:Cell Research [Springer Nature]
卷期号:33 (8): 585-603 被引量:212
标识
DOI:10.1038/s41422-023-00831-1
摘要

Abstract Dissecting and understanding the cancer ecosystem, especially that around the tumor margins, which have strong implications for tumor cell infiltration and invasion, are essential for exploring the mechanisms of tumor metastasis and developing effective new treatments. Using a novel tumor border scanning and digitization model enabled by nanoscale resolution-SpaTial Enhanced REsolution Omics-sequencing (Stereo-seq), we identified a 500 µm-wide zone centered around the tumor border in patients with liver cancer, referred to as “the invasive zone”. We detected strong immunosuppression, metabolic reprogramming, and severely damaged hepatocytes in this zone. We also identified a subpopulation of damaged hepatocytes with increased expression of serum amyloid A1 and A2 (referred to collectively as SAAs) located close to the border on the paratumor side. Overexpression of CXCL6 in adjacent malignant cells could induce activation of the JAK-STAT3 pathway in nearby hepatocytes, which subsequently caused SAAs’ overexpression in these hepatocytes. Furthermore, overexpression and secretion of SAAs by hepatocytes in the invasive zone could lead to the recruitment of macrophages and M2 polarization, further promoting local immunosuppression, potentially resulting in tumor progression. Clinical association analysis in additional five independent cohorts of patients with primary and secondary liver cancer ( n = 423) showed that patients with overexpression of SAAs in the invasive zone had a worse prognosis. Further in vivo experiments using mouse liver tumor models in situ confirmed that the knockdown of genes encoding SAAs in hepatocytes decreased macrophage accumulation around the tumor border and delayed tumor growth. The identification and characterization of a novel invasive zone in human cancer patients not only add an important layer of understanding regarding the mechanisms of tumor invasion and metastasis, but may also pave the way for developing novel therapeutic strategies for advanced liver cancer and other solid tumors.
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