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Dissecting spatial heterogeneity and the immune-evasion mechanism of CTCs by single-cell RNA-seq in hepatocellular carcinoma.

Yun-Fan SunLiang WuShi-Ping LiuMiao-Miao JiangBo HuKai-Qian ZhouWei GuoYang XuYu ZhongXiao-Rui ZhouZe-Fan ZhangGeng LiuSheng LiuYing-Hong ShiYuan JiMin DuNan-Nan LiGui-Bo LiZhi-Kun ZhaoXiao-Yun HuangLi-Qin XuQi-Chao YuDavid H PengShuang-Jian QiuHui-Chuan SunMichael DeanXiang-Dong WangWen-Yuan ChungAshley R DennisonJian ZhouYong HouJia FanXin-Rong Yang
Published in: Nature communications (2021)
Little is known about the transcriptomic plasticity and adaptive mechanisms of circulating tumor cells (CTCs) during hematogeneous dissemination. Here we interrogate the transcriptome of 113 single CTCs from 4 different vascular sites, including hepatic vein (HV), peripheral artery (PA), peripheral vein (PV) and portal vein (PoV) using single-cell full-length RNA sequencing in hepatocellular carcinoma (HCC) patients. We reveal that the transcriptional dynamics of CTCs were associated with stress response, cell cycle and immune-evasion signaling during hematogeneous transportation. Besides, we identify chemokine CCL5 as an important mediator for CTC immune evasion. Mechanistically, overexpression of CCL5 in CTCs is transcriptionally regulated by p38-MAX signaling, which recruites regulatory T cells (Tregs) to facilitate immune escape and metastatic seeding of CTCs. Collectively, our results reveal a previously unappreciated spatial heterogeneity and an immune-escape mechanism of CTC, which may aid in designing new anti-metastasis therapeutic strategies in HCC.
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