免疫系统
黑色素瘤
生物
进化动力学
动力学(音乐)
原位
进化生物学
计算生物学
癌症研究
遗传学
医学
地理
心理学
人口
气象学
环境卫生
教育学
作者
Hengkang Liu,Jia-Wen Gao,Mei Feng,Jinghui Cheng,Yuchen Tang,Qi Cao,Ziji Zhao,Ziqiao Meng,Jiarui Zhang,Guohong Zhang,Chong Zhang,Mingming Zhao,Yicen Yan,Yang Wang,Ruidong Xue,Ning Zhang,Hang Li
出处
期刊:Cancer Cell
[Elsevier]
日期:2024-05-16
卷期号:42 (6): 1067-1085.e11
被引量:39
标识
DOI:10.1016/j.ccell.2024.04.012
摘要
In acral melanoma (AM), progression from in situ (AMis) to invasive AM (iAM) leads to significantly reduced survival. However, evolutionary dynamics during this process remain elusive. Here, we report integrative molecular and spatial characterization of 147 AMs using genomics, bulk and single-cell transcriptomics, and spatial transcriptomics and proteomics. Vertical invasion from AMis to iAM displays an early and monoclonal seeding pattern. The subsequent regional expansion of iAM exhibits two distinct patterns, clonal expansion and subclonal diversification. Notably, molecular subtyping reveals an aggressive iAM subset featured with subclonal diversification, increased epithelial-mesenchymal transition (EMT), and spatial enrichment of APOE+/CD163+ macrophages. In vitro and ex vivo experiments further demonstrate that APOE+CD163+ macrophages promote tumor EMT via IGF1-IGF1R interaction. Adnexal involvement can predict AMis with higher invasive potential whereas APOE and CD163 serve as prognostic biomarkers for iAM. Altogether, our results provide implications for the early detection and treatment of AM.
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