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Delineating the early dissemination mechanisms of acral melanoma by integrating single-cell and spatial transcriptomic analyses.


ABSTRACT: Acral melanoma (AM) is a rare subtype of melanoma characterized by a high incidence of lymph node (LN) metastasis, a critical factor in tumor dissemination and therapeutic decision-making. Here, we employ single-cell and spatial transcriptomic analyses to investigate the dynamic evolution of early AM dissemination. Our findings reveal substantial inter- and intra-tumor heterogeneity in AM, alongside a highly immunosuppressive tumor microenvironment and complex intercellular communication networks, particularly in patients with LN metastasis. Notably, we identify a strong association between MYC+ Melanoma (MYC+MEL) and FGFBP2+NKT cells with LN metastasis. Furthermore, we demonstrate that LN metastasis requires a metabolic shift towards fatty acid oxidation (FAO) induced by MITF in MYC+MEL cells. Etomoxir, a clinically approved FAO inhibitor, can effectively suppress MITF-mediated LN metastasis. This comprehensive dataset enhances our understanding of LN metastasis in AM, and provides insights into the potential therapeutic targeting for the management of early AM dissemination.

SUBMITTER: Wei C 

PROVIDER: S-EPMC10709603 | biostudies-literature | 2023 Dec

REPOSITORIES: biostudies-literature

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Delineating the early dissemination mechanisms of acral melanoma by integrating single-cell and spatial transcriptomic analyses.

Wei Chuanyuan C   Sun Wei W   Shen Kangjie K   Zhong Jingqin J   Liu Wanlin W   Gao Zixu Z   Xu Yu Y   Wang Lu L   Hu Tu T   Ren Ming M   Li Yinlam Y   Zhu Yu Y   Zheng Shaoluan S   Zhu Ming M   Luo Rongkui R   Yang Yanwen Y   Hou Yingyong Y   Qi Fazhi F   Zhou Yuhong Y   Chen Yong Y   Gu Jianying J  

Nature communications 20231208 1


Acral melanoma (AM) is a rare subtype of melanoma characterized by a high incidence of lymph node (LN) metastasis, a critical factor in tumor dissemination and therapeutic decision-making. Here, we employ single-cell and spatial transcriptomic analyses to investigate the dynamic evolution of early AM dissemination. Our findings reveal substantial inter- and intra-tumor heterogeneity in AM, alongside a highly immunosuppressive tumor microenvironment and complex intercellular communication network  ...[more]

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