Pan-cancer single-cell analysis reveals the heterogeneity and plasticity of cancer-associated fibroblasts in the tumor microenvironment
Панраковый одноклеточный анализ выявляет гетерогенность и пластичность фибробластов, ассоциированных с раком, в опухолевом микроокружении
2022-11-04
SCID: 54.1/bx2v3eex
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cancer-associated fibroblastsendothelial-to-mesenchymal transitionpan-cancer single-cell analysissingle-cell resolutiontumor microenvironment
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Abstract (AI)
Abstract Cancer-associated fibroblasts (CAFs) are the predominant components of the tumor microenvironment (TME) and influence cancer hallmarks, but without systematic investigation on their ubiquitous characteristics across different cancer types. Here, we perform pan-cancer analysis on 226 samples across 10 solid cancer types to profile the TME at single-cell resolution, illustrating the commonalities/plasticity of heterogenous CAFs. Activation trajectory of the major CAF types is divided into three states, exhibiting distinct interactions with other cell components, and relating to prognosis of immunotherapy. Moreover, minor CAF components represent the alternative origin from other TME components (e.g., endothelia and macrophages). Particularly, the ubiquitous presentation of endothelial-to-mesenchymal transition CAF, which may interact with proximal SPP 1 + tumor-associated macrophages, is implicated in endothelial-to-mesenchymal transition and survival stratifications. Our study comprehensively profiles the shared characteristics and dynamics of CAFs, and highlight their heterogeneity and plasticity across different cancer types. Browser of integrated pan-cancer single-cell information is available at https://gist-fgl.github.io/sc-caf-atlas/ .
Key Findings
1
A pan-cancer single-cell analysis of 226 samples across 10 solid cancer types profiled shared CAF characteristics and revealed substantial heterogeneity and plasticity.
2
Endothelial-to-mesenchymal transition CAFs were implicated in endothelial-to-mesenchymal transition and survival stratification.
3
Endothelial-to-mesenchymal transition CAFs were ubiquitous across cancer types and potentially interacted with nearby SPP1-positive tumor-associated macrophages.
4
Major CAF activation trajectories comprised three states with distinct interactions with other tumor-microenvironment components and associations with immunotherapy prognosis.
5
Minor CAF populations showed alternative origins from other tumor-microenvironment components, including endothelial cells and macrophages.
Research Object
Cancer-associated fibroblasts in the tumor microenvironment across 10 solid cancer types
Research Subject
The heterogeneity, plasticity, activation trajectories, cellular interactions, origins, and prognostic associations of cancer-associated fibroblasts
Publication Details
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2022-11-04
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