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Multiomic analysis reveals conservation of cancer-associated fibroblast phenotypes across species and tissue of origin.


ABSTRACT: Cancer-associated fibroblasts (CAFs) are integral to the solid tumor microenvironment. CAFs were once thought to be a relatively uniform population of matrix-producing cells, but single-cell RNA sequencing has revealed diverse CAF phenotypes. Here, we further probed CAF heterogeneity with a comprehensive multiomics approach. Using paired, same-cell chromatin accessibility and transcriptome analysis, we provided an integrated analysis of CAF subpopulations over a complex spatial transcriptomic and proteomic landscape to identify three superclusters: steady state-like (SSL), mechanoresponsive (MR), and immunomodulatory (IM) CAFs. These superclusters are recapitulated across multiple tissue types and species. Selective disruption of underlying mechanical force or immune checkpoint inhibition therapy results in shifts in CAF subpopulation distributions and affected tumor growth. As such, the balance among CAF superclusters may have considerable translational implications. Collectively, this research expands our understanding of CAF biology, identifying regulatory pathways in CAF differentiation and elucidating therapeutic targets in a species- and tumor-agnostic manner.

SUBMITTER: Foster DS 

PROVIDER: S-EPMC9669239 | biostudies-literature | 2022 Nov

REPOSITORIES: biostudies-literature

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Multiomic analysis reveals conservation of cancer-associated fibroblast phenotypes across species and tissue of origin.

Foster Deshka S DS   Januszyk Michael M   Delitto Daniel D   Yost Kathryn E KE   Griffin Michelle M   Guo Jason J   Guardino Nicholas N   Delitto Andrea E AE   Chinta Malini M   Burcham Austin R AR   Nguyen Alan T AT   Bauer-Rowe Khristian E KE   Titan Ashley L AL   Salhotra Ankit A   Jones R Ellen RE   da Silva Oscar O   Lindsay Hunter G HG   Berry Charlotte E CE   Chen Kellen K   Henn Dominic D   Mascharak Shamik S   Talbott Heather E HE   Kim Alexia A   Nosrati Fatemeh F   Sivaraj Dharshan D   Ransom R Chase RC   Matthews Michael M   Khan Anum A   Wagh Dhananjay D   Coller John J   Gurtner Geoffrey C GC   Wan Derrick C DC   Wapnir Irene L IL   Chang Howard Y HY   Norton Jeffrey A JA   Longaker Michael T MT  

Cancer cell 20221020 11


Cancer-associated fibroblasts (CAFs) are integral to the solid tumor microenvironment. CAFs were once thought to be a relatively uniform population of matrix-producing cells, but single-cell RNA sequencing has revealed diverse CAF phenotypes. Here, we further probed CAF heterogeneity with a comprehensive multiomics approach. Using paired, same-cell chromatin accessibility and transcriptome analysis, we provided an integrated analysis of CAF subpopulations over a complex spatial transcriptomic an  ...[more]

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