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Single-cell pair-wise relationships untangled by composite embedding model.


ABSTRACT: In multicellular organisms, cell identity and functions are primed and refined through interactions with other surrounding cells. Here, we propose a scalable machine learning method, termed SPRUCE, which is designed to systematically ascertain common cell-cell communication patterns embedded in single-cell RNA-seq data. We applied our approach to investigate tumor microenvironments consolidating multiple breast cancer datasets and found seven frequently observed interaction signatures and underlying gene-gene interaction networks. Our results implicate that a part of tumor heterogeneity, especially within the same subtype, is better understood by differential interaction patterns rather than the static expression of known marker genes.

SUBMITTER: Subedi S 

PROVIDER: S-EPMC9941206 | biostudies-literature | 2023 Feb

REPOSITORIES: biostudies-literature

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Single-cell pair-wise relationships untangled by composite embedding model.

Subedi Sishir S   Park Yongjin P YP  

iScience 20230123 2


In multicellular organisms, cell identity and functions are primed and refined through interactions with other surrounding cells. Here, we propose a scalable machine learning method, termed SPRUCE, which is designed to systematically ascertain common cell-cell communication patterns embedded in single-cell RNA-seq data. We applied our approach to investigate tumor microenvironments consolidating multiple breast cancer datasets and found seven frequently observed interaction signatures and underl  ...[more]

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