Single-cell dual-omics reveals the transcriptomic and epigenomic diversity of cardiac non-myocytes
Cardiovascular Research

Abstract
The precise cellular identity and molecular features of non-myocytes (non-CMs) in a mammalian heart at a single-cell level remain elusive. Depiction of epigenetic landscape with transcriptomic signatures using the latest single-cell multi-omics has the potential to unravel the molecular programs underlying the cellular diversity of cardiac non-myocytes. Here, we characterized the molecular and cellular features of cardiac non-CM populations in the adult murine heart at the single-cell level.
Through single-cell dual omics analysis, we mapped the epigenetic landscapes, characterized the transcriptomic profiles and delineated the molecular signatures of cardiac non-CMs in the adult murine heart. Distinct
In summary, we characterized the non-CM cellular identity at the transcriptome and epigenome levels using single-cell omics approaches and discovered previously unrecognized cardiac fibroblast subpopulations with unique functional states.
Contributors

Li Wang
Author

Yuchen Yang
Author

Hong Ma
Author

Yifang Xie
Author

Jun Xu
Author

David Near
Author

Haofei Wang
Author

Tiffany Garbutt
Author

Yun Li
Author

Jiandong Liu
Author

Li Qian
Author
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