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Spatially resolved multiomics of human cardiac niches.


ABSTRACT: The function of a cell is defined by its intrinsic characteristics and its niche: the tissue microenvironment in which it dwells. Here we combine single-cell and spatial transcriptomics data to discover cellular niches within eight regions of the human heart. We map cells to microanatomical locations and integrate knowledge-based and unsupervised structural annotations. We also profile the cells of the human cardiac conduction system1. The results revealed their distinctive repertoire of ion channels, G-protein-coupled receptors (GPCRs) and regulatory networks, and implicated FOXP2 in the pacemaker phenotype. We show that the sinoatrial node is compartmentalized, with a core of pacemaker cells, fibroblasts and glial cells supporting glutamatergic signalling. Using a custom CellPhoneDB.org module, we identify trans-synaptic pacemaker cell interactions with glia. We introduce a druggable target prediction tool, drug2cell, which leverages single-cell profiles and drug-target interactions to provide mechanistic insights into the chronotropic effects of drugs, including GLP-1 analogues. In the epicardium, we show enrichment of both IgG+ and IgA+ plasma cells forming immune niches that may contribute to infection defence. Overall, we provide new clarity to cardiac electro-anatomy and immunology, and our suite of computational approaches can be applied to other tissues and organs.

SUBMITTER: Kanemaru K 

PROVIDER: S-EPMC10371870 | biostudies-literature | 2023 Jul

REPOSITORIES: biostudies-literature

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Spatially resolved multiomics of human cardiac niches.

Kanemaru Kazumasa K   Cranley James J   Muraro Daniele D   Miranda Antonio M A AMA   Ho Siew Yen SY   Wilbrey-Clark Anna A   Patrick Pett Jan J   Polanski Krzysztof K   Richardson Laura L   Litvinukova Monika M   Kumasaka Natsuhiko N   Qin Yue Y   Jablonska Zuzanna Z   Semprich Claudia I CI   Mach Lukas L   Dabrowska Monika M   Richoz Nathan N   Bolt Liam L   Mamanova Lira L   Kapuge Rakeshlal R   Barnett Sam N SN   Perera Shani S   Talavera-López Carlos C   Mulas Ilaria I   Mahbubani Krishnaa T KT   Tuck Liz L   Wang Lu L   Huang Margaret M MM   Prete Martin M   Pritchard Sophie S   Dark John J   Saeb-Parsy Kourosh K   Patel Minal M   Clatworthy Menna R MR   Hübner Norbert N   Chowdhury Rasheda A RA   Noseda Michela M   Teichmann Sarah A SA  

Nature 20230712 7971


The function of a cell is defined by its intrinsic characteristics and its niche: the tissue microenvironment in which it dwells. Here we combine single-cell and spatial transcriptomics data to discover cellular niches within eight regions of the human heart. We map cells to microanatomical locations and integrate knowledge-based and unsupervised structural annotations. We also profile the cells of the human cardiac conduction system<sup>1</sup>. The results revealed their distinctive repertoire  ...[more]

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