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Macrophages upregulate mural cell-like markers and support healing of ischemic injury by adopting functions important for vascular support
Uppsala University, Disciplinary Domain of Medicine and Pharmacy, Faculty of Medicine, Department of Medical Cell Biology.ORCID iD: 0000-0002-7556-4826
Uppsala University, Disciplinary Domain of Medicine and Pharmacy, Faculty of Medicine, Department of Medical Cell Biology.ORCID iD: 0000-0002-1238-9338
Uppsala University, Disciplinary Domain of Medicine and Pharmacy, Faculty of Medicine, Department of Medical Cell Biology.ORCID iD: 0000-0003-1183-8901
Uppsala University, Disciplinary Domain of Medicine and Pharmacy, Faculty of Medicine, Department of Medical Cell Biology.
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2024 (English)In: Nature Cardiovascular Research, E-ISSN 2731-0590, Vol. 3, no 6, p. 685-700Article in journal (Refereed) Published
Abstract [en]

Sterile inflammation after injury is important for tissue restoration. In injured human and mouse tissues, macrophages were recently found to accumulate perivascularly. This study investigates if macrophages adopt a mural cell phenotype important for restoration after ischemic injury. Single-cell RNA sequencing of fate-mapped macrophages from ischemic mouse muscles demonstrates a macrophage-toward-mural cell switch of a subpopulation of macrophages with downregulated myeloid cell genes and upregulated mural cell genes, including PDGFRβ. This observation was further strengthened when including unspliced transcripts in the analysis. The macrophage switch was proven functionally relevant, as induction of macrophage-specific PDGFRβ deficiency prevented their perivascular macrophage phenotype, impaired vessel maturation and increased vessel leakiness, which ultimately reduced limb function. In conclusion, macrophages in adult ischemic tissue were demonstrated to undergo a cellular program to morphologically, transcriptomically and functionally resemble mural cells while weakening their macrophage identity. The macrophage-to-mural cell-like phenotypic switch is crucial for restoring tissue function and warrants further exploration as a potential target for immunotherapies to enhance healing.

Place, publisher, year, edition, pages
Springer Nature, 2024. Vol. 3, no 6, p. 685-700
National Category
Cell and Molecular Biology
Identifiers
URN: urn:nbn:se:uu:diva-540972DOI: 10.1038/s44161-024-00478-0ISI: 001243299900004PubMedID: 39196227OAI: oai:DiVA.org:uu-540972DiVA, id: diva2:1908026
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SNIC 2.0: Swedish National Infrastructure for Computing, Swedish Research Council
Funder
Swedish Research Council, 2018-05973Swedish Research Council, K2012-99xSwedish Research Council, 65X-12219-15-6Swedish Research Council, 5570x-15043Swedish Research Council, O4X-08646Swedish Research Council, K2015-54X-12219-19-4Knut and Alice Wallenberg FoundationSwedish Foundation for Strategic ResearchSwedish Cancer SocietySwedish Heart Lung FoundationSwedish National Infrastructure for Computing (SNIC)Ragnar Söderbergs stiftelseSwedish Diabetes AssociationInsamlingsstiftelsen Diabetes WellnessEXODIAB - Excellence of Diabetes Research in SwedenNovo NordiskFredrik och Ingrid Thurings StiftelseErnfors FoundationUppsala University
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Available from: 2024-10-24 Created: 2024-10-24 Last updated: 2024-10-24Bibliographically approved

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Amoedo-Leite, CatarinaParv, KristelTestini, ChiaraHerrera-Hidalgo, CarmenXu, FeifeiGiraud, AntoineSeignez, CedricChristoffersson, GustafPhillipson, Mia
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