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Notch signalling restricts inflammation and serpine1 expression in the dynamic endocardium of the regenerating zebrafish heart

  • The zebrafish heart regenerates after ventricular damage through a process involving inflammation, fibrotic tissue deposition/removal and myocardial regeneration. Using 3D whole-mount imaging, we reveal a highly dynamic endocardium during cardiac regeneration, including changes in cell morphology, behaviour and gene expression. These events lay the foundation for an initial expansion of the endocardium that matures to form a coherent endocardial structure within the injury site. We studied two important endocardial molecules, Serpine1 and Notch, which are implicated in different aspects of endocardial regeneration. Notch signalling regulates developmental gene expression and features of endocardial maturation. Also, Notch manipulation interferes with attenuation of the inflammatory response and cardiomyocyte proliferation and dedifferentiation. serpine1 is strongly expressed very early in the wound endocardium, with decreasing expression at later time points. serpine1 expression persists in Notch-abrogated hearts, via what appears toThe zebrafish heart regenerates after ventricular damage through a process involving inflammation, fibrotic tissue deposition/removal and myocardial regeneration. Using 3D whole-mount imaging, we reveal a highly dynamic endocardium during cardiac regeneration, including changes in cell morphology, behaviour and gene expression. These events lay the foundation for an initial expansion of the endocardium that matures to form a coherent endocardial structure within the injury site. We studied two important endocardial molecules, Serpine1 and Notch, which are implicated in different aspects of endocardial regeneration. Notch signalling regulates developmental gene expression and features of endocardial maturation. Also, Notch manipulation interferes with attenuation of the inflammatory response and cardiomyocyte proliferation and dedifferentiation. serpine1 is strongly expressed very early in the wound endocardium, with decreasing expression at later time points. serpine1 expression persists in Notch-abrogated hearts, via what appears to be a conserved mechanism. Functional inhibition studies show that Serpine1 controls endocardial maturation and proliferation and cardiomyocyte proliferation. Thus, we describe a highly dynamic endocardium in the regenerating zebrafish heart, with two key endocardial players, Serpine1 and Notch signalling, regulating crucial regenerative processes.zeige mehrzeige weniger

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Metadaten
Verfasserangaben:Juliane Muench, Dimitrios Grivas, Alvaro Gonzalez-Rajal, Rebeca Torregrosa-Carrion, José Luis de la PompaORCiD
DOI:https://doi.org/10.1242/dev.143362
ISSN:0950-1991
ISSN:1477-9129
Pubmed ID:https://pubmed.ncbi.nlm.nih.gov/28242613
Titel des übergeordneten Werks (Englisch):Development : Company of Biologists
Verlag:Company of Biologists Limited
Verlagsort:Cambridge
Publikationstyp:Wissenschaftlicher Artikel
Sprache:Englisch
Jahr der Erstveröffentlichung:2017
Erscheinungsjahr:2017
Datum der Freischaltung:20.04.2020
Freies Schlagwort / Tag:Endocardium; Heart regeneration; Myocardium; Notch; Serpine1; Signalling
Band:144
Seitenanzahl:16
Erste Seite:1425
Letzte Seite:1440
Fördernde Institution:Spanish Ministry of Economy, Industry and Competitiveness [Ministerio de Economia, Industria y Competitividad (MINECO)] [SAF2013-45543-R, RD12/0042/0005, RD12/0019/0003, CB16/11/00399]; European Commission [FP7-ITN 215761, PITN-GA-2011-289600]; MINECO; Pro-CNIC Foundation; Fonds Europeen de Developpement Regional (FEDER) funds
Organisationseinheiten:Mathematisch-Naturwissenschaftliche Fakultät / Institut für Biochemie und Biologie
Peer Review:Referiert
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