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Pericardial delta like non-canonical NOTCH ligand 1 (Dlk1) augments fibrosis in the heart through epithelial to mesenchymal transition.
Jensen, Charlotte Harken; Johnsen, Rikke Helin; Eskildsen, Tilde; Baun, Christina; Ellman, Ditte Gry; Fang, Shu; Bak, Sara Thornby; Hvidsten, Svend; Larsen, Lars Allan; Rosager, Ann Mari; Riber, Lars Peter; Schneider, Mikael; De Mey, Jo; Thomassen, Mads; Burton, Mark; Uchida, Shizuka; Laborda, Jorge; Andersen, Ditte Caroline.
Afiliação
  • Jensen CH; Andersen Group, Department of Clinical Biochemistry, Odense University Hospital, Odense, Denmark.
  • Johnsen RH; Clinical Institute, University of Southern Denmark, Odense, Denmark.
  • Eskildsen T; Andersen Group, Department of Clinical Biochemistry, Odense University Hospital, Odense, Denmark.
  • Baun C; Clinical Institute, University of Southern Denmark, Odense, Denmark.
  • Ellman DG; Andersen Group, Department of Clinical Biochemistry, Odense University Hospital, Odense, Denmark.
  • Fang S; Department of Cardiovascular and Renal Research, Institute of Molecular Medicine, University of Southern Denmark, Odense, Denmark.
  • Bak ST; Department of Nuclear Medicine, Odense University Hospital, Odense, Denmark.
  • Hvidsten S; Andersen Group, Department of Clinical Biochemistry, Odense University Hospital, Odense, Denmark.
  • Larsen LA; Clinical Institute, University of Southern Denmark, Odense, Denmark.
  • Rosager AM; Andersen Group, Department of Clinical Biochemistry, Odense University Hospital, Odense, Denmark.
  • Riber LP; Clinical Institute, University of Southern Denmark, Odense, Denmark.
  • Schneider M; Andersen Group, Department of Clinical Biochemistry, Odense University Hospital, Odense, Denmark.
  • De Mey J; Clinical Institute, University of Southern Denmark, Odense, Denmark.
  • Thomassen M; Department of Nuclear Medicine, Odense University Hospital, Odense, Denmark.
  • Burton M; Department of Cellular and Molecular Medicine, University of Copenhagen, Copenhagen, Denmark.
  • Uchida S; Department of Clinical Pathology, Sydvestjysk Hospital, Esbjerg, Denmark.
  • Laborda J; Clinical Institute, University of Southern Denmark, Odense, Denmark.
  • Andersen DC; Department of Cardiothoracic and Vascular Surgery, Odense University Hospital, Odense, Denmark.
Clin Transl Med ; 14(2): e1565, 2024 02.
Article em En | MEDLINE | ID: mdl-38328889
ABSTRACT

BACKGROUND:

Heart failure due to myocardial infarction (MI) involves fibrosis driven by epicardium-derived cells (EPDCs) and cardiac fibroblasts, but strategies to inhibit and provide cardio-protection remains poor. The imprinted gene, non-canonical NOTCH ligand 1 (Dlk1), has previously been shown to mediate fibrosis in the skin, lung and liver, but very little is known on its effect in the heart.

METHODS:

Herein, human pericardial fluid/plasma and tissue biopsies were assessed for DLK1, whereas the spatiotemporal expression of Dlk1 was determined in mouse hearts. The Dlk1 heart phenotype in normal and MI hearts was assessed in transgenic mice either lacking or overexpressing Dlk1. Finally, in/ex vivo cell studies provided knowledge on the molecular mechanism.

RESULTS:

Dlk1 was demonstrated in non-myocytes of the developing human myocardium but exhibited a restricted pericardial expression in adulthood. Soluble DLK1 was twofold higher in pericardial fluid (median 45.7 [34.7 (IQR)) µg/L] from cardiovascular patients (n = 127) than in plasma (median 26.1 µg/L [11.1 (IQR)]. The spatial and temporal expression pattern of Dlk1 was recapitulated in mouse and rat hearts. Similar to humans lacking Dlk1, adult Dlk1-/- mice exhibited a relatively mild developmental, although consistent cardiac phenotype with some abnormalities in heart size, shape, thorax orientation and non-myocyte number, but were functionally normal. However, after MI, scar size was substantially reduced in Dlk1-/- hearts as compared with Dlk1+/+ littermates. In line, high levels of Dlk1 in transgenic mice Dlk1fl/fl xWT1GFPCre and Dlk1fl/fl xαMHCCre/+Tam increased scar size following MI. Further mechanistic and cellular insight demonstrated that pericardial Dlk1 mediates cardiac fibrosis through epithelial to mesenchymal transition (EMT) of the EPDC lineage by maintaining Integrin ß8 (Itgb8), a major activator of transforming growth factor ß and EMT.

CONCLUSIONS:

Our results suggest that pericardial Dlk1 embraces a, so far, unnoticed role in the heart augmenting cardiac fibrosis through EMT. Monitoring DLK1 levels as well as targeting pericardial DLK1 may thus offer new venues for cardio-protection.
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Texto completo: 1 Coleções: 01-internacional Base de dados: MEDLINE Limite: Adult / Animals / Humans Idioma: En Ano de publicação: 2024 Tipo de documento: Article

Texto completo: 1 Coleções: 01-internacional Base de dados: MEDLINE Limite: Adult / Animals / Humans Idioma: En Ano de publicação: 2024 Tipo de documento: Article