International Journal of Molecular Sciences (Oct 2021)

Endothelial Contribution to Warfarin-Induced Arterial Media Calcification in Mice

  • Geoffrey Van den Bergh,
  • Sofie De Moudt,
  • Astrid Van den Branden,
  • Ellen Neven,
  • Hanne Leysen,
  • Stuart Maudsley,
  • Guido R. Y. De Meyer,
  • Patrick D’Haese,
  • Anja Verhulst

DOI
https://doi.org/10.3390/ijms222111615
Journal volume & issue
Vol. 22, no. 21
p. 11615

Abstract

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Arterial media calcification (AMC) is predominantly regulated by vascular smooth muscle cells (VSMCs), which transdifferentiate into pro-calcifying cells. In contrast, there is little evidence for endothelial cells playing a role in the disease. The current study investigates cellular functioning and molecular pathways underlying AMC, respectively by, an ex vivo isometric organ bath set-up to explore the interaction between VSMCs and ECs and quantitative proteomics followed by functional pathway interpretation. AMC development, which was induced in mice by dietary warfarin administration, was proved by positive Von Kossa staining and a significantly increased calcium content in the aorta compared to that of control mice. The ex vivo organ bath set-up showed calcified aortic segments to be significantly more sensitive to phenylephrine induced contraction, compared to control segments. This, together with the fact that calcified segments as compared to control segments, showed a significantly smaller contraction in the absence of extracellular calcium, argues for a reduced basal NO production in the calcified segments. Moreover, proteomic data revealed a reduced eNOS activation to be part of the vascular calcification process. In summary, this study identifies a poor endothelial function, next to classic pro-calcifying stimuli, as a possible initiator of arterial calcification.

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