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Abstrakti
Hemodynamic forces and Notch signaling are both known as key regulators of arterial remodeling and homeostasis. However, how these two factors integrate in vascular morphogenesis and homeostasis is unclear. Here, we combined experiments and modeling to evaluate the impact of the integration of mechanics and Notch signaling on vascular homeostasis. Vascular smooth muscle cells (VSMCs) were cyclically stretched on flexible membranes, as quantified via video tracking, demonstrating that the expression of Jagged1, Notch3, and target genes was down-regulated with strain. The data were incorporated in a computational framework of Notch signaling in the vascular wall, where the mechanical load was defined by the vascular geometry and blood pressure. Upon increasing wall thickness, the model predicted a switch-type behavior of the Notch signaling state with a steep transition of synthetic toward contractile VSMCs at a certain transition thickness. These thicknesses varied per investigated arterial location and were in good agreement with human anatomical data, thereby suggesting that the Notch response to hemodynamics plays an important role in the establishment of vascular homeostasis.
| Alkuperäiskieli | Ei tiedossa |
|---|---|
| Sivut | E3682–E3691 |
| Sivumäärä | 10 |
| Julkaisu | Proceedings of the National Academy of Sciences |
| Vuosikerta | 115 |
| Numero | 16 |
| DOI - pysyväislinkit | |
| Tila | Julkaistu - 2018 |
| OKM-julkaisutyyppi | A1 Julkaistu artikkeli, soviteltu |
Rahoitus
We acknowledge funding from the European Union’s Horizon 2020 research and innovation program under the Marie Sklodowska-Curie Grant Agreement 654513 (to S.L.), the European Union’s Seventh Framework Programme under Grant Agreement 604514 (ImaValve) (to S.L., O.M.J.A.S., C.V.C.B., and C.M.S.), and the Netherlands CardioVascular Research Initiative CVON2012-01 (to S.L., C.V.C.B., and C.M.S.).
Keywords
- mechanosensitivity
- Jagged
- homeostasis
- Notch
Projektit
- 1 Päättynyt
-
ForceMorph: The integration of cell signalling and mechanical forces in vascular morphology
Sahlgren, C. (Vastuullinen tutkija)
01/03/18 → 31/08/23
Projekti: EU
Viittausmuodot
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