4.6 Article

Shear Stress Alterations Activate BMP4/pSMAD5 Signaling and Induce Endothelial Mesenchymal Transition in Varicose Veins

Journal

CELLS
Volume 10, Issue 12, Pages -

Publisher

MDPI
DOI: 10.3390/cells10123563

Keywords

varicose veins; shear stress; endothelial cells; EndMT; TGF beta; BMP

Categories

Funding

  1. Kerala State Council Science and Technology [044/YIPB/KBC/2017/KSCTSTE]
  2. N Radhakrishnan Foundation [6198/RGCB/PROJECTS/2018]
  3. Science and Engineering Research Board, Dept of Science and Technology [CRG/2020/002178]
  4. Rajiv Gandhi Center for Biotechnology (RGCB)

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The study reveals that endothelial to mesenchymal transition occurs in varicose veins, associated with upregulation of the BMP4-pSMAD5 pathway. Additionally, even minimal disturbances in shear stress can induce phenotype switching in venous endothelial cells, highlighting the importance of shear stress.
Chronic venous diseases, including varicose veins, are characterized by hemodynamic disturbances due to valve defects, venous insufficiency, and orthostatism. Veins are physiologically low shear stress systems, and how altered hemodynamics drives focal endothelial dysfunction and causes venous remodeling is unknown. Here we demonstrate the occurrence of endothelial to mesenchymal transition (EndMT) in human varicose veins. Moreover, the BMP4-pSMAD5 pathway was robustly upregulated in varicose veins. In vitro flow-based assays using human vein, endothelial cells cultured in microfluidic chambers show that even minimal disturbances in shear stress as may occur in early stages of venous insufficiency induce BMP4-pSMAD5-based phenotype switching. Furthermore, low shear stress at uniform laminar pattern does not induce EndMT in venous endothelial cells. Targeting the BMP4-pSMAD5 pathway with small molecule inhibitor LDN193189 reduced SNAI1/2 expression in venous endothelial cells exposed to disturbed flow. TGF beta inhibitor SB505124 was less efficient in inhibiting EndMT in venous endothelial cells exposed to disturbed flow. We conclude that disturbed shear stress, even in the absence of any oscillatory flow, induces EndMT in varicose veins via activation of BMP4/pSMAD5-SNAI1/2 signaling. The present findings serve as a rationale for the possible use of small molecular mechanotherapeutics in the management of varicose veins.

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