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Human fibroblasts downregulate plasminogen activator inhibitor type-1 in cultured human macrovascular and

J C Zhang1, A Fabry, L Paucz

  • 1Department of Vascular Biology and Thrombosis Research, University of Vienna, Austria.

Blood
|November 15, 1996
PubMed

Insights

Fibroblasts (FBs) significantly downregulate plasminogen activator inhibitor type-1 (PAI-1) in endothelial cells (ECs). This finding suggests FBs may promote wound healing by increasing EC fibrinolytic activity.

Area of Science:

  • Cell Biology
  • Biochemistry
  • Vascular Biology

Background:

  • Endothelial cells (ECs) play a crucial role in vascular homeostasis and wound healing.
  • Plasminogen activator inhibitor type-1 (PAI-1) is a key regulator of the fibrinolytic system.
  • Previous studies indicated smooth muscle cells modulate EC PAI-1 expression differently based on origin.

Purpose of the Study:

  • To investigate the influence of fibroblasts (FBs) on the fibrinolytic potential of endothelial cells (ECs).
  • To determine if FBs can modulate PAI-1 expression in ECs, similar to smooth muscle cells.

Main Methods:

  • Co-culture of human umbilical vein ECs (HUVECs) and human skin FBs (HSFBs).
  • Treatment of ECs with serum-free conditioned media (CM) from HSFBs.
  • Analysis of PAI-1 antigen and mRNA levels in ECs.
  • Characterization of the PAI-1 downregulatory activity in HSFB-CM (heat-lability, molecular mass).

Main Results:

  • Co-culture with HSFBs significantly reduced PAI-1 antigen produced by HUVECs.
  • HSFB-CM dose-dependently decreased PAI-1 mRNA in HUVECs and human skin microvascular ECs (HSMECs).
  • The PAI-1 downregulatory effect was observed with low-passage HSFBs, was heat-labile, and had a molecular mass of approximately 5 kD.

Conclusions:

  • Fibroblasts (FBs) can decrease PAI-1 expression in endothelial cells (ECs).
  • This FB-mediated downregulation of PAI-1 may enhance EC profibrinolytic activity.
  • Such effects could be significant in physiological processes like wound healing, facilitating EC migration and proliferation.

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