Activated forkhead transcription factor inhibits neointimal hyperplasia after angioplasty through induction of p27

Kyung-Woo Park1, Dae-Hee Kim, Hyun-Jung You

  • 1Cardiovascular Laboratory, Clinical Research Institute, Seoul National University Hospital, Korea.

Abstract

Insights

Overexpressing FKHRL1 (forkhead transcription factor in rhabdomyosarcoma like-1) inhibits vascular smooth muscle cell proliferation and reduces neointimal hyperplasia after balloon angioplasty. This suggests FKHRL1 is a therapeutic target for preventing artery restenosis.

Area of Science:

  • Vascular Biology
  • Molecular Cardiology
  • Cellular Regulation

Background:

  • Vascular smooth muscle cell (VSMC) proliferation and apoptosis are key in neointimal hyperplasia after angioplasty.
  • The role of FKHRL1 (forkhead transcription factor in rhabdomyosarcoma like-1) in VSMC regulation and neointimal growth is not fully understood.

Purpose of the Study:

  • To investigate the effects of FKHRL1 on VSMC proliferation, apoptosis, and cell cycle.
  • To determine the role of FKHRL1 and p27 in neointimal hyperplasia post-angioplasty.
  • To evaluate FKHRL1's potential to inhibit neointimal hyperplasia in a rat carotid artery model.

Main Methods:

  • Transfection of VSMCs with adenovirus expressing constitutively active FKHRL1 (FKHRL1-TM).
  • In vivo studies using a rat carotid artery balloon angioplasty model.
  • Assessment of VSMC proliferation, apoptosis, cell cycle (p27 expression), and neointima formation (intima-to-media ratio).

Main Results:

  • FKHRL1 overexpression in VSMCs increased p27, induced G1 cell-cycle arrest, and promoted apoptosis.
  • In vivo, balloon angioplasty led to FKHRL1 phosphorylation and decreased p27 expression, promoting VSMC proliferation.
  • Gene transfer of FKHRL1-TM significantly reduced neointima formation by increasing p27, decreasing proliferation, and enhancing apoptosis.

Conclusions:

  • Balloon angioplasty induces FKHRL1 phosphorylation and p27 downregulation, promoting VSMC proliferation and neointima formation.
  • FKHRL1 plays a critical role in regulating VSMC proliferation and viability.
  • FKHRL1 represents a potential molecular target for therapeutic interventions to reduce neointimal hyperplasia after angioplasty.