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Vascular Balloon Injury and Intraluminal Administration in Rat Carotid Artery
Published on: December 23, 2014
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.
Objective:
We examined the effects of FKHRL1 (forkhead transcription factor in rhabdomyosarcoma like-1) overexpression on vascular smooth muscle cell (VSMC) proliferation, apoptosis, and cell cycle, in vitro, and the role of FKHRL1 and p27 in the pathophysiology of neointimal growth after balloon angioplasty, in vivo. Furthermore, we tested whether FKHRL1 overexpression can inhibit neointimal hyperplasia in a rat carotid artery model.
Methods And Results:
Adenovirus expressing the constitutively active FKHRL1 (FKHRL1-TM; triple mutant) with 3 Akt phosphorylation sites mutated was transfected to subconfluent VSMCs. FKHRL1 overexpression in cultured VSMCs increased p27 expression, leading to G1 phase cell-cycle arrest and increased apoptosis. In vivo, the phosphorylation of FKHRL1 increased significantly 3 hours after balloon injury and decreased thereafter, with the subsequent downregulation of p27. Although the phosphorylation of FKHRL1 was greatest at 3 hours, the downregulation of p27 showed a temporal delay, only slightly starting to decrease after 3 hours and reaching a nadir at 72 hours after balloon injury. Gene transfer of FKHRL1-TM increased p27, decreased proliferation, and increased apoptosis of VSMCs, which resulted in a marked reduction in neointima formation (intima-to-media ratio: 0.31+/-0.13 versus 1.17+/-0.28, for FKHRL1-TM versus Adv-GFP; P<0.001).
Conclusions:
Balloon angioplasty leads to the phosphorylation of FKHRL1 and decreased expression of p27, thereby promoting a proliferative phenotype in VSMCs in vitro and in vivo. This study reveals the importance of FKHRL1 in proliferation and viability of VSMCs and suggests that it may serve as a molecular target for interventions to reduce neointima formation after angioplasty.
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.
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