Endothelial dysfunction is frequently involved in the pathogenesis of vascular disease. While nitric oxide (NO) inhibits smooth muscle cell proliferation, its effect on endothelial cell proliferation is unclear. The aim of this study was to determine if adenoviral-mediated gene transfer of endothelial NO synthase (eNOS) to human umbilical vein endothelial cells (HUVECs) would result in increased generation of NO and affect endothelial cell proliferation. HUVECs were transduced with adenoviral vectors encoding eNOS (AdeNOS) or beta-galactosidase (Ad beta gal) or exposed to diluent (control). AdeNOS-transduced cells showed increased eNOS expression as detected by Western blot analysis, and increased concentrations of cGMP (control 0.7 +/- 0.1...
Cardiac allograft arteriosclerosis (CAA) is the leading cause of death in cardiac transplantation re...
BACKGROUND: Non-viral-based gene modification of adult stem cells with endothelial nitric oxide synt...
BACKGROUND: Non-viral-based gene modification of adult stem cells with endothelial nitric oxide synt...
AbstractOBJECTIVESThe purpose of the study was to investigate the role of nitric oxide (NO) in monoc...
Abstract-Endothelial cells in normal blood vessels might prevent the unscheduled proliferation of sm...
Smooth muscle cell (SMC) migration contributes to vascular remodeling. Nitric oxide (NO) produced vi...
Objective: We have shown previously that there is a relative nitric oxide deficiency at the level of...
Objective: We have shown previously that there is a relative nitric oxide deficiency at the level of...
AbstractOBJECTIVESThe purpose of the study was to investigate the role of nitric oxide (NO) in monoc...
Introducing recombinant genes into donor hearts may offer a therapeutic intervention that could pote...
Endothelial nitric oxide synthase (eNOS) is the major source of nitric oxide (NO) production in blo...
Background Bypass graft disease is related to proliferation and migration of vascular smooth muscle ...
BACKGROUND: Loss of endothelial NO production after arterial injury may contribute to restenosis, ch...
Cardiac allograft arteriosclerosis (CAA) is the leading cause of death in cardiac transplantation re...
OBJECTIVE: Nitric oxide (NO) inhibits thrombus formation, vascular contraction, and smooth muscle ce...
Cardiac allograft arteriosclerosis (CAA) is the leading cause of death in cardiac transplantation re...
BACKGROUND: Non-viral-based gene modification of adult stem cells with endothelial nitric oxide synt...
BACKGROUND: Non-viral-based gene modification of adult stem cells with endothelial nitric oxide synt...
AbstractOBJECTIVESThe purpose of the study was to investigate the role of nitric oxide (NO) in monoc...
Abstract-Endothelial cells in normal blood vessels might prevent the unscheduled proliferation of sm...
Smooth muscle cell (SMC) migration contributes to vascular remodeling. Nitric oxide (NO) produced vi...
Objective: We have shown previously that there is a relative nitric oxide deficiency at the level of...
Objective: We have shown previously that there is a relative nitric oxide deficiency at the level of...
AbstractOBJECTIVESThe purpose of the study was to investigate the role of nitric oxide (NO) in monoc...
Introducing recombinant genes into donor hearts may offer a therapeutic intervention that could pote...
Endothelial nitric oxide synthase (eNOS) is the major source of nitric oxide (NO) production in blo...
Background Bypass graft disease is related to proliferation and migration of vascular smooth muscle ...
BACKGROUND: Loss of endothelial NO production after arterial injury may contribute to restenosis, ch...
Cardiac allograft arteriosclerosis (CAA) is the leading cause of death in cardiac transplantation re...
OBJECTIVE: Nitric oxide (NO) inhibits thrombus formation, vascular contraction, and smooth muscle ce...
Cardiac allograft arteriosclerosis (CAA) is the leading cause of death in cardiac transplantation re...
BACKGROUND: Non-viral-based gene modification of adult stem cells with endothelial nitric oxide synt...
BACKGROUND: Non-viral-based gene modification of adult stem cells with endothelial nitric oxide synt...