AbstractAngiotensin II (AII) plays a crucial role in controlling the proliferation and migration of vascular smooth muscle cells (VSMCs). The present study was undertaken to determine if troglitazone (Tro) has an effect on the G-protein coupled signaling through AII type I (AT-1) receptors in cultured rat aortic VSMCs. AII-induced MAP kinase activation was inhibited 67.9% by Tro. AII-induced DNA synthesis and migration was completely inhibited by Tro or by the AT-1 receptor blocker irbesartan. The present study demonstrates that troglitazone inhibits AII-induced DNA synthesis, migration and MAP kinase activation in VSMCs which are important molecular events for the development of neointimal hyperplasia and atherosclerosis
OBJECTIVE: Peroxisome proliferator-activated receptor-γ (PPARγ) ligands attenuate angiotensin II (An...
1 We recently demonstrated that intracellular application of Angiotensin II (Angiotensin IIintr) ind...
1 We recently demonstrated that intracellular application of Angiotensin II (Angiotensin IIintr) ind...
AbstractThe thiazolidinedione troglitazone inhibits angiotensin II-induced extracellular signal-regu...
VSMC (vascular smooth muscle cell) proliferation contributes significantly to intimal thickening in ...
The success of revascularization procedures is limited by recurrent stenosis, which is a narrowing o...
The success of revascularization procedures is limited by recurrent stenosis, which is a narrowing o...
Angiotensin II may be an important mediator of neointima formation in vascular disease. This study w...
Angiotensin II may be an important mediator of neointima formation in vascular disease. This study w...
Angiotensin II may be an important mediator of neointima formation in vascular disease. This study w...
Angiotensin II may be an important mediator of neointima formation in vascular disease. This study w...
Abstract—We investigated the ability of angiotensin II type 1 (AT1) receptor blockers with peroxisom...
Angiotensin II is an important modulator of cell growth through AT(1) receptors, as demonstrated bot...
Thiazolidinediones are a new class of anti-diabetic agents which increase insulin sensitivity by bin...
OBJECTIVE: Peroxisome proliferator-activated receptor-γ (PPARγ) ligands attenuate angiotensin II (An...
OBJECTIVE: Peroxisome proliferator-activated receptor-γ (PPARγ) ligands attenuate angiotensin II (An...
1 We recently demonstrated that intracellular application of Angiotensin II (Angiotensin IIintr) ind...
1 We recently demonstrated that intracellular application of Angiotensin II (Angiotensin IIintr) ind...
AbstractThe thiazolidinedione troglitazone inhibits angiotensin II-induced extracellular signal-regu...
VSMC (vascular smooth muscle cell) proliferation contributes significantly to intimal thickening in ...
The success of revascularization procedures is limited by recurrent stenosis, which is a narrowing o...
The success of revascularization procedures is limited by recurrent stenosis, which is a narrowing o...
Angiotensin II may be an important mediator of neointima formation in vascular disease. This study w...
Angiotensin II may be an important mediator of neointima formation in vascular disease. This study w...
Angiotensin II may be an important mediator of neointima formation in vascular disease. This study w...
Angiotensin II may be an important mediator of neointima formation in vascular disease. This study w...
Abstract—We investigated the ability of angiotensin II type 1 (AT1) receptor blockers with peroxisom...
Angiotensin II is an important modulator of cell growth through AT(1) receptors, as demonstrated bot...
Thiazolidinediones are a new class of anti-diabetic agents which increase insulin sensitivity by bin...
OBJECTIVE: Peroxisome proliferator-activated receptor-γ (PPARγ) ligands attenuate angiotensin II (An...
OBJECTIVE: Peroxisome proliferator-activated receptor-γ (PPARγ) ligands attenuate angiotensin II (An...
1 We recently demonstrated that intracellular application of Angiotensin II (Angiotensin IIintr) ind...
1 We recently demonstrated that intracellular application of Angiotensin II (Angiotensin IIintr) ind...