During three decades, an enormous number of studies have demonstrated the critical role of nitric oxide (NO) as a second messenger engaged in the activation of many systems including vascular smooth muscle relaxation. The underlying cellular mechanisms involved in vasodilatation are essentially due to soluble guanylyl-cyclase (sGC) modulation in the cytoplasm of vascular smooth cells. sGC activation culminates in cyclic GMP (cGMP) production, which in turn leads to protein kinase G (PKG) activation. NO binds to the sGC heme moiety, thereby activating this enzyme. Activation of the NO-sGC-cGMP-PKG pathway entails Ca2+ signaling reduction and vasodilatation. Endothelium dysfunction leads to decreased production or bioavailability of endogenou...
The L-arginine pathway within endothelial cells in the blood vessel wall is the source of production...
The endothelium can evoke relaxations (dilatations) of the underlying vascular smooth muscle, by rel...
Since its discovery, nitric oxide (NO) has emerged as a biologically important molecule and was even...
During three decades, an enormous number of studies have demonstrated the critical role of nitric ox...
Nitric oxide (NO) donors produce NO-related activity when applied to biological systems. Among its d...
AbstractNitric oxide (NO) plays an important role in the control of the vascular tone and the most o...
AbstractAs the first discovered gaseous signaling molecule, nitric oxide (NO) affects a number of ce...
AbstractNitric oxide (NO) is a molecule that has gained recognition as a crucial modulator of vascul...
Nitric oxide synthases (NOS) are the enzymes responsible for nitric oxide (NO) generation. NO is a f...
Nitric oxide (NO) is an intra- and extracellular messenger that mediates diverse signaling pathways ...
AbstractNitric oxide (NO) is a potent vasodilator and it can be generated by the ruthenium complex c...
Within the family of endogenous gasotransmitters, nitric oxide (NO) is the smallest gaseous intercel...
AbstractNitric oxide has a key role in vascular homeostasis. It plays a protective role by suppressi...
Nitric oxide (NO) plays an important role in the control of the vascular tone and the most often emp...
Nitric Oxide (NO) is a small molecule that continues to attract much attention from the scientific c...
The L-arginine pathway within endothelial cells in the blood vessel wall is the source of production...
The endothelium can evoke relaxations (dilatations) of the underlying vascular smooth muscle, by rel...
Since its discovery, nitric oxide (NO) has emerged as a biologically important molecule and was even...
During three decades, an enormous number of studies have demonstrated the critical role of nitric ox...
Nitric oxide (NO) donors produce NO-related activity when applied to biological systems. Among its d...
AbstractNitric oxide (NO) plays an important role in the control of the vascular tone and the most o...
AbstractAs the first discovered gaseous signaling molecule, nitric oxide (NO) affects a number of ce...
AbstractNitric oxide (NO) is a molecule that has gained recognition as a crucial modulator of vascul...
Nitric oxide synthases (NOS) are the enzymes responsible for nitric oxide (NO) generation. NO is a f...
Nitric oxide (NO) is an intra- and extracellular messenger that mediates diverse signaling pathways ...
AbstractNitric oxide (NO) is a potent vasodilator and it can be generated by the ruthenium complex c...
Within the family of endogenous gasotransmitters, nitric oxide (NO) is the smallest gaseous intercel...
AbstractNitric oxide has a key role in vascular homeostasis. It plays a protective role by suppressi...
Nitric oxide (NO) plays an important role in the control of the vascular tone and the most often emp...
Nitric Oxide (NO) is a small molecule that continues to attract much attention from the scientific c...
The L-arginine pathway within endothelial cells in the blood vessel wall is the source of production...
The endothelium can evoke relaxations (dilatations) of the underlying vascular smooth muscle, by rel...
Since its discovery, nitric oxide (NO) has emerged as a biologically important molecule and was even...