scholarly article | Q13442814 |
P356 | DOI | 10.1111/J.1476-5381.1992.TB14534.X |
P953 | full work available at URL | https://europepmc.org/articles/PMC1907757 |
https://europepmc.org/articles/PMC1907757?pdf=render | ||
P932 | PMC publication ID | 1907757 |
P698 | PubMed publication ID | 1472976 |
P5875 | ResearchGate publication ID | 21682696 |
P50 | author | Ian L Megson | Q42176916 |
P2093 | author name string | A. R. Butler | |
D. E. Flitney | |||
F. W. Flitney | |||
P2860 | cites work | Isolation of nitric oxide synthetase, a calmodulin-requiring enzyme | Q24299059 |
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Vascular endothelial cells synthesize nitric oxide from L-arginine | Q28291036 | ||
Nitric oxide release accounts for the biological activity of endothelium-derived relaxing factor | Q28299224 | ||
The obligatory role of endothelial cells in the relaxation of arterial smooth muscle by acetylcholine | Q29547539 | ||
Effects of inhibition of nitric oxide formation on basal vasomotion and endothelium-dependent responses of the coronary arteries in awake dogs | Q34264556 | ||
Restoration of endothelium-dependent relaxation by dietary treatment of atherosclerosis | Q35584108 | ||
The photoactivated relaxation of smooth muscle of rabbit aorta | Q36373895 | ||
Cyclic GMP synthesis and function | Q39167928 | ||
Endothelium-derived relaxing factor is a nitrosyl iron complex with thiol ligands | Q41161318 | ||
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Correlation between nitric oxide formation during degradation of organic nitrates and activation of guanylate cyclase. | Q42091793 | ||
Vasorelaxant properties of the endothelium-derived relaxing factor more closely resemble S-nitrosocysteine than nitric oxide | Q42478033 | ||
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NG-methylarginine, an inhibitor of endothelium-derived nitric oxide synthesis, is a potent pressor agent in the guinea pig: does nitric oxide regulate blood pressure in vivo? | Q54355366 | ||
Endothelium-dependent and endothelium-independent vasodilation in resistance arteries from hypertensive rats. | Q54384018 | ||
L-arginine is the physiological precursor for the formation of nitric oxide in endothelium-dependent relaxation | Q68431098 | ||
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Effect of lipid feeding on endothelium dependent relaxation in rabbit aortic preparations | Q68830655 | ||
Selective attenuation of endothelium-mediated vasodilation in atherosclerotic human coronary arteries | Q69015514 | ||
Effects of endothelium-derived nitric oxide on peripheral arteriolar tone in man | Q69375610 | ||
Blood pressure and impairment of endothelium-dependent relaxation in spontaneously hypertensive rats | Q69677806 | ||
Increases in flow reduce the release of endothelium-derived relaxing factor in the aorta of normotensive and spontaneously hypertensive rats | Q69773705 | ||
Endothelium-dependent contractions to acetylcholine in the aorta of the spontaneously hypertensive rat | Q69878903 | ||
A novel citrulline-forming enzyme implicated in the formation of nitric oxide by vascular endothelial cells | Q69938761 | ||
Possible role for cyclic GMP in endothelium-dependent relaxation of rabbit aorta by acetylcholine. Comparison with nitroglycerin | Q70172244 | ||
Decreased endothelium-dependent relaxation in New Zealand genetic hypertensive rats | Q70517238 | ||
P433 | issue | 3 | |
P407 | language of work or name | English | Q1860 |
P921 | main subject | iron compound | Q56283350 |
P304 | page(s) | 842-848 | |
P577 | publication date | 1992-11-01 | |
P1433 | published in | British Journal of Pharmacology | Q919631 |
P1476 | title | Iron-sulphur cluster nitrosyls, a novel class of nitric oxide generator: mechanism of vasodilator action on rat isolated tail artery | |
P478 | volume | 107 |
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Q42577382 | Electronic and spatial structures of water-soluble dinitrosyl iron complexes with thiol-containing ligands underlying their ability to act as nitric oxide and nitrosonium ion donors |
Q51287917 | Hypotensive Effect and Accumulation of Dinitrosyl Iron Complexes in Blood and Tissues after Intravenous and Subcutaneous Injection. |
Q35042989 | Inhibition of human platelet aggregation by a novel S-nitrosothiol is abolished by haemoglobin and red blood cells in vitro: implications for anti-thrombotic therapy |
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Q38115291 | Multi-photon excitation in uncaging the small molecule bioregulator nitric oxide. |
Q43189343 | N-Substituted analogues of S-nitroso-N-acetyl-D,L-penicillamine: chemical stability and prolonged nitric oxide mediated vasodilatation in isolated rat femoral arteries |
Q34350725 | NIR-triggered release of caged nitric oxide using upconverting nanostructured materials |
Q72196888 | NO, nitrosonium ions, nitroxide ions, nitrosothiols and iron-nitrosyls in biology: a chemist's perspective |
Q43173726 | Neocuproine, a selective Cu(I) chelator, and the relaxation of rat vascular smooth muscle by S-nitrosothiols |
Q34183732 | Nitric oxide and peroxynitrite as factors to stimulate neurotransmitter release in the CNS. |
Q44489963 | Nitric oxide and the mechanism of rat vascular smooth muscle photorelaxation |
Q51741120 | Nitric oxide release triggered by two-photon excited photoluminescence of engineered nanomaterials. |
Q49038280 | Nitric oxide-induced perturbations in a cell culture model of the blood-brain barrier |
Q34259551 | Photoactive ruthenium nitrosyls: Effects of light and potential application as NO donors |
Q42368798 | Photon pharmacology of an iron-sulphur cluster nitrosyl compound acting on smooth muscle |
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Q36715236 | The nitric oxide--cyclic GMP pathway and synaptic depression in rat hippocampal slices |
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Q59095551 | Understanding the controversy over the identity of EDRF |
Q41114819 | Use of the comet assay to investigate possible interactions of nitric oxide and reactive oxygen species in the induction of DNA damage and inhibition of function in an insulin-secreting cell line |
Q36810194 | Vasodilator responses of rat isolated tail artery enhanced by oxygen- dependent, photochemical release of nitric oxide from iron-sulphur-nitrosyls |
Q43880293 | Venodilator action of an organotransition-metal nitrosyl complex |
Q35168694 | Visible light-triggered nitric oxide release from near-infrared fluorescent nanospheric vehicles |
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