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Science of the Total Environment, ISSN 0048-9697, 12/2019, Volume 694, p. 133674
Exposure to fine particulate matter (PM ) can result in adverse cardiovascular responses including vascular endothelial dysfunction, whereas exercise training... 
Instillation | Exercise | High-density lipoprotein | Vasorelaxation | Particulate matter
Journal Article
Archives of Biochemistry and Biophysics, ISSN 0003-9861, 05/2019, Volume 667, pp. 1 - 5
Hypertension is one of the major causes of mortality. Though a host of drugs are available for the treatment of hypertension, majority have been linked to... 
Aorta | Kaempferol-7-O-α-L-rhamnopyroside | Vasorelaxation | p-eNOS | Endothelium
Journal Article
CURRENT PHARMACEUTICAL DESIGN, ISSN 1381-6128, 2018, Volume 24, Issue 46, pp. 5580 - 5589
Background: Among polyphenolic compounds suggested to prevent cardiovascular diseases (CVDs) and to explain the "French paradox", the anthocyanidin delphinidin... 
MORTALITY | CYCLIC-NUCLEOTIDE PHOSPHODIESTERASES | ENDOTHELIUM-DEPENDENT VASORELAXATION | WINE POLYPHENOLS | ANTHOCYANINS | PROSPECTIVE COHORT | estrogen receptor alpha pathway | structure-activity relationships | vasorelaxation | phosphodiesterase inhibition | BOVINE | CALCIUM | Anthocyanidin | PHARMACOLOGY & PHARMACY | CELL | nitrite oxide
Journal Article
Journal of Veterinary Medical Science, ISSN 0916-7250, 2018
Eukaryotic elongation factor 2 (eEF2) kinase (eEF2K) inhibits protein translation through the phosphorylation of its specific substrate, eEF2. We previously... 
blood pressure | β2-receptor | vasorelaxation | Kir channel
Journal Article
The EMBO Journal, ISSN 0261-4189, 11/2001, Volume 20, Issue 21, pp. 6008 - 6016
Hydrogen sulfide (H2S) has been traditionally viewed as a toxic gas. It is also, however, endogenously generated from cysteine metabolism. We attempted to... 
smooth muscle cells | blood pressure | nitric oxide | hydrogen sulfide | vasorelaxation | Hydrogen sulfide | Blood pressure | Smooth muscle cells | Vasorelaxation | Nitric oxide
Journal Article
Biomedicine and Pharmacotherapy, ISSN 0753-3322, 07/2019, Volume 115, p. 108926
The vasorelaxant effect of apigenin (API)has been demonstrated in a number of vascular beds. We aimed to study the possible involvement of Cl channels and K... 
activated Cl | channels | Vasorelaxation | Apigenin | Voltage-dependent K | Intrarenal artery
Journal Article
Pharmacological Reports, ISSN 1734-1140, 10/2019, Volume 71, Issue 5, pp. 950 - 957
Considering the therapeutic potential of phenolic compounds, the purpose of the present study was to investigate the mechanisms involved in the relaxation... 
Catechin | Vasorelaxation | Natural products | Nitric oxide | Cryptostrobin
Journal Article
Journal of Pharmacy and Pharmacology, ISSN 0022-3573, 05/2013, Volume 65, Issue 5, pp. 745 - 749
Journal Article
British Journal of Pharmacology, ISSN 0007-1188, 03/2014, Volume 171, Issue 6, pp. 1361 - 1378
Journal Article
Pharmacological Reviews, ISSN 0031-6997, 12/2010, Volume 62, Issue 4, pp. 588 - 631
Journal Article
Food and Chemical Toxicology, ISSN 0278-6915, 11/2019, Volume 133, p. 110764
The present study investigated the effects of and fruit extracts on arginase activity and arterial vasodilation. fruit extract exerted the highest vasorelaxant... 
Viburnum opulus | Sorbus aucuparia | Chlorogenic acid | Endothelium-dependent vasorelaxation | Cornus mas | Arginase inhibition
Journal Article
Toxicology Letters, ISSN 0378-4274, 09/2019, Volume 312, pp. 55 - 64
Formaldehyde (FA), a well-known toxic gas molecule similar to nitric oxide (NO), carbon monoxide (CO), and hydrogen sulfide (H S), is widely produced... 
NO/cGMP pathway | Ion channels | Vasorelaxation | Rat aortas | Formaldehyde
Journal Article
Steroids, ISSN 0039-128X, 2014, Volume 89, pp. 33 - 40
Progesterone and 17β-estradiol induce vasorelaxation through non-genomic mechanisms in several isolated blood vessels; however, no study has systematically... 
17β-Estradiol | Cerebral arteries | Progesterone | Vasorelaxation
Journal Article
Acta Physiologica, ISSN 1748-1708, 12/2018, Volume 224, Issue 4, pp. e13126 - n/a
Aim Hypoxia causes vasodilatation of coronary arteries which protects the heart from ischaemic damage through mechanisms including the generation of hydrogen... 
perivascular adipose tissue | coronary artery | hypoxia | hydrogen sulphide | vasorelaxation | SMOOTH-MUSCLE | PHYSIOLOGY | VASCULAR FUNCTION | RELAXATION | CHANNELS | INHIBITORS | VASOCONSTRICTION | Enzymes | Adipose tissue | Hydrogen | Coronary artery | Contractility | Immunoblotting | Muscle contraction | Vasodilation | Blood flow | Mimicry | Hydrogen sulfide | Isometric | Coronary vessels | Myocardium | Hypoxia | Veins & arteries
Journal Article