Search results for "Smooth Muscle"

showing 10 items of 156 documents

Oxidative stress in vascular disease: causes, defense mechanisms and potential therapies

2007

Endothelial cells control vascular homeostasis by generating paracrine factors that regulate vascular tone, inhibit platelet function, prevent adhesion of leukocytes, and limit proliferation of vascular smooth muscle. The dominant factor responsible for many of those effects is endothelium-derived nitric oxide (NO). Endothelial dysfunction characterized by enhanced inactivation or reduced synthesis of NO, alone or in combination, is seen in conjunction with risk factors for cardiovascular disease. Endothelial dysfunction can promote vasospasm, thrombosis, vascular inflammation, and proliferation of the intima. Vascular oxidative stress and increased production of reactive oxygen species con…

Vascular smooth muscleEndotheliumArteriosclerosisPharmacologyNitric Oxidemedicine.disease_causeAntioxidantsReceptor Angiotensin Type 1Superoxide dismutaseRisk FactorsmedicineHumansEndothelial dysfunctionchemistry.chemical_classificationReactive oxygen speciesNADPH oxidasebiologybusiness.industryAnticholesteremic AgentsGeneral Medicinemedicine.diseaseOxidative Stressmedicine.anatomical_structureMitochondrial respiratory chainchemistryImmunologybiology.proteinEndothelium VascularHydroxymethylglutaryl-CoA Reductase InhibitorsReactive Oxygen SpeciesCardiology and Cardiovascular MedicinebusinessOxidative stressNature Clinical Practice Cardiovascular Medicine
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Staphylococcus aureus alpha toxin mediates polymorphonuclear leukocyte-induced vasocontraction and endothelial dysfunction.

2002

The effect of Staphylococcus aureus alpha toxin (alpha-toxin) on selectin-mediated neutrophil adhesion was investigated in polymorphonuclear leukocyte- (PMN) induced vasocontraction and endothelial dysfunction. Adherence of human PMNs to rat aortic endothelium increased significantly following stimulation of the endothelium with alpha-toxin (0.1, 0.5, and 1 microg/mL). This effect could be significantly attenuated by monoclonal antibodies directed against P-selectin or fucoidin, a carbohydrate known to block selectins. Unstimulated human PMNs (10(6)cells/mL) were added to organ chambers containing rat aortic rings stimulated with alpha-toxin (0.5 microg/mL). PMNs elicited a significant vaso…

Vascular smooth muscleEndotheliumNeutrophilsBacterial ToxinsPharmacologyBiologyIn Vitro TechniquesCritical Care and Intensive Care MedicineMicrocirculationHemolysin ProteinsFibrinolytic AgentsmedicineCell AdhesionAnimalsHumansEndothelial dysfunctionStaphylococcus aureus alpha toxinAortaThrombinAzepinesTriazolesmedicine.diseaseRatsmedicine.anatomical_structureVasoconstrictionImmunologyEmergency MedicineEndothelium Vascularmedicine.symptomVasoconstrictionSelectinBlood vesselShock (Augusta, Ga.)
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Transmembrane signalling mechanisms regulating expression of cationic amino acid transporters and inducible nitric oxide synthase in rat vascular smo…

1999

The signalling mechanisms involved in the induction of nitric oxide synthase and l-arginine transport were investigated in bacterial lipopolysaccharide (LPS)- and interferon-gamma (IFN-gamma)-stimulated rat cultured aortic smooth muscle cells (RASMCs). The expression profile of transcripts for cationic amino acid transporters (CATs) and their regulation by LPS and IFN-gamma were also examined. Control RASMCs expressed mRNA for CAT-1, CAT-2A and CAT-2B. Levels of all three transcripts were significantly elevated in activated cells. Stimulated CAT mRNA expression and l-arginine transport occurred independently of protein kinase C (PKC), protein tyrosine kinase (PTK) and p44/42 mitogen-activat…

Vascular smooth muscleKinasep38 mitogen-activated protein kinasesCell BiologyBiologyBiochemistryNitric oxideCell biologyNitric oxide synthasechemistry.chemical_compoundchemistrybiology.proteinSignal transductionMolecular BiologyTyrosine kinaseProtein kinase CBiochemical Journal
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Vascular Contraction Model Based on Multi-agent Systems

2017

This paper presents a first approximation to the simulation of vascular smooth muscle cell following an agent-based simulation approach. This simulation incorporates mathematical models that describe the behaviour of these cells, which are used by the agents in order to emulate vascular contraction. A first tool, implemented in Netlogo, is provided to allow the performance of the proposed simulation.

Vascular smooth muscleMathematical modelNetLogoControl theoryComputer scienceMulti-agent systemcomputercomputer.programming_languageVascular contraction
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Regulation of NOS expression in vascular diseases

2020

Nitric oxide synthases (NOS) are the major sources of nitric oxide (NO), a small bioactive molecule involved in the regulation of many cellular processes. One of the most prominent functions of NO is regulation of vasodilatation and thereby control of blood pressure. Most important for vascular tone is NOS3. Endothelial NOS3-generated NO diffuses into the vascular smooth muscle cells, activates the soluble guanylate cyclase resulting in enhanced cGMP concentrations and smooth muscle cell relaxation. However, more and more evidence exist that also NOS1 and NOS2 contribute to vascular function. We summarize the current knowledge about the regulation of NOS expression in the vasculature by tra…

Vascular smooth muscleNitric Oxide Synthase Type IIINOS1CellNitric Oxide Synthase Type IIBlood PressureVasodilationInflammationNitric Oxide Synthase Type INitric OxideMuscle Smooth VascularNitric oxidechemistry.chemical_compoundmedicineAnimalsHumansProtein IsoformsVascular DiseasesRNA Processing Post-TranscriptionalInflammationRegulation of gene expressionInnate immune systemAtherosclerosisImmunity InnateCell biologyGene Expression Regulation Neoplasticmedicine.anatomical_structurechemistryNitric Oxide Synthasemedicine.symptomProtein Processing Post-TranslationalFrontiers in Bioscience-Landmark
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Untersuchungen zur Wirkung von Angiotensin II auf einen autorhythmischen glatten Gefäßmuskel (Pfortader der Ratte)

1971

Die isolierte Pfortader der Ratte gehort zu den Gefaspraparaten, die in vitro eine mechanische Spontanrhythmik zeigen und auch elektronenmikroskopisch die Charakteristika solcher spontan aktiver glatter Gefasmuskeln aufweisen. Es wurde der Einflus von Angiotensin II (Val5-Angiotensin-II-Asp-β-amid) auf die Kontraktilitat und Autorhythmik gepruft. Angiostensin II fuhrt in einer Konzentration von 5×10−10 g/ml bereits zu einer signifikanten Zunahme der Kontraktionsamplitude, der Effekt ist bei einer Konzentration von 10−8 g/ml maximal. Diese Wirkung von Angiotensin ist durch Senkung der Inkubationstemperatur auf 5°C ebenso wie die Wirkung anderer Agonisten zu hemmen. Ca2+-Entzug inhibiert eben…

Vascular smooth musclePhysiologyChemistryPhysiology (medical)Portal veinCardiology and Cardiovascular MedicineAngiotensin IIMolecular biologyArchiv für Kreislaufforschung
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Organic Nitrate Therapy, Nitrate Tolerance, and Nitrate-Induced Endothelial Dysfunction: Emphasis on Redox Biology and Oxidative Stress

2015

Abstract Organic nitrates, such as nitroglycerin (GTN), isosorbide-5-mononitrate and isosorbide dinitrate, and pentaerithrityl tetranitrate (PETN), when given acutely, have potent vasodilator effects improving symptoms in patients with acute and chronic congestive heart failure, stable coronary artery disease, acute coronary syndromes, or arterial hypertension. The mechanisms underlying vasodilation include the release of •NO or a related compound in response to intracellular bioactivation (for GTN, the mitochondrial aldehyde dehydrogenase [ALDH-2]) and activation of the enzyme, soluble guanylyl cyclase. Increasing cyclic guanosine-3′,-5′-monophosphate (cGMP) levels lead to an activation of…

Vascular smooth musclePhysiologyVasodilator AgentsClinical BiochemistryVasodilationPharmacologymedicine.disease_causeBiochemistryCalcium in biologyComprehensive Invited ReviewmedicineAnimalsHumansEndothelial dysfunctionMolecular BiologyGeneral Environmental ScienceNitratesChemistryCell Biologymedicine.diseaseOxidative StressCardiovascular DiseasesGeneral Earth and Planetary SciencesEndothelium VascularIsosorbide dinitrateReactive Oxygen SpeciesSoluble guanylyl cyclaseOxidation-ReductionOxidative stressIntracellularmedicine.drugAntioxidants & Redox Signaling
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Pro-inflammatory effects of interleukin-17A on vascular smooth muscle cells involve NAD(P)H- oxidase derived reactive oxygen species.

2010

T cells are known for their contribution to the inflammatory element of atherosclerosis. Recently, it has been demonstrated that the Th17 derived cytokine IL-17 is involved in the pro-inflammatory response of vascular smooth muscle cells (VSMC). The aim of the present study was to examine whether reactive oxygen species (ROS) might be involved in this context. The effect of IL-17A on ROS generation was examined using the fluorescent dye 2′7′-dichlorodihydrofluorescein (H<sub>2</sub>DCF) in primary murine VSMC. IL-17A induced an increase in H<sub>2</sub>DCF fluorescence in VSMC, and this effect was blocked by the NAD(P)H-oxidase inhibitor apocynin and siRNA targeting …

Vascular smooth musclePhysiologymedicine.medical_treatmentAorta Thoracicmedicine.disease_causep38 Mitogen-Activated Protein KinasesMuscle Smooth Vascularchemistry.chemical_compoundMiceCell MovementmedicineAnimalsEnzyme InhibitorsRNA Small InterferingCells Culturedchemistry.chemical_classificationReactive oxygen speciesNADPH oxidaseMembrane GlycoproteinsbiologyInterleukin-17AcetophenonesNADPH OxidasesCell DifferentiationMolecular biologyMice Inbred C57BLOxidative StressCytokinechemistryBiochemistryNAD(P)H oxidaseNADPH Oxidase 4ApocyninNADPH Oxidase 2cardiovascular systembiology.proteinCytokinesNAD+ kinaseCardiology and Cardiovascular MedicineReactive Oxygen SpeciesOxidative stressJournal of vascular research
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Corrigendum to “Imaging of nitric oxide in a living vertebrate using a diaminofluorescein probe” [Free Radic. Biol. Med. 43 (2007) 619–627]

2008

Adrian Grimes and colleagues showed in a previous report that zebrafish bulbus arteriosus and the smooth muscle component of the chick cardiac outflow tract may be specifically labeled by DAF-2DA. Using this fluorescent dye they could distinguish the zebrafish bulbus arteriosus from "true" cardiac chambers, the atrium and ventricle (Grimes AC, Stadt HA, Shepherd IT, Kirby ML. Solving an enigma: arterial pole development in the zebrafish heart. Dev Biol 2006 Feb 15;290(2):265−76). The authors regret not including this information in the original version of their article.

animal structuresbiologyChemistryBulbus arteriosusAnatomybiology.organism_classificationBiochemistryNitric oxidechemistry.chemical_compoundmedicine.anatomical_structureSmooth muscleVentriclePhysiology (medical)Cardiac chamberembryonic structurescardiovascular systemmedicineAtrium (heart)ZebrafishFree Radical Biology and Medicine
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Multifibrillar bundles of a self-assembling hyaluronic acid derivative obtained through a microfluidic technique for aortic smooth muscle cell orient…

2018

A hyaluronic acid derivative that is able to physically crosslink in a saline aqueous environment was employed for the production of fibers with a mean diameter of 50 μm using a microfluidic technique. The microfibers were collected in a tailored rotating collector and assembled to form multifibrillar bundles. The orientation of the microfibers on the collected bundles was evaluated by microCT analysis. The bundles were biofunctionalized by physical addition of fibronectin or chemical tethering of a cyRGDC peptide to achieve control of Aortic Smooth Muscle Cell (AoSMC) attachment, elongation and alignment. The mechanical performances of these bundles were evaluated by elongation tests, rela…

business.product_categoryMaterials scienceMicrofluidicsMyocytes Smooth MuscleMicrofluidicsCellBiomedical Engineering02 engineering and technology010402 general chemistryPeptides Cyclic01 natural scienceschemistry.chemical_compoundMicrofiberHyaluronic acidMicroscopyCell AdhesionmedicineGeneral Materials ScienceHyaluronic AcidAortabiologyN.D.Cell Differentiation021001 nanoscience & nanotechnologyFibronectins0104 chemical sciencesFibronectinmedicine.anatomical_structurechemistrySettore CHIM/09 - Farmaceutico Tecnologico Applicativobiology.proteinSurface modificationMaterials Science (all)Elongation0210 nano-technologybusinessOligopeptidesBiomedical engineeringBiomaterials Science
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