Search results for "Channels"

showing 10 items of 411 documents

Role of endothelium and calcium channels in endothelin-induced contraction of human cerebral arteries

1990

Endothelin constricted human isolated cerebral arteries in a concentration-dependent manner. The maximal tension developed, as well as EC50 values were similar in arteries with and without endothelium. Removal of extracellular calcium or addition of the calcium antagonist nicardipine (10(-6)M), attenuated but did not abolish responses to endothelin. These experiments show that the endothelin-induced contraction in human cerebral arteries is not linked to the presence of intact endothelial cells. The data also show that the contractile effects of endothelin cannot be explained solely by an action on voltage-dependent calcium channels.

AdultMalemedicine.medical_specialtyCerebral arterieschemistry.chemical_elementIn Vitro TechniquesCalciumMuscle Smooth VascularNicardipineInternal medicinemedicineHumansAgedPharmacologyVoltage-dependent calcium channelbusiness.industryEndothelinsT-type calcium channelAnatomyCerebral ArteriesMiddle AgedEndocrinologychemistryCirculatory systemcardiovascular systemFemaleCalcium ChannelsEndothelium Vascularmedicine.symptomPeptidesEndothelin receptorbusinessVasoconstrictionMuscle ContractionResearch ArticleMuscle contraction
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The UCP2 -866 G>A promoter region polymorphism is associated with nonalcoholic steatohepatitis

2015

Background & Aims Uncoupling protein 2 - UCP2 - regulates mitochondrial lipid fluxes and reactive oxygen species production by the respiratory chain. The −866 G>A UCP2 promoter region polymorphism has been linked to insulin resistance and lipid metabolism. The aim of this study was to assess whether the −866 G>A UCP2 polymorphism predisposes to nonalcoholic steatohepatitis in patients at risk, and the relationship with lipid metabolism and hepatic UCP2 expression. Methods We considered 688 Italian patients who underwent liver biopsy for suspected NASH, and 232 healthy controls. The UCP2 −866 G>A polymorphism was determined by allele specific oligonucleotide probes, hepatic UCP2 mRNA levels …

AdultMalemedicine.medical_specialtyGenotypeRespiratory chainGene ExpressionBiologyIon ChannelsMitochondrial Proteinsgenetic polymorphism; lipid metabolism;liver; mitochondria; nonalcoholic steatohepatitis; uncoupling protein-2Insulin resistanceNon-alcoholic Fatty Liver DiseaseRisk FactorsDiabetes mellitusInternal medicineGenotypemedicineHumansUncoupling Protein 2Promoter Regions GeneticUncoupling protein-2AllelesAgedPolymorphism GeneticGenetic polymorphismmedicine.diagnostic_testHepatologyLipid metabolismMiddle Agedmedicine.diseaseImpaired fasting glucoseMitochondriaEndocrinologyLogistic ModelsLipid metabolismLiverLiver biopsyCase-Control StudiesFemaleSteatosisInsulin ResistanceNonalcoholic steatohepatiti
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Modulation of adrenergic responses of human vas deferens by K+ channel inhibitors.

2010

Objectives The present study was designed to evaluate the role of K + channels in the adrenergic responses of human vas deferens as well as the intervention of dihydropyridine-sensitive Ca 2+ channels on modulation of adrenergic responses by K + channel inhibitors. Methods Ring segments of the epididymal part of the vas deferens were taken from 32 elective vasectomies and mounted in organ baths for isometric recording of tension. We then studied the effects of K + channel blockers on neurogenic and norepinephrine-induced contractile responses. Results Addition of tetraethylammonium (TEA, 10 −3 M), a nonspecific K + channel blocker, or charybdotoxin (10 −7 M), a nonselective inhibitor of lar…

AdultMalemedicine.medical_specialtyPotassium ChannelsCharybdotoxinCalcium Channels L-TypeCharybdotoxinNifedipineUrologyAdrenergicApaminGlibenclamidechemistry.chemical_compoundNorepinephrineVas DeferensNifedipineInternal medicineReceptors Adrenergic alpha-1GlyburidePotassium Channel BlockersMedicineHumansChannel blockerTetraethylammoniumIon Transportbusiness.industryVas deferensTetraethylammoniumMuscle SmoothElectric StimulationEndocrinologymedicine.anatomical_structurechemistryApaminPotassiumCalciumbusinessPeptidesmedicine.drugMuscle ContractionUrology
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Nitric oxide mediates abnormal responsiveness of thyroid arteries in methimazole-treated patients.

2005

Objective: We studied the intervention of nitric oxide (NO), prostacyclin and endothelium-derived hyperpolarizing factor (EDHF) in mediating responses to acetylcholine in thyroid arteries from euthyroid and methimazole-treated (MT) patients. Design and methods: Branches of the superior thyroid artery were obtained from 19 euthyroid patients and 17 MT patients (euthyroid at the time of surgery) undergoing total thyroidectomy or hemithyroidectomy. Artery rings were suspended in organ baths for isometric recording of tension. Results and conclusions: Acetylcholine caused endothelium-dependent relaxation of greater magnitude in arteries from MT patients (pD2 (−log EC50) values were 7.68±0.19 in…

AdultMalemedicine.medical_specialtyPotassium ChannelsCharybdotoxinEndocrinology Diabetes and MetabolismMuscle RelaxationThyroid GlandApaminNitric OxideHyperthyroidismMuscle Smooth VascularSuperior thyroid arterychemistry.chemical_compoundBiological FactorsNorepinephrineEndocrinologyAntithyroid AgentsInternal medicinemedicine.arterymedicinePotassium Channel BlockersHumansEuthyroidEnzyme InhibitorsMethimazoleomega-N-Methylargininebusiness.industryThyroidGeneral MedicineArteriesMiddle AgedAcetylcholinemedicine.anatomical_structureEndocrinologychemistryApaminCirculatory systemPotassiumCalciumFemaleEndothelium VascularNitric Oxide SynthasebusinessAcetylcholinemedicine.drugBlood vesselArteryEuropean journal of endocrinology
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Contractile Response of Human Omental Arteries to Endothelin

1992

Abstract The effects of endothelin have been studied in isolated arterial segments (0·8–1 mm in external diam.) of human omental arteries obtained during the course of abdominal operations (15 patients, 7 men and 8 women). Paired segments, one normal and the other de-endothelized, were mounted for isometric recording of tension in organ baths. Endothelin produced concentration-dependent contractions with an EC50 value of 5·4 × 10−9  m. Removal of endothelium did not affect significantly endothelin-induced contractions (EC50, 6·7 × 10−9  m). Removal of extracellular calcium or addition of the calcium channel blocker nicardipine (10−6  m) diminished but did not abolish responses to endothelin…

AdultMalemedicine.medical_specialtymedicine.drug_classNicardipinePharmaceutical Sciencechemistry.chemical_elementCalcium channel blockerIn Vitro TechniquesCalciumBiologyMuscle Smooth VascularNicardipineInternal medicinemedicineHumansAgedPharmacologyVoltage-dependent calcium channelEndothelinsArteriesAnatomyMiddle AgedElectric StimulationEndocrinologymedicine.anatomical_structurechemistryVasoconstrictionCirculatory systemCalciumFemaleCalcium ChannelsEndothelium Vascularmedicine.symptomEndothelin receptorOmentumMuscle Contractionmedicine.drugArteryMuscle contractionJournal of Pharmacy and Pharmacology
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Involvement of cholinergic nicotinic receptors in the menthol-induced gastric relaxation.

2014

We have previously demonstrated that menthol reduces murine gastric tone in part through a neural mechanism, involving adrenergic pathways and reduction of ongoing release of acetylcholine from enteric nerves. In the present study we aimed to verify whether the gastric relaxation to menthol may be triggered by interaction with neural receptors or ionic channels proteins, such as transient receptor potential (TRP)-melastatin8 (TRPM8), TRP-ankyrin 1 (TRPA1), 5-hydroxytriptamine 3 (5-HT3) receptor or cholinergic nicotinic receptors. Spontaneous mechanical activity was detected in vitro as changes in intraluminal pressure from isolated mouse stomach. Menthol (0.3-30 mM) induced gastric relaxati…

AgonistMalemedicine.medical_specialtySerotoninmedicine.drug_classDimethylphenylpiperaziniumMuscle RelaxationTRPM Cation ChannelsPharmacologyReceptors NicotinicSettore BIO/09 - Fisiologiachemistry.chemical_compoundMiceGanglion type nicotinic receptorTransient Receptor Potential ChannelsIsothiocyanatesInternal medicinemedicineTRPM8AnimalsSerotonin 5-HT3 Receptor AntagonistsRNA MessengerTRPA1 Cation ChannelPharmacologyStomachmenthol gastric relaxation TRPM8 TRPA1 nicotinic receptorsReceptor antagonistOndansetronMice Inbred C57BLMentholEndocrinologyNicotinic agonistchemistryPurinesHexamethoniumAcetanilidesAlpha-4 beta-2 nicotinic receptorGastrointestinal Motilitymedicine.drugEuropean journal of pharmacology
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Structural Mechanism of N-Methyl-D-Aspartate Receptor Type 1 Partial Agonism

2012

N-methyl-D-aspartate (NMDA) receptors belong to a family of ionotropic glutamate receptors that contribute to the signal transmission in the central nervous system. NMDA receptors are heterotetramers that usually consist of two GluN1 and GluN2 monomers. The extracellular ligand-binding domain (LBD) of a monomer is comprised of discontinuous segments that form the functional domains D1 and D2. While the binding of a full agonist glycine to LBD of GluN1 is linked to cleft closure and subsequent ion-channel opening, partial agonists are known to activate the receptor only sub-maximally. Although the crystal structures of the LBD of related GluA2 receptor explain the mechanism for the partial a…

AgonistProtein Structuremedicine.drug_classGlycineMolecular ConformationBiophysicslcsh:MedicineMolecular Dynamics SimulationLigandsta3111Receptors N-Methyl-D-AspartateBiochemistryBiophysics Simulationsta3112Partial agonistIon ChannelsChemical BiologyMacromolecular Structure AnalysismedicineBiomacromolecule-Ligand Interactionslcsh:ScienceReceptorBiologyta116Ion channelCrystallographyMultidisciplinaryChemistrylcsh:Rta1182Glutamate receptorProteinsComputational BiologyNeurotransmittersProtein Structure TertiaryTransmembrane ProteinsBiochemistryCycloserineBiophysicsNMDA receptorLigand-gated ion channellcsh:Qhormones hormone substitutes and hormone antagonistsProtein BindingResearch ArticleNeuroscienceIonotropic effectPLoS ONE
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5-HT3 receptor-channels coupled with Na+ influx in human T cells: role in T cell activation.

1999

The study was conducted on a human (Jurkat) T cell line, loaded with a Na+ fluorescent probe, SBFI/AM. Serotonin and an agonist of 5-HT3 receptor-channels, 2-methyl-5HT, evoked Na+ influx, whereas the agonists of other serotonergic receptor subtypes, i.e., 5-HT1A and 5-HT1B receptors, failed to induce Na+ influx in these cells. By using 3H-BRL43694, an agonist of 5-HT3 receptor-channels, we characterized 5-HT3 lymphocyte receptors which exhibited a density (Bmax) of 300 +/- 20 fmol/10(6) cells and a Kd of 30 nM in Jurkat T cells. The T-cell 5-HT3 receptor-channel is not regulated either by the protein kinase C or by the free intracellular calcium concentrations as the agents known to activa…

AgonistSerotoninmedicine.drug_classMetoclopramideT cellT-LymphocytesImmunologyBiologyLymphocyte ActivationJurkat cellsCalcium in biologyPiperazinesSodium ChannelsGranisetronJurkat CellsQuinoxalinesmedicineImmunology and AllergyHumansCalcium SignalingPhytohemagglutininsReceptorProtein kinase C5-HT receptorProtein Kinase C8-Hydroxy-2-(di-n-propylamino)tetralinIon TransportRyanodineCell CycleSodiumCell biologyNeoplasm ProteinsSerotonin Receptor AgonistsEnzyme Activationmedicine.anatomical_structureNeurologyReceptors SerotoninReceptor Serotonin 5-HT1BThapsigarginNeurology (clinical)Serotonin AntagonistsReceptors Serotonin 5-HT3Ion Channel GatingReceptors Serotonin 5-HT1IntracellularJournal of neuroimmunology
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Conductance and Ion Selectivity of a Mesoscopic Protein Nanopore Probed with Cysteine Scanning Mutagenesis

2005

Nanometer-scale proteinaceous pores are the basis of ion and macromolecular transport in cells and organelles. Recent studies suggest that ion channels and synthetic nanopores may prove useful in biotechnological applications. To better understand the structure-function relationship of nanopores, we are studying the ion-conducting properties of channels formed by wild-type and genetically engineered versions of Staphylococcus aureus alpha-hemolysin (alphaHL) reconstituted into planar lipid bilayer membranes. Specifically, we measured the ion selectivities and current-voltage relationships of channels formed with 24 different alphaHL point cysteine mutants before and after derivatizing the c…

AnionsModels MolecularStaphylococcus aureusCell Membrane PermeabilityBacterial ToxinsLipid BilayersAnalytical chemistryBiophysics02 engineering and technologyIonHemolysin ProteinsStructure-Activity Relationship03 medical and health sciencesCationsNanotechnologyCysteineChannels Receptors and Electrical SignalingLipid bilayerIon channel030304 developmental biologyIons0303 health sciencesChemistrySulfhydryl ReagentsConductance021001 nanoscience & nanotechnologyElectrostaticsElectrophysiologyNanoporeMembraneMutagenesisMutagenesis Site-DirectedBiophysicsGenetic Engineering0210 nano-technologySelectivityBiotechnologyBiophysical Journal
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Facilitated Anion Transport Induces Hyperpolarization of the Cell Membrane That Triggers Differentiation and Cell Death in Cancer Stem Cells

2015

Facilitated anion transport potentially represents a powerful tool to modulate various cellular functions. However, research into the biological effects of small molecule anionophores is still at an early stage. Here we have used two potent anionophore molecules inspired in the structure of marine metabolites tambjamines to gain insight into the effect induced by these compounds at the cellular level. We show how active anionophores, capable of facilitating the transmembrane transport of chloride and bicarbonate in model phospholipid liposomes, induce acidification of the cytosol and hyperpolarization of plasma cell membranes. We demonstrate how this combined effect can be used against canc…

AnionsPHPhysiologyCellular differentiationTRANSMEMBRANE TRANSPORTChemistry OrganicFisiologiaPROGRESSIONApoptosisNanotechnologyStem cellsBiochemistryCatalysisCell LineMembrane PotentialsCell membraneColloid and Surface ChemistryCancer stem cellBINDINGPathologymedicineHumansSYNTHETIC ION CHANNELSMembrane potentialIon TransportANALOGSChemistryCHLORIDE TRANSPORTCell MembraneApoptosiQuímica orgánicaCell DifferentiationMICROBIOLOGIAGeneral ChemistryHyperpolarization (biology)Membrane transportCARRIERSPatologiaAPOPTOSISCell biologyCytosolmedicine.anatomical_structureLiposomesCancer cellNeoplastic Stem CellsCèl·lules mareJournal of the American Chemical Society
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