Search results for "hyperpolarization"

showing 10 items of 64 documents

Mechanisms underlying hyperpolarization evoked by P2Y receptor activation in mouse distal colon

2006

In murine colonic circular muscle, ATP mediates fast component of the nerve-evoked inhibitory junction potentials, via activation of P2Y receptors and opening of apamin-sensitive Ca2+-dependent K+ channels. We investigated, using microelectrode recordings, the intracellular events following P2Y-receptor activation by electrical field stimulation or by adenosine 5'-O-2-thiodiphosphate (ADPbetaS), ATP stable analogue. The fast-inhibitory junction potential amplitude was reduced by thapsigargin or ciclopiazonic acid (CPA), sarcoplasmic reticulum Ca2+-ATPase inhibitors, by ryanodine, which inhibits Ca2+ release from ryanodine-sensitive stores, and by 9-(tetrahydro-2-furanyl)-9H-purin-6-amine (S…

MaleP2Y receptormedicine.medical_specialtyThapsigarginColonMouse colonBiologyApaminSettore BIO/09 - FisiologiaEnteric inhibitory neurotransmissionAdenylyl cyclaseMicePotassium Channels Calcium-Activatedchemistry.chemical_compoundIntracellular microelectrode recordingReceptors Adrenergic alpha-1Internal medicinemedicineAnimalsCalcium-dependent potassium channelNeuronsPharmacologyModels StatisticalForskolinDose-Response Relationship DrugReceptors Purinergic P2Ryanodine receptorColforsinCalcium storeP2Y receptorHyperpolarization (biology)Inositol trisphosphate receptorElectrophysiologyMice Inbred C57BLEndocrinologychemistryBiophysicsCalciumAdenylyl CyclasesEuropean Journal of Pharmacology
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Elevation in type I interferons inhibits HCN1 and slows cortical neuronal oscillations

2014

Central nervous system (CNS) inflammation involves the generation of inducible cytokines such as interferons (IFNs) and alterations in brain activity, yet the interplay of both is not well understood. Here, we show that in vivo elevation of IFNs by viral brain infection reduced hyperpolarization-activated currents (Ih) in cortical pyramidal neurons. In rodent brain slices directly exposed to type I IFNs, the hyperpolarization-activated cyclic nucleotide (HCN)-gated channel subunit HCN1 was specifically affected. The effect required an intact type I receptor (IFNAR) signaling cascade. Consistent with Ih inhibition, IFNs hyperpolarized the resting membrane potential, shifted the resonance fre…

MalePatch-Clamp TechniquesPotassium Channelsmedicine.medical_treatmentNeocortexInbred C57BLchemistry.chemical_compoundMiceReceptorsHyperpolarization-Activated Cyclic Nucleotide-Gated ChannelsReceptors InterferonMembrane potentialCerebral CortexNeuronsBlottingElectroencephalographyImmunohistochemistryCytokinemedicine.anatomical_structureInterferon Type IInterferonCytokinesSignal transductionWesternmedicine.drugSignal TransductionCognitive NeuroscienceCentral nervous systemBlotting WesternElectrophysiological ProcessesBiologyReal-Time Polymerase Chain ReactionTransfectionCellular and Molecular NeuroscienceCyclic nucleotidemedicineAnimalsHumansComputer SimulationIon channelNeuroinflammationInterferon-betaElectrophysiological PhenomenaRatsMice Inbred C57BLHEK293 CellschemistryNerve NetNeuroscienceInterferon type I
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Development of a Polarizer and Biocompatible Polarizing Agents for Use in Dynamic Nuclear Polarization DNP-Enhanced NMR and MRI

2009

The application of 13C (or other low γ nuclei) NMR spectroscopy and imaging for clinical diagnosis has been constrained by the extremely long imaging and spectroscopy acquisition times that are required to obtain high SNR under physiological conditions (low natural abundance of 13C, low concentration of 13C-compounds, physiological temperature etc.). However, this obstacle could be overcome by in vitro hyperpolarization of a 13C-containing molecule with long spin lattice relaxation time via dynamic nuclear polarization (DNP) and subsequent injection into the animal or patient of investigation [1, 2]. DNP is achieved by resonant excitation of electron spins of radicals (electron paramagnetic…

Materials scienceNuclear magnetic resonancelawSpin–lattice relaxationHyperpolarization (physics)Nuclear magnetic resonance spectroscopyPolarizerMolecular imagingElectron paramagnetic resonanceSpectroscopyExcitationlaw.invention
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Hyperpolarization of cis ‐ 15 N 2 ‐Azobenzene by Parahydrogen at Ultralow Magnetic Fields**

2021

The development of nuclear spins hyperpolarization, and the search for molecules that can be efficiently hyperpolarized is an active area in nuclear magnetic resonance. In this work we present a detailed study of SABRE SHEATH (signal amplification by reversible exchange in shield enabled alignment transfer to heteronuclei) experiments on 15 N2 -azobenzene. In SABRE SHEATH experiments the nuclear spins of the target are hyperpolarized through transfer of spin polarization from parahydrogen at ultralow fields during a reversible chemical process. Azobenzene exists in two isomers, trans and cis. We show that all nuclear spins in cis-azobenzene can be efficiently hyperpolarized by SABRE at suit…

Materials scienceSpin statesSpinsSpin polarization02 engineering and technology010402 general chemistry021001 nanoscience & nanotechnologySpin isomers of hydrogen01 natural sciences7. Clean energyAtomic and Molecular Physics and Optics0104 chemical sciences3. Good healthchemistry.chemical_compoundMagnetizationAzobenzenechemistryHyperpolarization (physics)Singlet statePhysical and Theoretical ChemistryAtomic physics0210 nano-technologyChemPhysChem
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Nonlinear conductance and heterogeneity of voltage-gated ion channels allow defining electrical surface domains in cell membranes

2015

Abstract The membrane potential of a cell measured by typical electrophysiological methods is only an average magnitude and experimental techniques allowing a more detailed mapping of the cell surface have shown the existence of spatial domains with locally different electric potentials and currents. Electrical potentials in non-neural cells are regulated by the nonlinear conductance of membrane ion channels. Voltage-gated potassium channels participate in cell hyperpolarization/depolarization processes and control the electrical signals over the cell surface, constituting good candidates to study basic biological questions on a more simplified scale than the complex cell membrane. These ch…

Membrane potentialMaterials scienceVoltage-gated ion channelThreshold potentialVoltage clampBiophysicsStatistical and Nonlinear PhysicsDepolarizationGatingHyperpolarization (biology)Condensed Matter PhysicsIon channelPhysica D: Nonlinear Phenomena
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Membrane potential bistability in nonexcitable cells as described by inward and outward voltage-gated ion channels.

2014

The membrane potential of nonexcitable cells, defined as the electrical potential difference between the cell cytoplasm and the extracellular environment when the current is zero, is controlled by the individual electrical conductance of different ion channels. In particular, inward- and outward-rectifying voltage-gated channels are crucial for cell hyperpolarization/depolarization processes, being amenable to direct physical study. High (in absolute value) negative membrane potentials are characteristic of terminally differentiated cells, while low membrane potentials are found in relatively depolarized, more plastic cells (e.g., stem, embryonic, and cancer cells). We study theoretically t…

Membrane potentialVoltage-gated ion channelChemistryVoltage clampCellsAnalytical chemistrymembrane potentialsDepolarizationVoltage-gated potassium channelHyperpolarization (biology)Resting potentialModels BiologicalIon ChannelsSurfaces Coatings and FilmsMembrane PotentialsKineticsMaterials ChemistryBiophysicsvoltage gated ion channelsPhysical and Theoretical Chemistrynon-excitable cellsIon channelThe journal of physical chemistry. B
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Discoordinate regulation of different K channels in cultured rat skeletal muscle by nerve growth factor

1999

We investigated the effects of nerve growth factor (NGF) on expression of K+ channels in cultured skeletal muscle. The channels studied were (1) charybdotoxin (ChTx)-sensitive channels by using a polyclonal antibody raised in rabbits against ChTx, (2) Kv1.5 voltage-sensitive channels, and (3) apamin-sensitive (afterhyperpolarization) channels. Crude homogenates were prepared from cultures made from limb muscles of 1-2-day-old rat pups for identification of ChTx-sensitive and Kv1.5 channels by Western blotting techniques. Apamin-sensitive K+ channels were studied by measurement of specific [125I]-apamin binding by whole cell preparations. ChTx-sensitive channels display a fusion-related incr…

Membrane potentialmedicine.medical_specialtyBK channelCharybdotoxinT-type calcium channelAfterhyperpolarizationHyperpolarization (biology)BiologyCell biologySK channelCellular and Molecular Neurosciencechemistry.chemical_compoundEndocrinologychemistryInternal medicinemedicinebiology.proteinMyocyteJournal of Neuroscience Research
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Hyperpolarized 1H long lived states originating from parahydrogen accessed by rf irradiation

2013

Hyperpolarization has found many applications in Nuclear Magnetic Resonance (NMR) and Magnetic Resonance Imaging (MRI). However, its usage is still limited to the observation of relatively fast processes because of its short lifetimes. This issue can be circumvented by storing the hyperpolarization in a slowly relaxing singlet state. Symmetrical molecules hyperpolarized by Parahydrogen Induced Hyperpolarization (PHIP) provide a straightforward access to hyperpolarized singlet states because the initial parahydrogen singlet state is preserved at almost any magnetic field strength. In these systems, which show a remarkably long 1H singlet state lifetime of several minutes, the conversion of t…

Models MolecularMagnetic Resonance SpectroscopyCiencias FísicasPhysics::Medical PhysicsGeneral Physics and AstronomySpin isomers of hydrogenOtras Ciencias FísicasLong Lived StatesMagnetizationsymbols.namesakeSinglet stateHyperpolarization (physics)Physical and Theoretical ChemistryTriplet statePHIPChemistryObservableMagnetic fieldParaHydrogenMagnetic FieldsHyperpolarizationAlkynessymbolsCondensed Matter::Strongly Correlated ElectronsHydrogenationAtomic physicsHamiltonian (quantum mechanics)CIENCIAS NATURALES Y EXACTAS
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Rapid hyperpolarization and purification of the metabolite fumarate in aqueous solution

2020

Significance Magnetic resonance imaging is hindered by inherently low sensitivity, which limits the method for the most part to observing water molecules in the body. Hyperpolarized molecules exhibit strongly enhanced MRI signals which opens the door for imaging low-concentration species in vivo. Biomolecules can be hyperpolarized and injected into a patient allowing for metabolism to be tracked in real time, greatly expanding the information available to the radiologist. Parahydrogen-induced polarization (PHIP) is a hyperpolarization method renowned for its low cost and accessibility, but is generally limited by low polarization levels, modest molecular concentrations, and contamination by…

Molar concentrationparahydrogen02 engineering and technologyBiosensing Techniques010402 general chemistry01 natural sciencesChemical reaction41003 medical and health sciences0302 clinical medicineFumaratesHyperpolarization (physics)Carbon-13 Magnetic Resonance SpectroscopyPolarization (electrochemistry)DissolutionhyperpolarizationBiomarker; Hyperpolarization; Metabolism; MRI; Parahydrogen; Fumarates; Molecular Imaging; Solutions; Water; Biosensing Techniques; Carbon-13 Magnetic Resonance Spectroscopychemistry.chemical_classificationParahydrogenMultidisciplinaryAqueous solutionChemistryBiomolecule500WaterBiomarker021001 nanoscience & nanotechnologyCombinatorial chemistryMolecular Imaging0104 chemical sciencesSolutionsSolventChemistryHyperpolarizationMetabolism030220 oncology & carcinogenesisReagentPhysical Sciencesbiomarkerddc:5000210 nano-technologymetabolismBiosensorMRI
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Electrophysiological Analysis of Effects of Exogenous and Endogenous Adenosine in Hippocampal Slices

1988

Little doubt remains that adenosine serves a modulatory role in the nervous system (Sattin and Rail, 1970; Shimizu and Daly, 1970; Fredholm and Hedqvist, 1980; Phillis and Wu, 1981; Stone, 1981; Daly et al., 1984; Dunwiddie, 1985). While electrophysiologically active concentrations of adenosine have been found in the extracellular fluid, the source and control of the levels of this active adenosine are unclear. There are indications that adenosine is released (or coreleased) from synaptic endings, fulfilling a typical transmitter role (Burnstock, 1975, 1981; Nagy et al., 1986). A synaptic hyperpolarization in autonomic neurons has been identified as an adenosine-mediated potential (Akasu et…

Nervous systemElectrophysiologymedicine.anatomical_structureChemistrymedicineEndogenyPopulation spikeHippocampal formationHyperpolarization (biology)Inhibitory postsynaptic potentialAdenosineNeurosciencemedicine.drug
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