Search results for "Reversal potential"

showing 10 items of 10 documents

Coincident Activation of Glutamate Receptors Enhances GABAA Receptor-Induced Ionic Plasticity of the Intracellular Cl−-Concentration in Dissociated N…

2019

Massive activation of γ-amino butyric acid A (GABAA) receptors during pathophysiological activity induces an increase in the intracellular Cl−-concentration ([Cl−]i), which is sufficient to render GABAergic responses excitatory. However, to what extent physiological levels of GABAergic activity can influence [Cl−]i is not known. Aim of the present study is to reveal whether moderate activation of GABAA receptors mediates functionally relevant [Cl−]i changes and whether these changes can be augmented by coincident glutamatergic activity. To address these questions, we used whole-cell patch-clamp recordings from cultured cortical neurons [at days in vitro (DIV) 6–22] to determine changes in t…

0301 basic medicinedissociated cell cultureKCC2StimulationGABA(A) receptorsreversal potentiallcsh:RC321-57103 medical and health sciencesCellular and Molecular NeuroscienceGlutamatergicchemistry.chemical_compound0302 clinical medicinerheobaseReversal potentialionic plasticitylcsh:Neurosciences. Biological psychiatry. NeuropsychiatrymouseOriginal ResearchChemistryGABAA receptorGlutamate receptor030104 developmental biologyMuscimolCellular NeuroscienceBiophysicsExcitatory postsynaptic potentialCl−-homeostasisGABAergic030217 neurology & neurosurgeryFrontiers in Cellular Neuroscience
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Membrane potential of rat calvaria bone cells: dependence on temperature.

1990

The membrane potentials of bone cells derived from calvaria of new born rats was shown to be strongly dependent on temperature. When we lowered the temperature from 36 degrees C to 26 degrees C, cells with spontaneous resting membrane potentials (MP) of -80 to -50 mV depolarized (mean amplitude 8 mV; n = 33), and the membrane resistance increased by approximately 80% (n = 20). The temperature response depended on the actual MP, the reversal potential being in the range of -80 to -90 mV. With the application of ouabain (0.1-1 mmol/liter; n = 12), cells depolarized. Simultaneously, the reversal potential of the temperature response was shifted towards more positive values and approached the a…

PhysiologyClinical BiochemistryCalvariaIn Vitro TechniquesOuabainBone and BonesMembrane PotentialsBone cellExtracellularmedicineAnimalsReversal potentialOuabainCells CulturedMembrane potentialChemistryElectric ConductivityTemperatureDepolarizationCell BiologyAlkaline PhosphataseRatsMembranemedicine.anatomical_structureBiochemistryAnimals NewbornBiophysicsPotassiummedicine.drugJournal of cellular physiology
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Proton conductance of human transient receptor potential-vanilloid type-1 expressed in oocytes of Xenopus laevis and in Chinese hamster ovary cells.

2004

Transient receptor potential-vanilloid type-1 (TRPV1) is a ligand-gated cation channel with preference for divalent cations, especially Ca(2+) (sequence of conductances: Ca(2+)Mg(2+)Na(+) approximately/= K(+) approximately/= Cs(+)). In the present study, the two-electrode voltage-clamp technique was used on oocytes of Xenopus laevis expressing TRPV1 to evaluate whether human TRPV1 also conducts protons. In medium devoid of K(+), Na(+), Mg(2+), and Ca(2+), capsaicin 1 microM induced a significant inward current (62% of the current in physiological medium). The effects of capsaicin were abolished in the presence of capsazepine 3 microM. The capsaicin-induced currents in medium devoid of Na(+)…

medicine.medical_specialtyPatch-Clamp TechniquesReceptors DrugTRPV1XenopusHamsterAction PotentialsCHO CellsDivalentchemistry.chemical_compoundXenopus laevisCricetulusInternal medicineCricetinaemedicineAnimalsHumansCloning MolecularReversal potentialchemistry.chemical_classificationMembrane potentialbiologyGeneral NeuroscienceChinese hamster ovary cellbiology.organism_classificationElectrophysiologyEndocrinologychemistryBiophysicsOocyteslipids (amino acids peptides and proteins)FemaleCapsaicinProtonsCapsazepineNeuroscience
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Commentary: "Nitric oxide releases Cl(-) from acidic organelles in retinal amacrine cells".

2015

In their recent article (Krishnan and Gleason, 2015) Vijai Krishnan and Evanna Gleason investigate the cellular mechanisms underlying the shift in the GABA reversal potential upon application of nitric oxide (NO). Functional alteration in GABAergic signaling by alterations in the GABA reversal potential has been identified as an important mechanism of plasticity (Raimondo et al., 2012) and NO is clearly one key substance involved in plasticity (Prast and Philippu, 2001). Therefore, the investigation of the mechanisms behind the NO induced shift in GABAergic effects is an important issue. However, in my opinion the authors neglected a possible explanation of their observations in the discuss…

GABAA receptorGeneral CommentaryBafilomycinBiologylcsh:RC321-571Cellular and Molecular Neurosciencechemistry.chemical_compoundCytosolGABAchemistryBiochemistrychloride channelsnitric oxideChloride channelExtracellularBiophysicsGABAergicshort term plasticityReversal potentialnitritelcsh:Neurosciences. Biological psychiatry. NeuropsychiatryIntracellularamacrine cellNeuroscienceFrontiers in cellular neuroscience
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Single mechano-gated channels activated by mechanical deformation of acutely isolated cardiac fibroblasts from rats

2010

Aim Mechanosensitive conductances were reported in cardiac fibroblasts, but the properties of single channels mediating their mechanosensitivity remain uncharacterized. The aim of this work was to investigate single mechano-gated channels (MGCs) activated by mechanical deformations of cardiac fibroblasts. Methods Currents through single MGCs and mechanosensitive whole-cell currents were recorded from isolated rat atrial fibroblasts using the cell-attached and whole-cell patch-clamp configurations respectively. Defined mechanical stress was applied via the patch pipette used for the whole-cell recordings. Results Under resting conditions occasional short openings of two types of single MGCs …

MaleCytochalasin DPatch-Clamp TechniquesPhysiologyCell SeparationIon Channelschemistry.chemical_compoundPressureAnimalsMyocyteMyocytes CardiacHeart AtriaPatch clampReversal potentialCell ShapeNucleic Acid Synthesis InhibitorsCytochalasin DPipetteAnatomyFibroblastsElectric StimulationRatsElectrophysiologySolutionsCoupling (electronics)ElectrophysiologychemistryBiophysicsMechanosensitive channelsColchicineIon Channel GatingActa Physiologica
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Cl−uptake promoting depolarizing GABA actions in immature rat neocortical neurones is mediated by NKCC1

2004

GABA is the principal inhibitory neurotransmitter in the mature brain, but during early postnatal development the elevated [Cl−]i in immature neocortical neurones causes GABAA receptor activation to be depolarizing. The molecular mechanisms underlying this intracellular Cl− accumulation remain controversial. Therefore, the GABA reversal potential (EGABA) or [Cl−]i in early postnatal rat neocortical neurones was measured by the gramicidin-perforated patch-clamp method, and the relative expression levels of the cation−Cl− cotransporter mRNAs (in the same cells) were examined by semiquantitative single-cell multiplex RT-PCR to look for statistical correlations with [Cl−]i. The mRNA expression …

medicine.medical_specialtyNeocortexPhysiologyGABAA receptorDepolarizationBiologygamma-Aminobutyric acidEndocrinologymedicine.anatomical_structureGiant depolarizing potentialsInternal medicinemedicinePatch clampCotransporterReversal potentialmedicine.drugThe Journal of Physiology
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Intracellular ion signaling influences myelin basic protein synthesis in oligodendrocyte precursor cells

2016

Myelination in the central nervous system depends on axon-oligodendrocyte precursor cell (OPC) interaction. We suggest that myelin synthesis may be influenced by [Na+]i and [Ca2+]i signaling in OPCs. Experiments were performed in mouse cultured OPCs at day in vitro (DIV) 2-6 or acute slices of the corpus callosum at postnatal days (P) 10-30. Synthesis of Myelin Basic Protein (MBP), an "executive molecule of myelin", was used as readout of myelination. Immunohistological data revealed that MBP synthesis in cultured OPCs starts around DIV4. Transient elevations of resting [Ca2+]i and [Na+]i levels were observed in the same temporal window (DIV4-5). At DIV4, but not at DIV2, both extracellular…

0301 basic medicinePhysiologyOuabainMice03 medical and health sciencesMyelin0302 clinical medicineExtracellularmedicineAnimalsNa+/K+-ATPaseReversal potentialMolecular BiologyCells CulturedIonsMembrane potentialbiologyChemistryStem CellsSodiumMyelin Basic ProteinCell BiologyMyelin basic proteinMice Inbred C57BLOligodendrogliastomatognathic diseases030104 developmental biologymedicine.anatomical_structurenervous systemImmunologybiology.proteinBiophysicsCalcium030217 neurology & neurosurgeryIntracellularSignal Transductionmedicine.drugCell Calcium
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Modelling the spatial and temporal constrains of the GABAergic influence on neuronal excitability

2021

GABA (γ-amino butyric acid) is an inhibitory neurotransmitter in the adult brain that can mediate depolarizing responses during development or after neuropathological insults. Under which conditions GABAergic membrane depolarizations are sufficient to impose excitatory effects is hard to predict, as shunting inhibition and GABAergic effects on spatiotemporal filtering of excitatory inputs must be considered. To evaluate at which reversal potential a net excitatory effect was imposed by GABA (EGABAThr), we performed a detailed in-silico study using simple neuronal topologies and distinct spatiotemporal relations between GABAergic and glutamatergic inputs. These simulations revealed for GABAe…

Patch-Clamp TechniquesAction potentialPhysiologyAction PotentialsSynaptic TransmissionNervous SystemBiochemistryMiceNerve FibersAnimal CellsMedicine and Health SciencesGABAergic NeuronsBiology (General)gamma-Aminobutyric AcidNeuronsMembrane potentialEcologyChemistryPyramidal CellsDepolarizationNeurochemistryNeurotransmittersCA3 Region HippocampalElectrophysiologyReceptors GlutamateComputational Theory and MathematicsModeling and SimulationExcitatory postsynaptic potentialGABAergicAnatomyCellular TypesShunting inhibitionResearch Articlemedicine.drugQH301-705.5Models NeurologicalNeurophysiologyAMPA receptorMembrane Potentialgamma-Aminobutyric acidCellular and Molecular NeuroscienceGlutamatergicSpatio-Temporal AnalysisGeneticsmedicineAnimalsComputer SimulationReceptors AMPAReversal potentialMolecular BiologyEcology Evolution Behavior and SystematicsComputational BiologyBiology and Life SciencesNeural InhibitionDendritesCell BiologyNeuronal DendritesAxonsMice Inbred C57BLAnimals Newbornnervous systemCellular NeuroscienceSynapsesDepolarizationNeuroscienceNeurosciencePLOS Computational Biology
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The relation between neuronal chloride transporter activities, GABA inhibition, and neuronal activity

2020

Abstract The intracellular chloride concentration [Cl−]i in neurons is regulated by a set of transmembrane transporters, with the Cl−-loader NKCC1 and the Cl−-extruder KCC2 as most relevant members. The expression of these transporters is tightly regulated, with the general trend that KCC2 expression is low in immature neurons, which are thus characterized by a high [Cl−]i. As [Cl−]i is the main factor determining the polarity of GABAergic responses, such a high [Cl−]i is related to depolarizing GABAergic responses. However, depolarizing GABAergic responses are not per se excitatory, but can also contribute to shunting inhibition. The excitatory/inhibitory action of GABAergic responses is m…

Action potentialChemistryBiophysicsExcitatory postsynaptic potentialPremovement neuronal activityGABAergicDepolarizationReversal potentialInhibitory postsynaptic potentialShunting inhibition
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Membrane potential of single asymmetric nanopores: Divalent cations and salt mixtures

2019

We study the electric potential difference (membrane potential) that arises across a single-pore membrane which separates two aqueous solutions at different salt concentrations. This potential difference is obtained here as the reversal potential of a conical nanopore, defined as the applied voltage needed to obtain a zero current through the membrane. To this end, different monovalent (LiCl, NaCl, KCl, and CsCl) and divalent (CaCl2, MgCl2, and BaCl2) cations are considered over a wide range of concentrations and salt mixtures for the two asymmetric nanostructure directionalities. The experimental data allows discussing fundamental questions on the interaction of the charges fixed to the po…

Membrane potentialchemistry.chemical_classificationAqueous solutionNanotecnologiaChemistryIonic bondingFiltration and Separation02 engineering and technology010402 general chemistry021001 nanoscience & nanotechnology01 natural sciencesBiochemistry0104 chemical sciencesDivalentNanoporeMembraneChemical physicsGeneral Materials ScienceElectric potentialPhysical and Theoretical Chemistry0210 nano-technologyReversal potentialMaterialsJournal of Membrane Science
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