Search results for "Giant depolarizing potentials"

showing 4 items of 4 documents

2019

The effects of ionotropic γ-aminobutyric acid receptor (GABA-A, GABAA) activation depends critically on the Cl−-gradient across neuronal membranes. Previous studies demonstrated that the intracellular Cl−-concentration ([Cl−]i) is not stable but shows a considerable amount of activity-dependent plasticity. To characterize how membrane properties and different molecules that are directly or indirectly involved in GABAergic synaptic transmission affect GABA-induced [Cl−]i changes, we performed compartmental modeling in the NEURON environment. These simulations demonstrate that GABA-induced [Cl−]i changes decrease at higher membrane resistance, revealing a sigmoidal dependency between both par…

0301 basic medicineGABAA receptorChemistryIntracellular pHOrganic ChemistryGeneral MedicineNeurotransmissionCatalysisComputer Science ApplicationsInorganic Chemistry03 medical and health sciences030104 developmental biology0302 clinical medicineMembranenervous systemGiant depolarizing potentialsBiophysicsPhysical and Theoretical ChemistryReceptorMolecular Biology030217 neurology & neurosurgerySpectroscopyIntracellularIonotropic effectInternational Journal of Molecular Sciences
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2018

Giant depolarizing potentials (GDPs) represent a typical spontaneous activity pattern in the immature hippocampus. GDPs are mediated by GABAergic and glutamatergic synaptic inputs and their initiation requires an excitatory GABAergic action, which is typical for immature neurons due to their elevated intracellular Cl- concentration ([Cl-]i). Because GABAA receptors are ligand-gated Cl- channels, activation of these receptors can potentially influence [Cl-]i. However, whether the GABAergic activity during GDPs influences [Cl-]i is unclear. To address this question we performed whole-cell and gramicidin-perforated patch-clamp recordings from visually identified CA3 pyramidal neurons in immatu…

0301 basic medicineChemistryGABAA receptorHippocampusAMPA receptorHippocampal formation03 medical and health sciencesCellular and Molecular Neurosciencechemistry.chemical_compound030104 developmental biology0302 clinical medicinenervous systemGiant depolarizing potentialsExcitatory postsynaptic potentialCNQXBiophysicsGABAergic030217 neurology & neurosurgeryFrontiers in Cellular Neuroscience
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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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Refuting the challenges of the developmental shift of polarity of GABA actions: GABA more exciting than ever!

2012

International audience; During brain development, there is a progressive reduction of intracellular chloride associated with a shift in GABA polarity: GABA depolarizes and occasionally excites immature neurons, subsequently hyperpolarizing them at later stages of development. This sequence, which has been observed in a wide range of animal species, brain structures and preparations, is thought to play an important role in activity-dependent formation and modulation of functional circuits. This sequence has also been considerably reinforced recently with new data pointing to an evolutionary preserved rule. In a recent ``Hypothesis and Theory Article,'' the excitatory action of GABA in early …

GABA; giant depolarizing potentials; energy substrates; brain slices; chloride homeostasis; developmentBrain developmentchloride homeostasisPolarity (physics)energy substratesBiologylcsh:RC321-57103 medical and health sciencesCellular and Molecular NeuroscienceGABA0302 clinical medicineGiant depolarizing potentialsNeuronal damageAnimal speciesDevelopmental neurobiologybooklcsh:Neurosciences. Biological psychiatry. Neuropsychiatrydevelopment030304 developmental biology0303 health sciencesbrain slicesHypothesis and Theory Articledevelopment.Excitatory postsynaptic potentialbook.journal[SDV.NEU]Life Sciences [q-bio]/Neurons and Cognition [q-bio.NC]giant depolarizing potentialsNeuroscience030217 neurology & neurosurgeryNeuroscience
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