0000000000242956

AUTHOR

M. Rodier

showing 4 related works from this author

Exogenous t-PA Administration Increases Hippocampal Mature BDNF Levels. Plasmin- or NMDA-Dependent Mechanism?

2014

International audience; Brain-derived neurotrophic factor (BDNF) through TrkB activation is central for brain functioning. Since the demonstration that plasmin is able to process pro-BDNF to mature BDNF and that these two forms have opposite effects on neuronal survival and plasticity, a particular attention has been paid to the link between tissue plasminogen activator (tPA)/plasmin system and BDNF metabolism. However, t-PA via its action on different N-methyl-D-aspartate (NMDA) receptor subunits is also considered as a neuromodulator of glutamatergic transmission. In this context, the aim of our study was to investigate the effect of recombinant (r)t-PA administration on brain BDNF metabo…

MalePlasminlcsh:MedicineTropomyosin receptor kinase BBiochemistryMechanical Treatment of SpecimensHippocampusTissue plasminogen activator[SCCO]Cognitive scienceCell SignalingNeurotrophic factorsNeurobiology of Disease and RegenerationMedicine and Health SciencesMembrane Receptor SignalingFibrinolysinBRAINlcsh:ScienceMultidisciplinaryNeuromodulationNeurotransmitter Receptor SignalingNeurochemistryLong-term potentiationNeurotransmittersDENDRITIC GROWTHNEURONAL DEATHRECEPTORSElectroporationNeurologySpecimen DisruptionTranexamic AcidTissue Plasminogen ActivatorACTIVATORTPANMDA receptor[ SCCO ] Cognitive scienceLONG-TERM POTENTIATIONResearch ArticleSignal Transductionmedicine.drugmedicine.medical_specialtyN-MethylaspartateResearch and Analysis MethodsNeuropharmacologyDevelopmental NeuroscienceInternal medicinemedicineAnimalsReceptor trkBProtein PrecursorsRats WistarSPATIAL MEMORYBrain-derived neurotrophic factorBrain-Derived Neurotrophic Factorlcsh:RBiology and Life SciencesCell BiologySYNAPTIC-PLASTICITYRetractionEndocrinologynervous systemSpecimen Preparation and TreatmentSynaptic plasticitylcsh:QMolecular NeuroscienceDizocilpine MaleateNEUROTROPHIC FACTORNeuroscienceSynaptic PlasticityPLoS ONE
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Ipsilateral versus contralateral spontaneous post-stroke neuroplastic changes: involvement of BDNF?

2013

International audience; Stroke is a leading cause of death and disability in industrialized countries. Although surviving patients exhibit a certain degree of restoration of function attributable to brain plasticity, the majority of stroke survivors has to struggle with persisting deficits. In order to potentiate post-stroke recovery, several rehabilitation therapies have been undertaken and many experimental studies have reported that brain-derived neurotrophic factor (BDNF) is central to many facets of neuroplastic processes. However, although BDNF role in brain plasticity is well characterized through strategies that manipulate its content, the involvement of this neurotrophin in spontan…

MaleTime FactorsSynaptophysinHippocampusTropomyosin receptor kinase BHippocampal formationBrain Ischemia03 medical and health sciences0302 clinical medicineNeurotrophic factorsNeuroplasticitymedicineAnimalsRats WistarStroke030304 developmental biology0303 health sciencesNeuronal PlasticitybiologyGeneral NeuroscienceBrain-Derived Neurotrophic Factor[SCCO.NEUR]Cognitive science/NeuroscienceBrainmedicine.diseaseRatsStrokenervous system[ SCCO.NEUR ] Cognitive science/Neurosciencebiology.proteinSynaptophysinPsychologyNeuroscience030217 neurology & neurosurgeryNeurotrophin
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''Role of rt-pa on bdnf metabolism in stroke''

2012

Rodier, M. | Mossiat, C. | Marie, C. | Garnier, P.; International audience

[SCCO.NEUR]Cognitive science/Neuroscience[SCCO.NEUR] Cognitive science/Neuroscience[ SCCO.NEUR ] Cognitive science/Neuroscience
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''Ipsilateral vs. contralateral post-stroke neuroplastic changes: involvement of BDNF?''

2013

Madinier, A. | Rodier, M. | Quirie, A. | Bertrand, N. | Mossiat, C. | Marie, C. | Garnier, P.; International audience

[SCCO.NEUR]Cognitive science/Neuroscience[ SCCO.NEUR ] Cognitive science/Neuroscience[SCCO.NEUR] Cognitive science/Neuroscience
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