0000000000200776

AUTHOR

Yasmina Curto

showing 7 related works from this author

Streptozotocin diabetic mice display depressive-like behavior and alterations in the structure, neurotransmission and plasticity of medial prefrontal…

2015

Diabetes mellitus patients are at increased risk of developing depression, although the neurobiological bases of this comorbidity are not yet fully understood. These patients show CNS alterations, similar to those found in major depression, including changes in the structure and neurotransmission of excitatory neurons. However, although depressive patients and animal models also display alterations in inhibitory networks, little is known about the effects of diabetes on interneurons. Our main objective was to study the impact of diabetes on interneurons of the medial prefrontal cortex (mPFC), one of the regions most affected by major depression. For this purpose we have induced diabetes wit…

Malemedicine.medical_specialtyInterneuronGlutamate decarboxylaseGreen Fluorescent ProteinsSynaptophysinPrefrontal CortexMice TransgenicNeural Cell Adhesion Molecule L1NeurotransmissionInhibitory postsynaptic potentialSynaptic TransmissionDiabetes Mellitus ExperimentalInterneuronsInternal medicinemedicineAnimalsPrefrontal cortexDepressive DisorderNeuronal PlasticitybiologyGlutamate Decarboxylasemusculoskeletal neural and ocular physiologyGeneral NeuroscienceDendritesTail suspension testEndocrinologymedicine.anatomical_structurenervous systemExcitatory postsynaptic potentialSynaptophysinbiology.proteinSialic AcidsPsychologyNeuroscienceBrain research bulletin
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Chronic benzodiazepine treatment decreases spine density in cortical pyramidal neurons.

2015

The adult brain retains a substantial capacity for synaptic reorganization, which includes a wide range of modifications from molecular to structural plasticity. Previous reports have demonstrated that the structural remodeling of excitatory neurons seems to occur in parallel to changes in GABAergic neurotransmission. The function of neuronal inhibitory networks can be modified through GABAA receptors, which have a binding site for benzodiazepines (BZ). Although BZs are among the most prescribed drugs, is not known whether they modify the structure and connectivity of pyramidal neurons. In the present study we wish to elucidate the impact of a chronic treatment of 21 days with diazepam (2mg…

0301 basic medicineCingulate cortexMaleDendritic spineDendritic SpinesPrefrontal CortexMice TransgenicBiologyInhibitory postsynaptic potential03 medical and health sciences0302 clinical medicinePostsynaptic potentialAnimalsGABA-A Receptor AgonistsDiazepamBehavior AnimalDose-Response Relationship DrugGABAA receptorGeneral NeurosciencePyramidal Cellsfood and beveragesLong-term potentiation030104 developmental biologynervous systemExcitatory postsynaptic potentialGABAergicNeuroscience030217 neurology & neurosurgeryNeuroscience letters
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Functional hypoxia drives neuroplasticity and neurogenesis via brain erythropoietin.

2020

Erythropoietin (EPO), named after its role in hematopoiesis, is also expressed in mammalian brain. In clinical settings, recombinant EPO treatment has revealed a remarkable improvement of cognition, but underlying mechanisms have remained obscure. Here, we show with a novel line of reporter mice that cognitive challenge induces local/endogenous hypoxia in hippocampal pyramidal neurons, hence enhancing expression of EPO and EPO receptor (EPOR). High-dose EPO administration, amplifying auto/paracrine EPO/EPOR signaling, prompts the emergence of new CA1 neurons and enhanced dendritic spine densities. Single-cell sequencing reveals rapid increase in newly differentiating neurons. Importantly, i…

0301 basic medicineMaleDendritic spineGeneral Physics and AstronomyHippocampal formationVARIANTSADULT NEUROGENESIS0302 clinical medicineCognitionhemic and lymphatic diseasesReceptors ErythropoietinHypoxialcsh:ScienceNEURONSMultidisciplinaryNeuronal PlasticityPyramidal CellsNeurogenesisQBrainCell DifferentiationHEMATOPOIETIC PROGENITOR CELLSFemalemedicine.symptomProto-Oncogene Proteins c-fosmedicine.drugEXPRESSIONScienceDendritic SpinesNeurogenesisModels NeurologicalBiologyMotor ActivityGeneral Biochemistry Genetics and Molecular BiologyArticle03 medical and health sciencesParacrine signallingPhysical Conditioning AnimalNeuroplasticitymedicineAnimalsHumansErythropoietinMEMORYCognitive neuroscienceGeneral ChemistryHypoxia (medical)RECOMBINANT-HUMAN-ERYTHROPOIETINCellular neuroscienceErythropoietin receptorMice Inbred C57BLMICE030104 developmental biologyErythropoietinPhysical EnduranceIDENTITYlcsh:QTranscriptomeNeuroscience030217 neurology & neurosurgeryGene Deletion
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Chronic Stress Modulates Interneuronal Plasticity: Effects on PSA-NCAM and Perineuronal Nets in Cortical and Extracortical Regions.

2018

Chronic stress has an important impact on the adult brain. However, most of the knowledge on its effects is focused on principal neurons and less on inhibitory neurons. Consequently, recent reports have begun to describe stress-induced alterations in the structure, connectivity and neurochemistry of interneurons. Some of these changes appear to be mediated by certain molecules particularly associated to interneurons, such as the polysialylated form of the neural cell adhesion molecule (PSA-NCAM) and components of the perineuronal nets (PNN), specialized regions of the extracellular matrix. These plasticity-related molecules modulate interneuronal structure and connectivity, particularly of …

0301 basic medicineInterneuronPSA-NCAMhippocampusHippocampuslcsh:RC321-57103 medical and health sciencesCellular and Molecular Neuroscience0302 clinical medicinemedicineChronic stresslcsh:Neurosciences. Biological psychiatry. NeuropsychiatryOriginal Researchchronic stressreticular thalamic nucleusThalamic reticular nucleusbiologyhabenulaPerineuronal netmusculoskeletal neural and ocular physiology030104 developmental biologymedicine.anatomical_structureHabenulanervous systembiology.proteinperineuronal netNeuroscience030217 neurology & neurosurgeryParvalbuminmedial prefrontal cortexbasolateral amygdalaBasolateral amygdalaNeuroscienceFrontiers in cellular neuroscience
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Brain erythropoietin fine-tunes a counterbalance between neurodifferentiation and microglia in the adult hippocampus

2021

In adult cornu ammonis hippocampi, erythropoietin (EPO) expression drives the differentiation of new neurons,independent of DNA synthesis, and increases dendritic spine density. This substantial brain hardwareupgrade is part of a regulatory circle: during motor-cognitive challenge, neurons experience ‘‘functional’’hypoxia, triggering neuronal EPO production, which in turn promotes improved performance. Here, weshow an unexpected involvement of resident microglia. During EPO upregulation and stimulated neurodifferentiation,either by functional or inspiratory hypoxia, microglia numbers decrease. Treating mice with recombinanthuman (rh)EPO or exposure to hypoxia recapitulates these changes and…

Dendritic spineQH301-705.5Mice TransgenicBiologyHippocampusGeneral Biochemistry Genetics and Molecular BiologyMice03 medical and health sciences0302 clinical medicineDownregulation and upregulationrecombinant human EPOhemic and lymphatic diseasesmedicineAnimalsBiology (General)Hypoxia BrainReceptorErythropoietin030304 developmental biology0303 health sciencesMicrogliahypoxiaPyramidal CellsNeurogenesisneurodifferentiationCell DifferentiationHypoxia (medical)CSF1Rneurogenesismedicine.anatomical_structurenervous systemErythropoietinApoptosisIL-34Microgliamedicine.symptomNeuroscience030217 neurology & neurosurgerymedicine.drug
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Effects of the Genetic Depletion of Polysialyltransferases on the Structure and Connectivity of Interneurons in the Adult Prefrontal Cortex

2019

Polysialic acid (polySia) is a complex sugar that in the nervous system appears mainly as a posttranslational modification of the neural cell adhesion molecule (NCAM). PolySia plays important roles during brain development, but also in its plasticity during adulthood. Two polysialyltransferases (polyST), ST8SIA2 and ST8SIA4, are involved in the synthesis and attachment of polySia. Both polyST are relevant for developmental migration of cortical interneurons and their establishment in the prefrontal cortex (PFC). In contrast, only ST8SIA4 appears to be important for the structural plasticity of a subpopulation of cortical interneurons in the adult. Interestingly, ST8SIA2 and NCAM are candida…

0301 basic medicineNervous systemInterneuronNeuroscience (miscellaneous)Synaptogenesisinterneuronlcsh:RC321-571lcsh:QM1-695polysialic acid (polysia)03 medical and health sciencesCellular and Molecular Neuroscience0302 clinical medicineBasket cellpolysialyltransferasesmedicinePrefrontal cortexlcsh:Neurosciences. Biological psychiatry. NeuropsychiatryOriginal Researchprefrontal cortexbiologyPolysialic acidmusculoskeletal neural and ocular physiologylcsh:Human anatomy030104 developmental biologymedicine.anatomical_structurenervous systembiology.proteinbasket cellNeural cell adhesion moleculeAnatomyNeurosciencedendritic arborization030217 neurology & neurosurgeryParvalbuminNeuroscienceFrontiers in Neuroanatomy
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Early Social Isolation Stress and Perinatal NMDA Receptor Antagonist Treatment Induce Changes in the Structure and Neurochemistry of Inhibitory Neuro…

2017

AbstractThe exposure to aversive experiences during early life influences brain development and leads to altered behavior. Moreover, the combination of these experiences with subtle alterations in neurodevelopment may contribute to the emergence of psychiatric disorders, such as schizophrenia. Recent hypotheses suggest that imbalances between excitatory and inhibitory (E/I) neurotransmission, especially in the prefrontal cortex and the amygdala, may underlie their etiopathology. In order to understand better the neurobiological bases of these alterations, we studied the impact of altered neurodevelopment and chronic early-life stress on these two brain regions. Transgenic mice displaying fl…

Interneuron3PSA-NCAMsocial isolationSynaptophysinPrefrontal CortexMice TransgenicinterneuronNeurotransmissionInhibitory postsynaptic potentialReceptors N-Methyl-D-AspartateSynaptic TransmissionAmygdalastressNeuroplasticitymedicineAnimalsNeurochemistryPrefrontal cortexNeuronsNeuronal PlasticityGeneral Neuroscience3.1General MedicineNew ResearchAmygdalaschizophreniamedicine.anatomical_structureNMDA receptorDisorders of the Nervous SystemDizocilpine MaleatePsychologyNeuroscienceeneuro
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