Search results for "EPILEPSY"

showing 10 items of 420 documents

Molecular Mechanism Involved in the Pathogenesis of Early-Onset Epileptic Encephalopathy

2019

Recent studies have shown that neurologic inflammation may both precipitate and sustain seizures, suggesting that inflammation may be involved not only in epileptogenesis but also in determining the drug-resistant profile. Extensive literature data during these last years have identified a number of inflammatory markers involved in these processes of “neuroimmunoinflammation” in epilepsy, with key roles for pro-inflammatory cytokines such as: IL-6, IL-17 and IL-17 Receptor (IL-17R) axis, Tumor-Necrosis-Factor Alpha (TNF-α) and Transforming-Growth-Factor Beta (TGF-β), all responsible for the induction of processes of blood-brain barrier (BBB) disruption and inflammation of the Central Nervou…

0301 basic medicineCentral nervous systemInflammationContext (language use)ReviewEpileptogenesisNOlcsh:RC321-571pathogenic mechanismsPathogenesis03 medical and health sciencesCellular and Molecular NeuroscienceEpilepsy0302 clinical medicineImmune systemMedicinelcsh:Neurosciences. Biological psychiatry. NeuropsychiatryMolecular BiologyPathologicalchildhoodbusiness.industrybiological markermedicine.diseaseepileptic encephalopathy030104 developmental biologymedicine.anatomical_structureinflammationmedicine.symptombusinessNeurosciencebiological markers030217 neurology & neurosurgeryNeurosciencebiological markers epileptic encephalopathy inflammation pathogenic mechanisms childhoodFrontiers in Molecular Neuroscience
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Identification of Protein Complexes Associated with the Usher Syndrome 2C and Epilepsy-Associated Protein VLGR1 Applying Affinity Proteomics

2017

Authors aimed to identify novel VLGR1-associated protein networks to shed light on its integration into signaling pathways and the cellular compartments in which VLGR1 functions using high-resolution affinity proteomics based on tandem affinity purifications (TAPs).

0301 basic medicineChemistryUsher syndromeGenomics02 engineering and technologyComputational biology021001 nanoscience & nanotechnologymedicine.diseaseProteomics03 medical and health sciencesEpilepsy030104 developmental biologymedicineIdentification (biology)Signal transduction0210 nano-technologyProtein networkCellular compartmentGenomics and Computational Biology
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2021

Mutations in TSC1 or TSC2 genes are linked to alterations in neuronal function which ultimately lead to the development of a complex neurological phenotype. Here we review current research on the effects that reduction in TSC1 or TSC2 can produce on the developing neural network. A crucial feature of the disease pathophysiology appears to be an early deviation from typical neurodevelopment, in the form of structural abnormalities. Epileptic seizures are one of the primary early manifestation of the disease in the CNS, followed by intellectual deficits and autism spectrum disorders (ASD). Research using mouse models suggests that morphological brain alterations might arise from the interacti…

0301 basic medicineDiseaseBiologyCatalysisInorganic Chemistry03 medical and health sciencesTuberous sclerosisEpilepsy0302 clinical medicinemedicinePhysical and Theoretical ChemistryMolecular BiologySpectroscopyOrganic ChemistryGlutamate receptorGeneral Medicinemedicine.diseasePhenotypeComputer Science Applications030104 developmental biologymedicine.anatomical_structureAutismTSC1TSC2Neuroscience030217 neurology & neurosurgeryInternational Journal of Molecular Sciences
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Haploinsufficiency of ARFGEF1 is associated with developmental delay, intellectual disability, and epilepsy with variable expressivity

2021

PURPOSE: ADP ribosylation factor guanine nucleotide exchange factors (ARFGEFs) are a family of proteins implicated in cellular trafficking between the Golgi apparatus and the plasma membrane through vesicle formation. Among them is ARFGEF1/BIG1, a protein involved in axon elongation, neurite development, and polarization processes. ARFGEF1 has been previously suggested as a candidate gene for different types of epilepsies, although its implication in human disease has not been well characterized.METHODS: International data sharing, in silico predictions, and in vitro assays with minigene study, western blot analyses, and RNA sequencing.RESULTS: We identified 13 individuals with heterozygous…

0301 basic medicineGeneticsCandidate geneHeterozygoteEpilepsyADP ribosylation factorIn silicoHeterozygote advantageHaploinsufficiency030105 genetics & heredityBiologymedicine.disease03 medical and health sciencesEpilepsy030104 developmental biologyIntellectual DisabilitymedicineGuanine Nucleotide Exchange FactorsHumansGuanine nucleotide exchange factorHaploinsufficiencyGenetics (clinical)MinigeneGenetics in Medicine
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Xq28 duplication includingMECP2in six unreported affected females: what can we learn for diagnosis and genetic counselling?

2017

Duplication of the Xq28 region, involving MECP2 (dupMECP2), has been primarily described in males with severe developmental delay, spasticity, epilepsy, stereotyped movements and recurrent infections. Carrier mothers are usually asymptomatic with an extremely skewed X chromosome inactivation (XCI) pattern. We report a series of six novel symptomatic females carrying a de novo interstitial dupMECP2, and review the 14 symptomatic females reported to date, with the aim to further delineate their phenotype and give clues for genetic counselling. One patient was adopted and among the other 19 patients, seven (37%) had inherited their duplication from their mother, including three mildly (XCI: 70…

0301 basic medicineGeneticsPediatricsmedicine.medical_specialtyGenetic counselingMECP2 duplication syndrome030105 genetics & heredityBiologymedicine.diseaseX-inactivation3. Good healthXq2803 medical and health sciencesEpilepsy0302 clinical medicineGene duplicationGeneticsmedicineAsymptomatic carrierSkewed X-inactivation030217 neurology & neurosurgeryGenetics (clinical)Clinical Genetics
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MicroRNA-22 Controls Aberrant Neurogenesis and Changes in Neuronal Morphology After Status Epilepticus

2018

Prolonged seizures (status epilepticus, SE) may drive hippocampal dysfunction and epileptogenesis, at least partly, through an elevation in neurogenesis, dysregulation of migration and aberrant dendritic arborization of newly-formed neurons. MicroRNA-22 was recently found to protect against the development of epileptic foci, but the mechanisms remain incompletely understood. Here, we investigated the contribution of microRNA-22 to SE-induced aberrant adult neurogenesis. SE was induced by intraamygdala microinjection of kainic acid (KA) to model unilateral hippocampal neuropathology in mice. MicroRNA-22 expression was suppressed using specific oligonucleotide inhibitors (antagomir-22) and ne…

0301 basic medicineKainic acidDendritic spineMicroRNA-22NeurogenesisStatus epilepticusBiologyHippocampal formationEpileptogenesislcsh:RC321-571Mouse model03 medical and health sciencesCellular and Molecular Neurosciencechemistry.chemical_compound0302 clinical medicinemedicinelcsh:Neurosciences. Biological psychiatry. NeuropsychiatryStatus epilepticusMolecular BiologyOriginal ResearchEpilepsyDentate gyrusNeurogenesisBiología y Biomedicina / BiologíaGranule cell3. Good health030104 developmental biologymedicine.anatomical_structurenervous systemchemistrymedicine.symptomNeuroscience030217 neurology & neurosurgeryNeuroscienceFrontiers in Molecular Neuroscience
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Oligodendrocytes control potassium accumulation in white matter and seizure susceptibility

2018

Oligodendrocytes Control Potassium Accumulation in White Matter and Seizure Susceptibility.Larson VA, Mironova Y, Vanderpool KG, Waisman A, Rash JE, Agarwal A, Bergles DE. Elife. 2018 Mar 29;7. pii: e34829. doi: 10.7554/eLife.34829.The inwardly rectifying K+ channel Kir4.1 is broadly expressed by central nervous system glia and deficits in Kir4.1 lead to seizures and myelin vacuolization. However, the role of oligodendrocyte Kir4.1 channels in controlling myelination and K+ clearance in white matter has not been defined. Here, we show that selective deletion of Kir4.1 from oligodendrocyte progenitors or mature oligodendrocytes did not impair their development or disrupt the structure of mye…

0301 basic medicineKir4.1QH301-705.5seizureScienceMice TransgenicGeneral Biochemistry Genetics and Molecular BiologyWhite matterMice03 medical and health sciencesEpilepsyMyelin0302 clinical medicineSeizuresmedicineExtracellularAnimalsHomeostasisBiology (General)Potassium Channels Inwardly RectifyingProgenitor cellMyelin SheathMice KnockoutGeneral Immunology and MicrobiologyChemistryGeneral NeuroscienceQRGeneral Medicinemedicine.diseaseWhite MatterCurrent Literature in Basic ScienceOligodendrocyteCell biologymyelinOligodendroglia030104 developmental biologymedicine.anatomical_structureVacuolizationPotassiumepilepsyMedicineoligodendrocyteGene Deletion030217 neurology & neurosurgeryHomeostasiseLife
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De novo mutations in the X-linked TFE3 gene cause intellectual disability with pigmentary mosaicism and storage disorder-like features

2020

IntroductionPigmentary mosaicism (PM) manifests by pigmentation anomalies along Blaschko’s lines and represents a clue toward the molecular diagnosis of syndromic intellectual disability (ID). Together with new insights on the role for lysosomal signalling in embryonic stem cell differentiation, mutations in the X-linked transcription factor 3 (TFE3) have recently been reported in five patients. Functional analysis suggested these mutations to result in ectopic nuclear gain of functions.Materials and methodsSubsequent data sharing allowed the clustering of de novo TFE3 variants identified by exome sequencing on DNA extracted from leucocytes in patients referred for syndromic ID with or with…

0301 basic medicineMESH: Basic Helix-Loop-Helix Leucine Zipper Transcription Factors[SDV.NEU.NB]Life Sciences [q-bio]/Neurons and Cognition [q-bio.NC]/NeurobiologyIntellectual disabilityTFE3Biology[SDV.GEN.GH] Life Sciences [q-bio]/Genetics/Human geneticsMESH: Intellectual Disability03 medical and health sciencesExon0302 clinical medicineMESH: Whole Exome SequencingMESH: ChildIntellectual disabilityGeneticsmedicineMissense mutationGeneGenetics (clinical)Exome sequencingPigmentary mosaicismMESH: Pathology MolecularGeneticsMESH: AdolescentMESH: HumansAlternative splicingLysosomal metabolismMESH: Child Preschool[SDV.NEU.NB] Life Sciences [q-bio]/Neurons and Cognition [q-bio.NC]/NeurobiologyMESH: Adultmedicine.diseasePhenotypeMESH: InfantMESH: MaleTFE3Storage disorder030104 developmental biologyMESH: Genes X-Linked[SDV.GEN.GH]Life Sciences [q-bio]/Genetics/Human geneticsMESH: Young AdultMESH: EpilepsyMESH: MosaicismMESH: Pigmentation DisordersMESH: Female030217 neurology & neurosurgery
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Further delineation of the clinical spectrum of de novo TRIM8 truncating mutations.

2018

IF 2.264; International audience; De novo mutations of the TRIM8 gene, which codes for a tripartite motif protein, have been identified using whole exome sequencing (WES) in two patients with epileptic encephalopathy (EE), but these reports were not sufficient to conclude that TRIM8 was a novel gene responsible for EE. Here we report four additional patients presenting with EE and de novo truncating mutations of TRIM8 detected by WES, and give further details of the patient previously reported by the Epi4K consortium. Epilepsy of variable severity was diagnosed in children aged 2 months to 3.5 years of age. All patients had developmental delay of variable severity with no or very limited la…

0301 basic medicineMaleAdolescentNerve Tissue ProteinsBioinformaticswhole exome sequencing03 medical and health sciencesEpilepsyTripartite MotifGeneticsmedicineHumansTRIM8Amino Acid SequenceChildGeneGenetics (clinical)De novo mutationsExome sequencingbusiness.industrynephrotic syndromeEpileptic encephalopathyInfant NewbornInfantmedicine.diseasePhenotype3. Good health030104 developmental biologyepileptic encephalopathy[SDV.GEN.GH]Life Sciences [q-bio]/Genetics/Human geneticsChild PreschoolMutationFemalebusinessCarrier ProteinsNephrotic syndromeAmerican journal of medical genetics. Part A
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Lipoprotein receptor loss in forebrain radial glia results in neurological deficits and severe seizures.

2020

The Alzheimer disease-associated multifunctional low-density lipoprotein receptor-related protein-1 is expressed in the brain. Recent studies uncovered a role of this receptor for the appropriate functioning of neural stem cells, oligodendrocytes, and neurons. The constitutive knock-out (KO) of the receptor is embryonically lethal. To unravel the receptors' role in the developing brain we generated a mouse mutant by specifically targeting radial glia stem cells of the dorsal telencephalon. The low-density lipoprotein receptor-related protein-1 lineage-restricted KO female and male mice, in contrast to available models, developed a severe neurological phenotype with generalized seizures duri…

0301 basic medicineMaleEpendymoglial CellsBiology03 medical and health sciencesCellular and Molecular NeuroscienceEpilepsyMice0302 clinical medicineProsencephalonSeizuresmedicineAnimalsReceptors LipoproteinLipoprotein receptor-related proteinmedicine.diseaseNeural stem cellLipoproteins LDL030104 developmental biologymedicine.anatomical_structureNeurologyAstrocytesTissue Plasminogen ActivatorForebrainFemaleSynaptic signalingStem cellPostsynaptic densityNeuroscience030217 neurology & neurosurgeryAstrocyteGliaREFERENCES
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