Search results for "NeuroD"

showing 10 items of 604 documents

Autism and carnitine: A possible link

2019

Patients with autism spectrum disorders (ASD) present deficits in social interactions and communication, they also show limited and stereotypical patterns of behaviors and interests. The pathophysiological bases of ASD have not been defined yet. Many factors seem to be involved in the onset of this disorder. These include genetic and environmental factors, but autism is not linked to a single origin, only. Autism onset can be connected with various factors such as metabolic disorders: including carnitine deficiency. Carnitine is a derivative of two amino acid lysine and methionine. Carnitine is a cofactor for a large family of enzymes: the carnitine acyltransferases. Through their action th…

0301 basic medicineAutismMetabolic homeostasisBioinformatics03 medical and health scienceschemistry.chemical_compound0302 clinical medicineCarnitinemental disordersmedicineDietary supplementationCarnitineMethioninebusiness.industryCarnitine AcyltransferasesMinireviewsmedicine.diseaseMetabolism disorderMetabolism030104 developmental biologychemistry030220 oncology & carcinogenesisPathophysiological basesNeurodevelopmentalAutismbusinessmedicine.drugWorld Journal of Biological Chemistry
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2019

Multiple sclerosis (MS) is a chronic autoimmune disease of the central nervous system (CNS) leading to CNS inflammation and neurodegeneration. Current anti-inflammatory drugs have only limited efficacy on progressive neurodegenerative processes underlining the need to understand immune-mediated neuronal injury. Cell adhesion molecules play an important role for immune cell migration over the blood-brain barrier whereas their role in mediating potentially harmful contacts between invading immune cells and neurons is incompletely understood. Here, we assess the role of the CNS-specific neuronal adhesion molecule ICAM-5 using experimental autoimmune encephalomyelitis (EAE), an animal model of …

0301 basic medicineAutoimmune diseasebusiness.industryMultiple sclerosisExperimental autoimmune encephalomyelitisCentral nervous systemNeurodegenerationmedicine.diseaseNeuroprotection03 medical and health sciences030104 developmental biology0302 clinical medicineImmune systemmedicine.anatomical_structureNeurologyImmunologymedicineNeurology (clinical)business030217 neurology & neurosurgeryNeuroinflammationFrontiers in Neurology
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Lipid peroxidation as measured by chromatographic determination of malondialdehyde. Human plasma reference values in health and disease

2021

Free radicals and oxidants are involved in physiological signaling pathways, although an imbalance between pro-oxidant and anti-oxidant systems in favor of the former leads to major biomolecular damage. This is the so-called oxidative stress, a complex process that affects us all and is responsible for the development of many diseases. Lipids are very sensitive to oxidant attack and to-date, malondialdehyde (MDA), 4-hydroxy-2-nonenal (4-HNE) and F2-isoprostane are the main biomarkers for lipid peroxidation assessment. They all derive from polyunsaturated fatty acids (PUFAs) either by enzyme-catalyzed reactions (physiological) or by non-enzyme reactions (pathological). The profile of PUFAs p…

0301 basic medicineBiophysicsDiseasemedicine.disease_causeBiochemistryLipid peroxidationPulmonary Disease Chronic Obstructive03 medical and health scienceschemistry.chemical_compoundReference ValuesMalondialdehydePhysiology (medical)Diabetes MellitusmedicineHumansExerciseMolecular BiologyChromatography High Pressure Liquidchemistry.chemical_classificationChromatographyFrailty030102 biochemistry & molecular biologyAge FactorsNeurodegenerative DiseasesMalondialdehydeOxidative Stress030104 developmental biologyBiochemistrychemistryHuman plasmaReference valuesBiomarker (medicine)Kidney DiseasesLipid PeroxidationSignal transductionBiomarkersOxidative stressPolyunsaturated fatty acidFree Radical Biology and Medicine
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Sphingolipids and Inositol Phosphates Regulate the Tau Protein Phosphorylation Status in Humanized Yeast

2020

Hyperphosphorylation of protein tau is a hallmark of Alzheimer’s disease (AD). Changes in energy and lipid metabolism have been correlated with the late onset of this neurological disorder. However, it is uncertain if metabolic dysregulation is a consequence of AD or one of the initiating factors of AD pathophysiology. Also, it is unclear whether variations in lipid metabolism regulate the phosphorylation state of tau. Here, we show that in humanized yeast, tau hyperphosphorylation is stimulated by glucose starvation in coincidence with the downregulation of Pho85, the yeast ortholog of CDK5. Changes in inositol phosphate (IP) signaling, which has a central role in energy metabolism, altere…

0301 basic medicineCDK5Cèl·lulesTau proteinSit42HyperphosphorylationSaccharomyces cerevisiaeSACCHAROMYCES-CEREVISIAECeramide03 medical and health scienceschemistry.chemical_compoundCell and Developmental Biology0302 clinical medicineInositolceramideYpk1Inositol phosphatelcsh:QH301-705.51-IP7Original Researchchemistry.chemical_classificationScience & TechnologybiologyChemistryKinaseNEURODEGENERATIONLipid metabolismCell BiologyProtein phosphatase 2Fpk1MICROTUBULE-BINDINGPho85SERINE PALMITOYLTRANSFERASECell biologyALZHEIMERS-DISEASE030104 developmental biologylcsh:Biology (General)030220 oncology & carcinogenesisGLYCOGEN-SYNTHASE KINASE-3-BETAbiology.proteinKINASE-ACTIVITYPhosphorylationLife Sciences & BiomedicineBETA TOXICITYProteïnesDevelopmental BiologyFrontiers in Cell and Developmental Biology
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The role of Plasma Membrane Calcium ATPases (PMCAs) in neurodegenerative disorders

2017

Selective degeneration of differentiated neurons in the brain is the unifying feature of neurodegenerative disorders such as Parkinson's disease (PD) or Alzheimer's disease (AD). A broad spectrum of evidence indicates that initially subtle, but temporally early calcium dysregulation may be central to the selective neuronal vulnerability observed in these slowly progressing, chronic disorders. Moreover, it has long been evident that excitotoxicity and its major toxic effector mechanism, neuronal calcium overload, play a decisive role in the propagation of secondary neuronal death after acute brain injury from trauma or ischemia. Under physiological conditions, neuronal calcium homeostasis is…

0301 basic medicineCalcium pumpExcitotoxicitychemistry.chemical_elementCalciumProtein oxidationmedicine.disease_causeProtein Structure SecondaryPlasma Membrane Calcium-Transporting ATPases03 medical and health sciences0302 clinical medicinemedicineAnimalsHumansPhylogenyCalcium metabolismMembrane potentialChemistryGeneral NeuroscienceNeurodegenerationNeurodegenerative Diseasesmedicine.diseaseCytosol030104 developmental biologyNeuroscience030217 neurology & neurosurgeryNeuroscience Letters
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Regulation of GSK-3 activity by curcumin, berberine and resveratrol: Potential effects on multiple diseases.

2017

Natural products or nutraceuticals promote anti-aging, anti-cancer and other health-enhancing effects. A key target of the effects of natural products may be the regulation of the PI3K/PTEN/Akt/mTORC1/GSK-3 pathway. This review will focus on the effects of curcumin (CUR), berberine (BBR) and resveratrol (RES), on the PI3K/PTEN/Akt/mTORC1/GSK-3 pathway, with a special focus on GSK-3. These natural products may regulate the pathway by multiple mechanisms including: reactive oxygen species (ROS), cytokine receptors, mirco-RNAs (miRs) and many others. CUR is present the root of turmeric (Curcuma longa). CUR is used in the treatment of many disorders, especially in those involving inflammatory p…

0301 basic medicineCancer ResearchCurcuminBerberinemTORC1PharmacologyResveratrolMechanistic Target of Rapamycin Complex 1Protective AgentsNatural product03 medical and health scienceschemistry.chemical_compoundGlycogen Synthase Kinase 3Phosphatidylinositol 3-KinasesBerberineGeneticNeoplasmsOsteoarthritisStilbenesGeneticsPTENHumansCurcumaMolecular BiologyProtein kinase BPI3K/AKT/mTOR pathwayInflammationNatural productsbiologyBerberine; Curcumin; Natural products; ResveratrolPTEN PhosphohydrolaseNeurodegenerative Diseasesbiology.organism_classification030104 developmental biologyBiochemistrychemistryGene Expression RegulationCardiovascular DiseasesResveratrolbiology.proteinCurcuminMolecular MedicineProto-Oncogene Proteins c-aktSignal Transduction
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Spanish Cell Therapy Network (TerCel): 15 years of successful collaborative translational research

2019

On behalf of TerCel

0301 basic medicineCancer ResearchResearch groupsBiomedical ResearchAllogeneic cellImmunologyCell- and Tissue-Based TherapyResearch networkTranslational researchStem cellsRegenerative MedicineCell therapyTranslational Research Biomedical03 medical and health sciences0302 clinical medicinePolitical scienceAgency (sociology)Immunology and AllergyHumansProduct (category theory)Intersectoral CollaborationGenetics (clinical)TransplantationMedical educationGovernmentBiología celularTranslational medicineNeurodegenerative DiseasesCell BiologyClinical trial030104 developmental biologyOncologyImmune System DiseasesCardiovascular DiseasesSpain030220 oncology & carcinogenesisRegenerative medicineTranslational medicine
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RBFOX1, encoding a splicing regulator, is a candidate gene for aggressive behavior

2020

The RBFOX1 gene (or A2BP1) encodes a splicing factor important for neuronal development that has been related to autism spectrum disorder and other neurodevelopmental phenotypes. Evidence from complementary sources suggests that this gene contributes to aggressive behavior. Suggestive associations with RBFOX1 have been identified in genome-wide association studies (GWAS) of anger, conduct disorder, and aggressive behavior. Nominal association signals in RBFOX1 were also found in an epigenome-wide association study (EWAS) of aggressive behavior. Also, variants in this gene affect temporal lobe volume, a brain area that is altered in several aggression-related phenotypes. In animals, this gen…

0301 basic medicineCandidate geneNeuroimagingRBFOX1Genome-wide association studyBiologyEpigenesis GeneticA2BP103 medical and health sciencesAll institutes and research themes of the Radboud University Medical Center0302 clinical medicineGeneticsmedicineAnimalsHumansPharmacology (medical)TranscriptomicsRBFOX1Genetic Association StudiesBiological PsychiatryRegulator genePharmacologyGeneticsNeurodevelopmental disorders Donders Center for Medical Neuroscience [Radboudumc 7]AggressionGenetic Variationmedicine.diseasePhenotypeAnimal modelsAggressionPsychiatry and Mental health030104 developmental biologyNeurologyAutism spectrum disorderEpigeneticsRBFOX1 GeneRNA Splicing FactorsNeurology (clinical)medicine.symptom030217 neurology & neurosurgeryGenome-Wide Association Study
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SLC20A1 Is Involved in Urinary Tract and Urorectal Development

2020

Previous studies in developing Xenopus and zebrafish reported that the phosphate transporter slc20a1a is expressed in pronephric kidneys. The recent identification of SLC20A1 as a monoallelic candidate gene for cloacal exstrophy further suggests its involvement in the urinary tract and urorectal development. However, little is known of the functional role of SLC20A1 in urinary tract development. Here, we investigated this using morpholino oligonucleotide knockdown of the zebrafish ortholog slc20a1a. This caused kidney cysts and malformations of the cloaca. Moreover, in morphants we demonstrated dysfunctional voiding and hindgut opening defects mimicking imperforate anus in human cloacal exs…

0301 basic medicineCandidate genePathologyMorpholinoPediatricsEmbryonalentwicklungBlasenekstrophieBladder exstrophyZebrabärbling0302 clinical medicinebladder exstrophy-epispadias complex; CAKUT; cloacal malformation; functional genetics; kidney formation; SLC20A1; urinary tract development; zebrafish developmentbladder exstrophy-epispadias complexUrinary tract; Growth and developmentZebrafishlcsh:QH301-705.5ZebrafishNiereOriginal Researchcloacal malformationKidney; EmbryologyPediatrikzebrafish developmentKidney; Growth and developmentReconstructive and regenerative medicine Radboud Institute for Molecular Life Sciences [Radboudumc 10]030220 oncology & carcinogenesisembryonic structuresfunctional geneticsmedicine.symptomSLC20A1medicine.medical_specialtyEpispadiasanimal structuresUrinary systemBiologyKidney cystsCell and Developmental Biology03 medical and health sciencesAll institutes and research themes of the Radboud University Medical Centermedicineddc:610CAKUTNeurodevelopmental disorders Donders Center for Medical Neuroscience [Radboudumc 7]Cloaca; Abnormalitieskidney formationCell Biologymedicine.diseaseCloacal exstrophybiology.organism_classificationurinary tract developmentReconstructive and regenerative medicine Radboud Institute for Health Sciences [Radboudumc 10]Bladder exstrophy030104 developmental biologyCloaca (embryology)lcsh:Biology (General)Developmental BiologyFrontiers in Cell and Developmental Biology
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The FOXP2-Driven Network in Developmental Disorders and Neurodegeneration

2017

The transcription repressor FOXP2 is a crucial player in nervous system evolution and development of humans and songbirds. In order to provide an additional insight into its functional role we compared target gene expression levels between human neuroblastoma cells (SH-SY5Y) stably overexpressing either human FOXP2 cDNA or its orthologues from the common chimpanzee, Rhesus monkey, and marmoset, respectively. Subsequent RNA-seq led to identification of 27 genes with differential regulation under the control of human FOXP2, which were previously reported to have FOXP2-driven and/or songbird song-related expression regulation. Importantly, RT-qPCR and Western blotting indicated differential re…

0301 basic medicineCell signalingCytoskeleton organizationspeechbrainBiologyAxonogenesislcsh:RC321-57103 medical and health sciencesCellular and Molecular NeuroscienceHuntington's diseasemedicineGeneTranscription factorlcsh:Neurosciences. Biological psychiatry. Neuropsychiatryneuronal circuitryOriginal ResearchlanguageNeurodegenerationFOXP2medicine.diseaseschizophrenia030104 developmental biologyParkinson’s diseaseNeuroscienceAlzheimer’s diseaseNeuroscienceHuntington’s diseaseFrontiers in Cellular Neuroscience
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