0000000000001088

AUTHOR

Michael K. E. Schäfer

0000-0001-6055-6244

showing 33 related works from this author

Depletion of regulatory T cells increases T cell brain infiltration, reactive astrogliosis, and interferon-γ gene expression in acute experimental tr…

2019

Abstract Background Traumatic brain injury (TBI) is a major cause of death and disability. T cells were shown to infiltrate the brain during the first days after injury and to exacerbate tissue damage. The objective of this study was to investigate the hitherto unresolved role of immunosuppressive, regulatory T cells (Tregs) in experimental TBI. Methods “Depletion of regulatory T cell” (DEREG) and wild type (WT) C57Bl/6 mice, treated with diphtheria toxin (DTx) to deplete Tregs or to serve as control, were subjected to the controlled cortical impact (CCI) model of TBI. Neurological and motor deficits were examined until 5 days post-injury (dpi). At the 5 dpi endpoint, (immuno-) histological…

0301 basic medicinePathologymedicine.medical_specialtyTraumatic brain injuryRegulatory T cellT cellImmunologyT cellsExcitotoxicityBrain damagemedicine.disease_causelcsh:RC346-42903 medical and health sciencesCellular and Molecular NeuroscienceTraumatic brain injury0302 clinical medicinemedicineImmune responselcsh:Neurology. Diseases of the nervous systemInflammationGlial fibrillary acidic proteinbiologybusiness.industryResearchGeneral Neurosciencemedicine.diseaseAstrogliosisCD8A030104 developmental biologymedicine.anatomical_structureNeurologyAstrocytesbiology.proteinCytokinesMicrogliamedicine.symptombusiness030217 neurology & neurosurgeryJournal of Neuroinflammation
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Sex hormones modulate pathogenic processes in experimental traumatic brain injury.

2018

Clinical and animal studies have revealed sex-specific differences in histopathological and neurological outcome after traumatic brain injury (TBI). The impact of perioperative administration of sex steroid inhibitors on TBI is still elusive. Here, we subjected male and female C57Bl/6N mice to the controlled cortical impact (CCI) model of TBI and applied pharmacological inhibitors of steroid hormone synthesis, that is, letrozole (LET, inhibiting estradiol synthesis by aromatase) and finasteride (FIN, inhibiting dihydrotestosterone synthesis by 5α-reductase), respectively, starting 72 h prior CCI, and continuing for a further 48 h after CCI. Initial gene expression analyses showed that andro…

0301 basic medicineMalemedicine.medical_specialtyanimal structuresmedicine.drug_classmedicine.medical_treatmentTropomyosin receptor kinase BTropomyosin receptor kinase ABiochemistryNeuroprotection03 medical and health sciencesCellular and Molecular NeuroscienceMice0302 clinical medicineInternal medicineBrain Injuries TraumaticmedicineAnimalsNerve Growth FactorsSex CharacteristicsbiologyEstradiolbusiness.industryEstrogen AntagonistsBrainDihydrotestosteroneAndrogennervous system diseasesMice Inbred C57BLSteroid hormoneDisease Models Animal030104 developmental biologyEndocrinologynervous systemSex steroidDihydrotestosteronebiology.proteinFemalebusiness030217 neurology & neurosurgeryNeurotrophinmedicine.drugJournal of neurochemistry
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Adult rat myelin enhances axonal outgrowth from neural stem cells.

2018

Axon regeneration after spinal cord injury (SCI) is attenuated by growth inhibitory molecules associated with myelin. We report that rat myelin stimulated the growth of axons emerging from rat neural progenitor cells (NPCs) transplanted into sites of SCI in adult rat recipients. When plated on a myelin substrate, neurite outgrowth from rat NPCs and from human induced pluripotent stem cell (iPSC)-derived neural stem cells (NSCs) was enhanced threefold. In vivo, rat NPCs and human iPSC-derived NSCs extended greater numbers of axons through adult central nervous system white matter than through gray matter and preferentially associated with rat host myelin. Mechanistic investigations excluded …

0301 basic medicineAgingNeuronalNudeMessengerNeurodegenerativeInbred C57BLRegenerative MedicineMedical and Health SciencesMyelinMiceNeural Stem CellsStem Cell Research - Nonembryonic - HumanCyclic AMPAxonPhosphorylationGray MatterInduced pluripotent stem cellExtracellular Signal-Regulated MAP KinasesSpinal Cord InjuryMyelin SheathInbred F344Neuronal growth regulator 1Stem Cell Research - Induced Pluripotent Stem Cell - HumanChemistryGeneral MedicineBiological SciencesWhite MatterNeural stem cellCell biologymedicine.anatomical_structureSpinal Cord5.1 PharmaceuticalsNeurologicalFemaleStem Cell Research - Nonembryonic - Non-HumanDevelopment of treatments and therapeutic interventionsPhysical Injury - Accidents and Adverse EffectsNeuriteCell Adhesion Molecules NeuronalCentral nervous systemNeuronal OutgrowthArticleWhite matter03 medical and health sciencesRats NudemedicineAnimalsHumansRNA MessengerStem Cell Research - Embryonic - HumanTraumatic Head and Spine InjuryTransplantationStem Cell Research - Induced Pluripotent Stem CellNeurosciencesStem Cell ResearchRats Inbred F344AxonsRatsMice Inbred C57BL030104 developmental biologynervous systemChondroitin Sulfate ProteoglycansRNACell Adhesion Molecules
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SETD7 mediates spinal microgliosis and neuropathic pain in a rat model of peripheral nerve injury

2019

Abstract Gene transcription regulation is critical for the development of spinal microgliosis and neuropathic pain after peripheral nerve injury. Using a model of chronic constriction injury (CCI) of the sciatic nerve, this study characterized the role of SET domain containing lysine methyltransferase 7 (SETD7) which monomethylates histone H3 lysine 4 (H3K4me1), a marker for active gene transcription. SETD7 protein expression in the spinal dorsal horn ipsilateral to nerve lesion was increased from one day to 14 days after CCI, concomitantly with the expression of inflammatory genes, Ccl2, Il-6 and Il-1β. The CCI-induced SETD7 expression was predominantly localized to microglia, as demonstra…

Male0301 basic medicineSpinal Cord Dorsal HornPathologymedicine.medical_specialtyImmunologyCCL2MicrogliosisRats Sprague-Dawley03 medical and health sciencesBehavioral Neuroscience0302 clinical medicinePeripheral Nerve InjuriesGanglia SpinalmedicineAnimalsGene knockdownMicrogliaEndocrine and Autonomic Systemsbusiness.industryHistone-Lysine N-MethyltransferaseNerve injurySciatic NerveSpineRats030104 developmental biologymedicine.anatomical_structureSpinal CordHyperalgesiaNeuropathic painPeripheral nerve injuryNeuralgiaFemaleMicrogliaSciatic nervemedicine.symptombusiness030217 neurology & neurosurgeryBrain, Behavior, and Immunity
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Correction to: Depletion of regulatory T cells increases T cell brain infiltration, reactive astrogliosis, and interferon-γ gene expression in acute …

2019

Traumatic brain injury (TBI) is a major cause of death and disability. T cells were shown to infiltrate the brain during the first days after injury and to exacerbate tissue damage. The objective of this study was to investigate the hitherto unresolved role of immunosuppressive, regulatory T cells (Tregs) in experimental TBI."Depletion of regulatory T cell" (DEREG) and wild type (WT) C57Bl/6 mice, treated with diphtheria toxin (DTx) to deplete Tregs or to serve as control, were subjected to the controlled cortical impact (CCI) model of TBI. Neurological and motor deficits were examined until 5 days post-injury (dpi). At the 5 dpi endpoint, (immuno-) histological, protein, and gene expressio…

InflammationGeneral NeuroscienceImmunologyCorrectionBrainT-Lymphocytes Regulatorylcsh:RC346-429Lymphocyte DepletionCellular and Molecular NeuroscienceDisease Models AnimalInterferon-gammaMiceNeurologyAstrocytesBrain Injuries TraumaticAnimalsGliosislcsh:Neurology. Diseases of the nervous systemJournal of Neuroinflammation
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Lack of NG2 exacerbates neurological outcome and modulates glial responses after traumatic brain injury

2015

Traumatic brain injury (TBI) is a major cause of death and disability. The underlying pathophysiology is characterized by secondary processes including neuronal death and gliosis. To elucidate the role of the NG2 proteoglycan we investigated the response of NG2-knockout mice (NG2-KO) to TBI. Seven days after TBI behavioral analysis, brain damage volumetry and assessment of blood brain barrier integrity demonstrated an exacerbated response of NG2-KO compared to wild-type (WT) mice. Reactive astrocytes and expression of the reactive astrocyte and neurotoxicity marker Lcn2 (Lipocalin-2) were increased in the perilesional brain tissue of NG2-KO mice. In addition, microglia/macrophages with acti…

0301 basic medicinePathologymedicine.medical_specialtyMicrogliaTraumatic brain injurybusiness.industryNeurotoxicityPoison controlBrain damagemedicine.diseaseBlood–brain barrier03 medical and health sciencesCellular and Molecular Neuroscience030104 developmental biologymedicine.anatomical_structurenervous systemNeurologyGliosisImmunologymedicineNeurogliamedicine.symptombusinessGlia
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Amelioration of the abnormal phenotype of a new L1 syndrome mouse mutation with L1 mimetics

2021

L1 syndrome is a rare developmental disorder characterized by hydrocephalus of varying severity, intellectual deficits, spasticity of the legs, and adducted thumbs. Therapy is limited to symptomatic relief. Numerous gene mutations in the L1 cell adhesion molecule (L1CAM, hereafter abbreviated L1) were identified in L1 syndrome patients, and those affecting the extracellular domain of this transmembrane type 1 glycoprotein show the most severe phenotypes. Previously analyzed rodent models of the L1 syndrome focused on L1-deficient animals or mouse mutants with abrogated cell surface expression of L1, making it difficult to test L1 function-triggering mimetic compounds with potential therapeu…

Male0301 basic medicineToluidinesL1NeurogenesisCellNeural Cell Adhesion Molecule L1Gene mutationBiologyDuloxetine Hydrochloridemedicine.disease_causeBiochemistryCerebral VentriclesCorpus CallosumMice03 medical and health sciences0302 clinical medicineCerebellumIntellectual DisabilityGeneticsmedicineExtracellularAnimalsL1 syndromeMolecular BiologyCells CulturedNeuronsMutationSpastic Paraplegia HereditaryTrimebutineGenetic Diseases X-LinkedCell migrationSymptomatic reliefMice Inbred C57BLPhenotype030104 developmental biologymedicine.anatomical_structureMutationCancer researchPeptidomimeticsLocomotion030217 neurology & neurosurgeryBiotechnologyThe FASEB Journal
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EGFL7 ligates αvβ3 integrin to enhance vessel formation

2013

Angiogenesis, defined as blood vessel formation from a preexisting vasculature, is governed by multiple signal cascades including integrin receptors, in particular integrin αVβ3. Here we identify the endothelial cell (EC)-secreted factor epidermal growth factor-like protein 7 (EGFL7) as a novel specific ligand of integrin αVβ3, thus providing mechanistic insight into its proangiogenic actions in vitro and in vivo. Specifically, EGFL7 attaches to the extracellular matrix and by its interaction with integrin αVβ3 increases the motility of EC, which allows EC to move on a sticky underground during vessel remodeling. We provide evidence that the deregulation of EGFL7 in zebrafish embryos leads …

EGF Family of ProteinsEmbryo NonmammalianAngiogenesisAmino Acid MotifsImmunologyIntegrinGene ExpressionMice NudeEndothelial Growth FactorsBiochemistryCollagen receptorMiceCell MovementCell AdhesionHuman Umbilical Vein Endothelial CellsmedicineAnimalsHumansImmunoprecipitationPhosphorylationZebrafishbiologyReverse Transcriptase Polymerase Chain ReactionChemistryCalcium-Binding ProteinsInfarction Middle Cerebral ArteryVenous plexusCell BiologyHematologyIntegrin alphaVbeta3ImmunohistochemistryExtracellular MatrixCell biologyEndothelial stem cellHEK293 Cellsmedicine.anatomical_structureIntegrin alpha MImmunologybiology.proteinBlood VesselsRNA InterferenceIntegrin beta 6Protein BindingBlood vesselBlood
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Posttraumatic Propofol Neurotoxicity Is Mediated via the Pro–Brain-Derived Neurotrophic Factor-p75 Neurotrophin Receptor Pathway in Adult Mice*

2016

Objectives:The gamma-aminobutyric acid modulator propofol induces neuronal cell death in healthy immature brains by unbalancing neurotrophin homeostasis via p75 neurotrophin receptor signaling. In adulthood, p75 neurotrophin receptor becomes down-regulated and propofol loses its neurotoxic effect. H

musculoskeletal diseases0301 basic medicineBrain-derived neurotrophic factorProgrammed cell deathbiologybusiness.industryNeurotoxicityCaspase 3PharmacologyCritical Care and Intensive Care Medicinemedicine.disease03 medical and health sciences030104 developmental biology0302 clinical medicinenervous systemAnesthesiamedicinebiology.proteinLow-affinity nerve growth factor receptorReceptorbusiness030217 neurology & neurosurgeryHomeostasisNeurotrophinCritical Care Medicine
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Sensory neuropathy in progressive motor neuronopathy(pmn)mice is associated with defects in microtubule polymerization and axonal transport

2016

Motor neuron diseases such as amyotrophic lateral sclerosis (ALS) are now recognized as multi-system disorders also involving various non-motor neuronal cell types. The precise extent and mechanistic basis of non-motor neuron damage in human ALS and ALS animal models remain however unclear. To address this, we here studied progressive motor neuronopathy (pmn) mice carrying a missense loss-of-function mutation in tubulin binding cofactor E (TBCE). These mice manifest a particularly aggressive form of motor axon dying back and display a microtubule loss, similar to that induced by human ALS-linked TUBA4A mutations. Using whole nerve confocal imaging of pmn × thy1.2-YFP16 fluorescent reporter …

0301 basic medicineGeneral NeuroscienceMotor neuronBiologymedicine.disease3. Good healthPathology and Forensic MedicineMicrotubule polymerizationTubulin binding03 medical and health sciences030104 developmental biology0302 clinical medicinemedicine.anatomical_structurenervous systemDorsal root ganglionmedicineAxoplasmic transportNeurology (clinical)NeuronAxonAmyotrophic lateral sclerosisNeuroscience030217 neurology & neurosurgeryBrain Pathology
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Influence of Age on Brain Edema Formation, Secondary Brain Damage and Inflammatory Response after Brain Trauma in Mice

2012

After traumatic brain injury (TBI) elderly patients suffer from higher mortality rate and worse functional outcome compared to young patients. However, experimental TBI research is primarily performed in young animals. Aim of the present study was to clarify whether age affects functional outcome, neuroinflammation and secondary brain damage after brain trauma in mice. Young (2 months) and old (21 months) male C57Bl6N mice were anesthetized and subjected to a controlled cortical impact injury (CCI) on the right parietal cortex. Animals of both ages were randomly assigned to 15 min, 24 h, and 72 h survival. At the end of the observation periods, contusion volume, brain water content, neurolo…

MalePathologyAgingAnatomy and PhysiologyCritical Care and Emergency MedicineMouseT-LymphocytesInterleukin-1beta610 MedizinNitric Oxide Synthase Type IISystemic inflammationMiceAnesthesiologyCell Movement610 Medical sciencesEdemaImmune PhysiologyEdemaLungNeurosurgical CareMultidisciplinaryHematologic TestsQRAging and ImmunityAnimal ModelsOrgan SizeHead Injurymedicine.anatomical_structureNeurologyNeurointensive CareCytokinesMedicinemedicine.symptomResearch Articlemedicine.medical_specialtyTraumatic brain injuryScienceImmunologyInflammationBrain damageAtrophyModel OrganismsNeurorehabilitation and TraumamedicineAnimalsRNA MessengerBiologyCerebrumNeuroinflammationInflammationLungbusiness.industryInterleukin-6Tumor Necrosis Factor-alphaImmunityWatermedicine.diseaseMice Inbred C57BLGene Expression RegulationCyclooxygenase 2Immune SystemBrain InjuriesClinical ImmunologybusinessPhysiological ProcessesPLoS ONE
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Mitochondrial function and energy metabolism in neuronal HT22 cells resistant to oxidative stress

2014

Background and Purpose The hippocampal cell line HT22 is an excellent model for studying the consequences of endogenous oxidative stress. Extracellular glutamate depletes cellular glutathione by blocking the glutamate/cystine antiporter system xc−. Glutathione depletion induces a well-defined programme of cell death characterized by an increase in reactive oxygen species and mitochondrial dysfunction. Experimental Approach We compared the mitochondrial shape, the abundance of mitochondrial complexes and the mitochondrial respiration of HT22 cells, selected based on their resistance to glutamate, with those of the glutamate-sensitive parental cell line. Key Results Glutamate-resistant mitoch…

PharmacologyOligomycinATP synthaseCellular respirationOxidative phosphorylationMitochondrionBiologymedicine.disease_causechemistry.chemical_compoundMitochondrial permeability transition poreBiochemistrychemistrymedicinebiology.proteinATP–ADP translocaseOxidative stressBritish Journal of Pharmacology
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Neuronal Growth and Behavioral Alterations in Mice Deficient for the Psychiatric Disease-Associated Negr1 Gene

2018

Neuronal growth regulator 1 (NEGR1), a member of the immunoglobulin superfamily cell adhesion molecule subgroup IgLON, has been implicated in neuronal growth and connectivity. In addition, genetic variants in or near the NEGR1 locus have been associated with obesity and more recently with learning difficulties, intellectual disability and psychiatric disorders. However, experimental evidence is lacking to support a possible link between NEGR1, neuronal growth and behavioral abnormalities. Initial expression analysis of NEGR1 mRNA in C57Bl/6 wildtype (WT) mice by in situ hybridization demonstrated marked expression in the entorhinal cortex (EC) and dentate granule cells. In co-cultures of co…

cognition0301 basic medicinehippocampusMorris water navigation taskIn situ hybridizationneuronal connectivityHippocampal formationBiologylcsh:RC321-57103 medical and health sciencesCellular and Molecular Neuroscience0302 clinical medicineNeurotransmitter receptoraxon growthMuscarinic acetylcholine receptorlcsh:Neurosciences. Biological psychiatry. NeuropsychiatryMolecular Biologyentorhinal cortexNeuronal growth regulator 1Dentate gyrusEntorhinal cortexCell biology030104 developmental biologynervous systemcell adhesion molecule030217 neurology & neurosurgeryFrontiers in Molecular Neuroscience
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Administration of all‐ trans retinoic acid after experimental traumatic brain injury is brain protective

2020

BACKGROUND AND PURPOSE: All‐trans retinoic acid (ATRA) is a vitamin A metabolite, important in the developing and mature brain. Pre‐injury ATRA administration ameliorates ischaemic brain insults in rodents. This study examined the effects of post‐traumatic ATRA treatment in experimental traumatic brain injury (TBI). EXPERIMENTAL APPROACH: Male adult mice were subjected to the controlled cortical impact model of TBI or sham procedure and killed at 7 or 30 days post‐injury (dpi). ATRA (10 mg kg−1, i.p.) was given immediately after the injury and 1, 2 and 3 dpi. Neurological function and sensorimotor coordination were evaluated. Brains were processed for (immuno‐) histological, mRNA and protei…

Male0301 basic medicineTraumatic brain injuryRetinoic acidTretinoinPharmacologyHippocampal formationHMGB1Mice03 medical and health scienceschemistry.chemical_compound0302 clinical medicineBrain Injuries TraumaticmedicineAnimalsInflammationPharmacologyMicrogliabiologybusiness.industryBrainmedicine.diseaseGranule cellResearch PapersAstrogliosis030104 developmental biologymedicine.anatomical_structurechemistryBlood-Brain BarrierApoptosisbiology.proteinbusiness030217 neurology & neurosurgeryBritish Journal of Pharmacology
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Evidence for the utility of cfDNA plasma concentrations to predict disease severity in COVID-19

2021

AbstractCOVID-19 is a pandemic caused by the highly infective SARS-CoV-2. There is a need for biomarkers not only for overall prognosis but also for predicting the response to treatments and thus for improvements in the clinical management of patients with COVID-19. Circulating cell-free DNA (cfDNA) has emerged as a promising biomarker in the assessment of various disease conditions. The aim of this retrospective and observational pilot study was to examine the potential value of cfDNA plasma concentrations as a correlative biomarker in hospitalized COVID-19 patients. Lithium-Heparin plasma samples were obtained from twenty-one COVID-19 patients during hospitalization in the University Medi…

medicine.medical_specialtyARDSbusiness.industryAcute kidney injuryDiseasemedicine.diseaseGastroenterologyReal-time polymerase chain reactionInternal medicinemedicineBiomarker (medicine)Observational studyProspective cohort studybusinessMyositis
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Progranulin protects against exaggerated axonal injury and astrogliosis following traumatic brain injury

2016

In response to traumatic brain injury (TBI) microglia/macrophages and astrocytes release inflammatory mediators with dual effects on secondary brain damage progression. The neurotrophic and anti-inflammatory glycoprotein progranulin (PGRN) attenuates neuronal damage and microglia/macrophage activation in brain injury but mechanisms are still elusive. Here, we studied histopathology, neurology and gene expression of inflammatory markers in PGRN-deficient mice (Grn-/- ) 24 h and 5 days after experimental TBI. Grn-/- mice displayed increased perilesional axonal injury even though the overall brain tissue loss and neurological consequences were similar to wild-type mice. Brain inflammation was …

0301 basic medicinePathologymedicine.medical_specialtyTraumatic brain injuryInflammationBrain damageBlood–brain barrier03 medical and health sciencesCellular and Molecular Neuroscience0302 clinical medicinemedicineNeuroinflammationMicrogliabiologybusiness.industrymedicine.diseaseAstrogliosis030104 developmental biologymedicine.anatomical_structurenervous systemNeurologybiology.proteinmedicine.symptombusiness030217 neurology & neurosurgeryNeurotrophinGlia
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Low Density Lipoprotein Receptor-related Protein 1 (LRP1) Modulates N-Methyl-d-aspartate (NMDA) Receptor-dependent Intracellular Signaling and NMDA-i…

2013

The lipoprotein receptor LRP1 is essential in neurons of the central nervous system, as was revealed by the analysis of conditional Lrp1-deficient mouse models. The molecular basis of its neuronal functions, however, is still incompletely understood. Here we show by immunocytochemistry, electron microscopy, and postsynaptic density preparation that LRP1 is located postsynaptically. Basal and NMDA-induced phosphorylation of the transcription factor cAMP-response element-binding protein (CREB) as well as NMDA target gene transcription are reduced in LRP1-deficient neurons. In control neurons, NMDA promotes γ-secretase-dependent release of the LRP1 intracellular domain (LRP1-ICD). However, pul…

MaleN-MethylaspartateCell SurvivalBlotting WesternGene ExpressionMice Transgenicmacromolecular substancesAMPA receptorBiologyCREBReceptors N-Methyl-D-AspartateBiochemistryMiceNeurobiologyPostsynaptic potentialAnimalsMolecular BiologyCells CulturedMice KnockoutNeuronsReverse Transcriptase Polymerase Chain Reactionmusculoskeletal neural and ocular physiologyTumor Suppressor ProteinsMembrane ProteinsCell BiologyEmbryo MammalianLRP1Cell biologyProtein SubunitsReceptors LDLnervous systemSynapsesLDL receptorbiology.proteinNMDA receptorFemaleAmyloid Precursor Protein SecretasesSignal transductionDisks Large Homolog 4 ProteinGuanylate KinasesPostsynaptic densityLow Density Lipoprotein Receptor-Related Protein-1Protein BindingSignal TransductionSynaptosomesJournal of Biological Chemistry
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Ferroelectricity and piezoelectricity in soft biological tissue: Porcine aortic walls revisited

2017

Recently reported piezoresponse force microscopy (PFM) measurements have proposed that porcine aortic walls are ferroelectric. This finding may have great implications for understanding biophysical properties of cardiovascular diseases such as arteriosclerosis. However, the complex anatomical structure of the aortic wall with different extracellular matrices appears unlikely to be ferroelectric. The reason is that a prerequisite for ferroelectricity, which is the spontaneous switching of the polarization, is a polar crystal structure of the material. Although the PFM measurements were performed locally, the phase-voltage hysteresis loops could be reproduced at different positions on the tis…

PermittivityMaterials sciencePhysics and Astronomy (miscellaneous)FerroelectricityPiezoresponse force microscopyPiezoelectricityHOL - HolstNanotechnology02 engineering and technologyDielectricPFM01 natural sciences0103 physical sciences010306 general physicsTS - Technical SciencesIndustrial InnovationElectrostrictionCondensed matter physics021001 nanoscience & nanotechnologyPiezoelectricityFerroelectricityHysteresisPorcine aortic wallsPiezoresponse force microscopyNano Technology0210 nano-technologyElectric displacement fieldBiological tissue
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NG2/CSPG4 and progranulin in the posttraumatic glial scar.

2018

Traumatic injury of the central nervous system is one of the leading causes of death and disability in young adults. Failure of regeneration is caused by autonomous neuronal obstacles and by formation of the glial scar, which is essential to seal the injury but also constitutes a barrier for regrowing axons. The scar center is highly inflammatory and populated by NG2+ glia, whereas astrocytes form the sealing border and trap regrowing axons, suggesting that the non-permissive environment of activated astrocytes and extracellular matrix components is one of the reasons for the regenerative failure. Particularly, secreted chondroitin-sulfate proteoglycans, CSPGs, of the lectican family hinder…

0301 basic medicineCentral nervous systemPerlecanCell CommunicationBiologyGlial scarExtracellular matrix03 medical and health scienceschemistry.chemical_compoundCicatrix0302 clinical medicineProgranulinsmedicineLecticanAnimalsHumansMolecular BiologyMicrogliaReceptors NotchMembrane ProteinsCell biology030104 developmental biologymedicine.anatomical_structurenervous systemchemistryChondroitin Sulfate ProteoglycansChondroitin sulfate proteoglycanBrain InjuriesImmunologybiology.proteinSynaptic signalingNeuroglia030217 neurology & neurosurgeryHeparan Sulfate ProteoglycansSignal TransductionMatrix biology : journal of the International Society for Matrix Biology
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Plasminogen activator inhibitor‐1 augments damage by impairing fibrinolysis after traumatic brain injury

2019

Objective Plasminogen activator inhibitor-1 (PAI-1) is the key endogenous inhibitor of fibrinolysis, and enhances clot formation after injury. In traumatic brain injury, dysregulation of fibrinolysis may lead to sustained microthrombosis and accelerated lesion expansion. In the present study, we hypothesized that PAI-1 mediates post-traumatic malfunction of coagulation, with inhibition or genetic depletion of PAI-1 attenuating clot formation and lesion expansion after brain trauma. Methods We evaluated PAI-1 as a possible new target in a mouse controlled cortical impact (CCI) model of traumatic brain injury. We performed the pharmacological inhibition of PAI-1 with PAI-039 and stimulation b…

Male0301 basic medicineTraumatic brain injurymedicine.medical_treatmentBrain damagePharmacologyLesionMice03 medical and health scienceschemistry.chemical_compound0302 clinical medicineBrain Injuries TraumaticSerpin E2FibrinolysisAnimalsMedicineThrombusResearch ArticlesIndoleacetic Acidsbusiness.industryFibrinolysisBrainmedicine.diseaseMice Inbred C57BL030104 developmental biologyNeurologychemistryPlasminogen activator inhibitor-1Neurology (clinical)medicine.symptombusinessPlasminogen activator030217 neurology & neurosurgeryIntravital microscopyResearch ArticleAnnals of Neurology
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The Charcot Marie Tooth Disease Mutation R94Q in MFN2 Decreases ATP Production but Increases Mitochondrial Respiration under Conditions of Mild Oxida…

2019

Charcot-Marie tooth disease is a hereditary polyneuropathy caused by mutations in Mitofusin-2 (MFN2), a GTPase in the outer mitochondrial membrane involved in the regulation of mitochondrial fusion and bioenergetics. Autosomal-dominant inheritance of a R94Q mutation in MFN2 causes the axonal subtype 2A2A which is characterized by early onset and progressive atrophy of distal muscles caused by motoneuronal degeneration. Here, we studied mitochondrial shape, respiration, cytosolic, and mitochondrial ATP content as well as mitochondrial quality control in MFN2-deficient fibroblasts stably expressing wildtype or R94Q MFN2. Under normal culture conditions, R94Q cells had slightly more fragmented…

cell_developmental_biologyBioenergeticsmitochondrial fusionChemistryMitophagymedicineMFN2PINK1Mitochondrionmedicine.disease_causePyruvate kinaseOxidative stressCell biology
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Pharmacologic Inhibition of ADAM10 Attenuates Brain Tissue Loss, Axonal Injury and Pro-inflammatory Gene Expression Following Traumatic Brain Injury …

2021

The α-secretase A disintegrin and metalloprotease 10 (ADAM10) regulates various physiological and pathophysiological processes. Despite its broad functional implications during development, plasticity, and disease, no pharmacological approaches to inhibit ADAM10 in acute brain injury have been reported. Here, we examined the effects of the ADAM10 inhibitor GI254023X on the neurological and histopathological outcome after experimental traumatic brain injury (TBI). C57BL/6N mice were subjected to the controlled cortical impact (CCI) model of TBI or sham procedure and received GI254023X or vehicle during the acute phase of injury (n = 40, 100 mg/kg, 25% DMSO, 0.1 M Na2CO3, intraperitoneal, 30 …

Traumatic brain injuryADAM10PharmacologyBlood–brain barrierNeuroprotectionneuroinflammationaxonal injuryCell and Developmental Biologymedicinelcsh:QH301-705.5NeuroinflammationOriginal ResearchMicrogliabiologybusiness.industrytraumatic brain injuryADAM10 (a disintegrin and metalloprotease 10)Glutamate receptorCell Biologymedicine.diseaseGI254023Xmedicine.anatomical_structurelcsh:Biology (General)biology.proteinneuroprotectionGRIN2BbusinessDevelopmental BiologyFrontiers in Cell and Developmental Biology
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Targeting aurora kinase B alleviates spinal microgliosis and neuropathic pain in a rat model of peripheral nerve injury.

2019

Peripheral nerve injury elicits spinal microgliosis, contributing to neuropathic pain. The aurora kinases A (AURKA), B (AURKB), and C (AURKC) are potential therapeutic targets in proliferating cells. However, their role has not been clarified in microglia. The aim of this study was to examine the regulation of aurora kinases and their roles and druggability in spinal microgliosis and neuropathic pain. Sprague-Dawley rats received chronic constriction injury (CCI). Gene expression of aurora kinases A-C was evaluated by quantitative RT-PCR and western blot, respectively, in spinal cords at 1, 3, 7, and 14 days after CCI. AURKB gene and protein expression was up-regulated concomitantly with th…

0301 basic medicineMaleDown-RegulationGene ExpressionMicrogliosisBiochemistryRats Sprague-Dawley03 medical and health sciencesCellular and Molecular Neuroscience0302 clinical medicinePeripheral Nerve InjuriesMedicineAnimalsAurora Kinase BAURKB GeneEnzyme InhibitorsGene knockdownMicrogliabusiness.industryKinaseSpinal cordRatsDisease Models Animal030104 developmental biologymedicine.anatomical_structureSpinal CordGene Knockdown TechniquesPeripheral nerve injuryNeuropathic painCancer researchNeuralgiaMicrogliabusiness030217 neurology & neurosurgeryJournal of neurochemistryReferences
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Proneurotrophin Binding to P75 Neurotrophin Receptor (P75ntr) Is Essential for Brain Lesion Formation and Functional Impairment after Experimental Tr…

2015

Traumatic brain injury (TBI) initiates an excessive mediator release of e.g. neurotrophins, which promote neuronal survival, differentiation, and modulate synaptic plasticity. Paradoxically, mature forms of neurotrophins promote neuronal survival, whereas unprocessed forms of neurotrophins induce cell death through p75 neurotrophin receptor (p75NTR) signaling. p75NTR is widely expressed during synaptogenesis and is subsequently downregulated in adulthood. Repair mechanisms after acute cerebral insults can reactivate its expression. Therefore, the influence of p75NTR on secondary brain damage was addressed. mRNA levels of p75NTR and its ligands were quantified in brain tissue up to 7 days af…

MaleProgrammed cell deathmedicine.medical_specialtyTraumatic brain injurySynaptogenesisReceptors Nerve Growth FactorBrain damageMiceInternal medicineAnimalsMedicineLow-affinity nerve growth factor receptorRNA MessengerMice KnockoutBehavior AnimalCell Deathbiologybusiness.industrymedicine.diseaseMice Inbred C57BLDisease Models AnimalEndocrinologyBrain InjuriesSynaptic plasticitybiology.proteinFemalesense organsNeurology (clinical)medicine.symptomSignal transductionbusinessNeuroscienceProtein BindingSignal TransductionNeurotrophinJournal of Neurotrauma
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Effect of fluid resuscitation on cerebral integrity: A prospective randomised porcine study of haemorrhagic shock.

2021

BACKGROUND The treatment of haemorrhagic shock is a challenging task. Colloids have been regarded as standard treatment, but their safety and benefit have been the subject of controversial debates. Negative effects, including renal failure and increased mortality, have resulted in restrictions on their administration. The cerebral effects of different infusion regimens are largely unknown. OBJECTIVES The current study investigated the impact of gelatine-polysuccinate, hydroxyethyl starch (HES) and balanced electrolyte solution (BES) on cerebral integrity, focusing on cerebral inflammation, apoptosis and blood flow in pigs. DESIGN Randomised experimental study. SETTING University-affiliated …

Resuscitationbusiness.industrySwineResuscitationHemodynamicsBlood flowHydroxyethyl starchShock HemorrhagicMicrocirculationHydroxyethyl Starch DerivativesAnesthesiology and Pain MedicineShock (circulatory)AnesthesiamedicineArterial bloodAnimalsFluid TherapyProspective Studiesmedicine.symptomCerebral perfusion pressurebusinessmedicine.drugEuropean journal of anaesthesiology
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L1 syndrome diagnosis complemented with functional analysis of L1CAM variants located to the two N-terminal Ig-like domains

2016

L1CAM gene mutations cause neurodevelopmental disorders collectively termed L1 syndrome. Insufficient information about L1CAM variants complicates clinical prognosis, genetic diagnosis and genetic counseling. We combined clinical data, in silico effect predictions and functional analysis of four L1CAM variants, p.I37N, p.T38M, p.M172I and p.D202Y, located to the two N-terminal Ig-like domains present in five families with symptoms of L1 syndrome. Software tools predicted destabilizing effects of p.I37N and p.D202Y but results for p.T38M and p.M172I were inconsistent. Cell surface expression of mutant proteins L1-T38M, L1-M172I and L1-D202Y was normal. Conversely, L1-I37N accumulated in the …

0301 basic medicineGeneticsmedicine.medical_specialtyL1In silicoEndoplasmic reticulumMutantBiologymedicine.disease03 medical and health sciences030104 developmental biology0302 clinical medicineNeurodevelopmental disorderGeneticsmedicineMedical geneticsProtein foldingProtein maturation030217 neurology & neurosurgeryGenetics (clinical)Clinical Genetics
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HLA typing from RNA-Seq sequence reads.

2012

We present a method, seq2HLA, for obtaining an individual's human leukocyte antigen (HLA) class I and II type and expression using standard next generation sequencing RNA-Seq data. RNA-Seq reads are mapped against a reference database of HLA alleles, and HLA type, confidence score and locus-specific expression level are determined. We successfully applied seq2HLA to 50 individuals included in the HapMap project, yielding 100% specificity and 94% sensitivity at a P-value of 0.1 for two-digit HLA types. We determined HLA type and expression for previously un-typed Illumina Body Map tissues and a cohort of Korean patients with lung cancer. Because the algorithm uses standard RNA-Seq reads and …

Geneticsbusiness.industryMethodRNA-SeqHuman leukocyte antigenHuman geneticsDNA sequencingGeneticsBiomarker (medicine)MedicineMolecular MedicineGenetics(clinical)International HapMap ProjectAllelebusinessMolecular BiologyGenetics (clinical)Sequence (medicine)Genome medicine
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Functional Inactivation of the Genome-Wide Association Study Obesity Gene Neuronal Growth Regulator 1 in Mice Causes a Body Mass Phenotype

2012

To date, genome-wide association studies (GWAS) have identified at least 32 novel loci for obesity and body mass-related traits. However, the causal genetic variant and molecular mechanisms of specific susceptibility genes in relation to obesity are yet to be fully confirmed and characterised. Here, we examined whether the candidate gene NEGR1 encoding the neuronal growth regulator 1, also termed neurotractin or Kilon, accounts for the obesity association. To characterise the function of NEGR1 for body weight control in vivo, we generated two novel mutant mouse lines, including a constitutive NEGR1-deficient mouse line as well as an ENU-mutagenised line carrying a loss-of-function mutation …

MaleCandidate geneMutantlcsh:MedicineGenome-wide association studymedicine.disease_causeEndoplasmic ReticulumEatingGene Knockout TechniquesMice0302 clinical medicineEndocrinologylcsh:ScienceObesity; NEGR1; GWAS; body weight control2. Zero hungerGenetics0303 health sciencesMutationMultidisciplinaryNeuronal growth regulator 1GenomicsPhenotypePhenotypeMedicineFemaleFunction and Dysfunction of the Nervous SystemResearch ArticleGenotypeHypothalamusNerve Tissue ProteinsBiologyMotor ActivityDiet High-FatCell Line03 medical and health sciencesGenetic MutationGenome Analysis ToolsmedicineGeneticsGenome-Wide Association StudiesCell AdhesionNeuritesAnimalsHumansObesityGene SilencingGeneBiologyAlleles030304 developmental biologyNutritionlcsh:RBody WeightMembrane ProteinsHuman GeneticsNeuroendocrinologyBody HeightMetabolic DisordersGenetics of DiseaseLean body masslcsh:QEnergy Metabolism030217 neurology & neurosurgeryGenome-Wide Association StudyPLoS ONE
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Loss of synaptic zinc transport in progranulin deficient mice may contribute to progranulin-associated psychopathology and chronic pain

2017

Affective and cognitive processing of nociception contributes to the development of chronic pain and vice versa, pain may precipitate psychopathologic symptoms. We hypothesized a higher risk for the latter with immanent neurologic diseases and studied this potential interrelationship in progranulin-deficient mice, which are a model for frontotemporal dementia, a disease dominated by behavioral abnormalities in humans. Young naïve progranulin deficient mice behaved normal in tests of short-term memory, anxiety, depression and nociception, but after peripheral nerve injury, they showed attention-deficit and depression-like behavior, over-activity, loss of shelter-seeking, reduced impulse cont…

0301 basic medicineNeurotransmitter transportermedicine.medical_specialtyMice03 medical and health sciencesProgranulins0302 clinical medicinePeripheral Nerve InjuriesInternal medicinemental disordersmedicineAnimalsPrefrontal cortexMolecular BiologyGranulinsMice KnockoutIon Transportbusiness.industryChronic painmedicine.diseaseZinc030104 developmental biologyNociceptionEndocrinologyCompulsive behaviorNeuropathic painPeripheral nerve injuryIntercellular Signaling Peptides and ProteinsNeuralgiaMolecular MedicineChronic Painmedicine.symptomCarrier Proteinsbusiness030217 neurology & neurosurgeryFrontotemporal dementiaBiochimica et Biophysica Acta (BBA) - Molecular Basis of Disease
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High-Fat Diet Induces Pre-Diabetes and Distinct Sex-Specific Metabolic Alterations in Negr1-Deficient Mice

2021

In the large GWAS studies, NEGR1 gene has been one of the most significant gene loci for body mass phenotype. The purpose of the current study was to clarify the role of NEGR1 in the maintenance of systemic metabolism, including glucose homeostasis, by using both male and female Negr1−/− mice receiving a standard or high fat diet (HFD). We found that 6 weeks of HFD leads to higher levels of blood glucose in Negr1−/− mice. In the glucose tolerance test, HFD induced phenotype difference only in male mice

obesitymedicine.medical_specialtyQH301-705.5Medicine (miscellaneous)BiologyArticleGeneral Biochemistry Genetics and Molecular Biologychemistry.chemical_compoundDownregulation and upregulationgenetic modelsInternal medicineGenetic modelmedicineGlucose homeostasisBiology (General)Fatty acid synthesisGlucose tolerance testmedicine.diagnostic_testnutritional and metabolic diseasesMetabolismmetabolic diseasemetabolomicsNegr1Protein catabolismEndocrinologyglucose intoleranceGluconeogenesischemistry<i>Negr1</i>Biomedicines
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2-Methoxyestradiol confers neuroprotection and inhibits a maladaptive HIF-1α response after traumatic brain injury in mice

2014

HIF-1α is pivotal for cellular homeostasis in response to cerebral ischemia. Pharmacological inhibition of HIF-1α may reduce secondary brain damage by targeting post-translational mechanisms associated with its proteasomal degradation and nuclear translocation. This study examined the neuroprotective effects of 2-methoxyestradiol (2ME2), the involved HIF-1α-dependent response, and alternative splicing in exon 14 of HIF-1α (HIF-1α∆Ex14) after traumatic brain injury (TBI) in mice. Intraperitoneal 2ME2 administration 30 min after TBI caused a dose-dependent reduction in secondary brain damage after 24 h. 2ME2 was physiologically tolerated, showed no effects on immune cell brain migration, and …

MaleTraumatic brain injuryBlotting WesternIschemiaCellular homeostasisBrain damagePharmacologyBiologyBiochemistryNeuroprotectionBrain IschemiaMitochondrial ProteinsMiceCellular and Molecular Neurosciencechemistry.chemical_compoundPlasminogen Activator Inhibitor 1medicineAnimalsCell NucleusNeuronsEstradiolTumor Necrosis Factor-alphaAlternative splicingMembrane ProteinsExonsHypoxia-Inducible Factor 1 alpha Subunitmedicine.diseaseImmunohistochemistryUp-RegulationMice Inbred C57BLAlternative SplicingProtein TransportNeuroprotective AgentsGene Expression RegulationchemistryBrain InjuriesPlasminogen activator inhibitor-1Tumor necrosis factor alphamedicine.symptomNeuroscienceInjections IntraperitonealSubcellular FractionsJournal of Neurochemistry
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Single intracerebroventricular progranulin injection adversely affects the blood–brain barrier in experimental traumatic brain injury

2021

Progranulin (PGRN) is a neurotrophic and anti-inflammatory factor with protective effects in animal models of ischemic stroke, subarachnoid hemorrhage, and traumatic brain injury (TBI). Administration of recombinant (r) PGRN prevents exaggerated brain pathology after TBI in Grn-deficient mice, suggesting that local injection of recombinant progranulin (rPGRN) provides therapeutic benefit in the acute phase of TBI. To test this hypothesis, we subjected adult male C57Bl/6N mice to the controlled cortical impact model of TBI, administered a single dose of rPGRN intracerebroventricularly (ICV) shortly before the injury, and examined behavioral and biological effects up to 5 days post injury (dp…

Male0301 basic medicinemedicine.medical_specialtySubarachnoid hemorrhageTraumatic brain injuryPrimary Cell Culture610 MedizinBlood–brain barrierOccludinBiochemistryNeuroprotectionMice03 medical and health sciencesCellular and Molecular NeuroscienceProgranulins0302 clinical medicineInternal medicine610 Medical sciencesBrain Injuries TraumaticmedicineAnimalsNeuroinflammationInjections IntraventricularTight Junction ProteinsBehavior AnimalMicrogliabiologybusiness.industrymedicine.diseaseRecombinant ProteinsMice Inbred C57BL030104 developmental biologymedicine.anatomical_structureEndocrinologyAnimals NewbornBlood-Brain BarrierAstrocytesbiology.proteinEncephalitisMicrogliabusiness030217 neurology & neurosurgeryNeurotrophin
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NEGR1 and FGFR2 cooperatively regulate cortical development and core behaviours related to autism disorders in mice.

2018

See Contreras and Hippenmeyer (doi:10.1093/brain/awy218) for a scientific commentary on this article. Autism spectrum disorders (ASDs) are complex conditions with diverse aetiologies. Szczurkowska et al. demonstrate that two ASD-related molecules – FGFR2 and Negr1 – physically interact to act on the same downstream pathway, and regulate cortical development and ASD-relevant behaviours in mice. Identifying common mechanisms in ASDs may reveal targets for pharmacological intervention.

0301 basic medicineMAPK/ERK pathwaygenetic structuresAutism Spectrum DisorderFGFR2 signalingFibroblast growth factorReceptor tyrosine kinaseMiceautism; development; cell adhesion; in utero electroporation; FGFR2 signaling0302 clinical medicineCell MovementCerebral CortexMice KnockoutbiologyBehavior AnimalKinaseCell adhesion moleculeCell biologyProtein TransportSignal Transductionmusculoskeletal diseasesMAP Kinase Signaling SystemCell Adhesion Molecules NeuronalDendritic SpinesNeurogenesisautismDown-Regulationbehavioral disciplines and activities03 medical and health sciencesmental disordersmedicineAnimalsHumansAutistic DisorderReceptor Fibroblast Growth Factor Type 2developmentProtein kinase BFibroblast growth factor receptor 2Cell Membranecell adhesionOriginal Articlesin utero electroporationmedicine.diseaseMice Inbred C57BLDisease Models Animal030104 developmental biologyHEK293 Cellsbiology.proteinAutismNeurology (clinical)030217 neurology & neurosurgeryBrain : a journal of neurology
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