Search results for "Microglia"

showing 10 items of 164 documents

Cerebrospinal fluid T-regulatory cells recognize Borrelia burgdorferi NAPA in chronic Lyme borreliosis.

2013

The NapA protein of B. burgdorferi is essential for the persistence of spirochetes in ticks. One of the most intriguing aspects of NapA is its potential to interfere with the host immune system. Here, we investigated the role of the acquired immune responses induced by NapA in the cerebrospinal fluids (CSF) of patients with chronic Lyme borreliosis. We evaluated the cytokine profile induced in microglia cells and CSF T cells following NapA stimulation. We report here that NapA induced a regulatory T (Treg) response in the CSF of patients with chronic Lyme borreliosis and it is able to expand this suppressive response by promoting the production of TGF-β and IL-10 by microglia cells. Collect…

AdultMaleT regChemokineT-LymphocytesT cells; T reg; Borrelia; Lyme; Adult; Bacterial Proteins; Cerebrospinal Fluid; Chemokines CXC; Chronic Disease; Female; Humans; Interleukin-10; Lyme Disease; Male; Microglia; Middle Aged; T-Lymphocytes Regulatory; Transforming Growth Factor betaImmunologyT cellsT-Lymphocytes RegulatoryImmune systemLyme diseaseBacterial ProteinsTransforming Growth Factor betaImmunology and AllergyMedicineHumansBorrelia burgdorferiCerebrospinal FluidPharmacologyNAPACXCLyme DiseasebiologyMicrogliabusiness.industryBorreliaTransforming growth factor betaMiddle Agedbiology.organism_classificationmedicine.diseaseRegulatoryInterleukin-10Interleukin 10medicine.anatomical_structureImmunologyChronic Diseasebiology.proteinLymeFemaleMicrogliaChemokinesbusinessChemokines CXC
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CCR5 Receptor: Biologic and Genetic Implications in Age-Related Diseases

2007

The CC chemokine receptor 5 (CCR5) is a member of CC-chemokine receptor family. CCR5 has the characteristic structure of a seven transmembrane G protein-coupled receptor (GPCR), which regulates trafficking and effector functions of memory/effector Th1 cells, macrophages, NK cells, and immature dendritic cells. CCR5 and its ligands are important molecules in viral pathogenesis. CCR5 represents the co-receptor for macrophage (M) and dual (T cell and M)-tropic immunodeficiency viruses. Recent evidence has also demonstrated the role of CCR5 in a variety of human diseases, ranging from infectious and inflammatory diseases to cancer. In this article, we describe the involvement of CCR5 in two age…

AgingChemokineReceptors CCR5Chemokine receptor CCR5virusesT cellViral pathogenesisDiseaseLigandsModels BiologicalGeneral Biochemistry Genetics and Molecular BiologyHistory and Philosophy of Sciencecardiovascular diseaseAlzheimer DiseasemedicineHumansMacrophageSettore MED/04 - Patologia GeneraleInflammationGenomebiologyEffectorMacrophagesGeneral Neurosciencevirus diseasesDendritic CellsAtherosclerosisKiller Cells Naturalmedicine.anatomical_structureCardiovascular DiseasesImmunologybiology.proteinMicrogliaCC chemokine receptorsAlzheimer’s diseaseCCR5Gene DeletionAnnals of the New York Academy of Sciences
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Immunological and immunogenetic markers in sporadic Alzheimer’s disease

2006

Background: Common polymorphisms of genes controlling inflammation-modulating cytokines and acute-phase proteins which play important roles in the pathogenesis of Alzheimer''s disease (AD) have been shown to be associated with AD. Aims: The immunological and immunogenetic markers potentially useful for the AD risk evaluation and diagnosis are briefly reviewed. Conclusion: The state-of-the-art of immunological and immunogenetic markers of AD indicates that new tools and strategies are necessary to identify gene products useful as diagnostic tools.

AgingDiseaseImmunogeneticsDiagnostic toolsProteomicsPathogenesisApolipoproteins EAlzheimer DiseaseHumansMedicineOligonucleotide Array Sequence AnalysisInflammationAlzheimer’s disease cytokines immunogenetics inflammation proteomicsPolymorphism GeneticGeriatrics gerontologybusiness.industryDNARisk evaluationGene Expression RegulationPositron-Emission TomographyImmunologyCytokinesMicrogliaGeriatrics and GerontologybusinessBiomarkersAcute-Phase ProteinsAging Clinical and Experimental Research
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Function of Glia in Aging and the Brain Diseases.

2019

Microglia cells during aging, neurodegeneration and neuroinflammation show different morphological and transcriptional profiles (related to axonal direction and cell adhesion). Furthermore, expressions of the receptors on the surface and actin formation compared to young are also different. This review delves into the role of glia during aging and the development of the diseases. The susceptibility of different regions of the brain to disease are linked to the overstimulation of signals related to the immune system during aging, as well as the damaging impact of these cascades on the functionality of different populations of microglia present in each region of the brain. Furthermore, a decr…

AgingDiseaseReviewBiologyBlood–brain barrier03 medical and health sciences0302 clinical medicineImmune systemmedicineHumansCell adhesionReceptorNeuroinflammationBrain DiseasesMicrogliaglia.NeurodegenerationBrainGeneral Medicinemedicine.diseasemedicine.anatomical_structureGene Expression RegulationBlood-Brain Barrier030211 gastroenterology & hepatologyMicrogliaNeuroscienceNeuroglia
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Aging and neuroinflammatory disorders: New biomarkers and therapeutic targets

2019

: Chronic neuroinflammation is a common feature of the pathogenic mechanisms involved in various neurodegenerative age-associated disorders, such as Alzheimer's disease, multiple sclerosis, Parkinson’s disease, and dementia. : In particular, persistent low-grade inflammation may disrupt the brain endothelial barrier and cause a significant increase of pro-inflammatory cytokines and immune cells into the cerebral tissue that, in turn, leads to microglia dysfunction and loss of neuroprotective properties. : Nowadays, growing evidence highlights a strong association between persistent peripheral inflammation, as well as metabolic alterations, and neurodegenerative disorder susceptibility. The…

AgingInflammationDiseaseNeurodegenerative diseaseNeuroprotection03 medical and health sciences0302 clinical medicineImmune systemDrug DiscoverymedicineDementiaHumansTherapeutic targetsNeuroinflammation030304 developmental biologyPharmacologyInflammation0303 health sciencesMicrogliabusiness.industryMultiple sclerosisNeurodegenerative DiseasesBiomarkermedicine.diseasemedicine.anatomical_structureMicrogliamedicine.symptombusinessNeuroscienceNeuroinflammatory030217 neurology & neurosurgeryBiomarkers
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Cannabinoid receptor 1 deficiency in a mouse model of Alzheimer's disease leads to enhanced cognitive impairment despite of a reduction in amyloid de…

2012

Alzheimer's disease (AD) is characterized by amyloid-beta deposition in amyloid plaques, neurofibrillary tangles, inflammation, neuronal loss, and cognitive deficits. Cannabinoids display neuromodulatory and neuroprotective effects and affect memory acquisition. Here, we studied the impact of cannabinoid receptor type 1 (CB1) deficiency on the development of AD pathology by breeding amyloid precursor protein (APP) Swedish mutant mice (APP23), an AD animal model, with CB1-deficient mice. In addition to the lower body weight of APP23/CB1(-/-) mice, most of these mice died at an age before typical AD-associated changes become apparent. The surviving mice showed a reduced amount of APP and its …

Agingmedicine.medical_specialtyPathologyCannabinoid receptormedicine.medical_treatmentMutantMice TransgenicInflammationDiseaseNeuroprotectionAmyloid beta-Protein PrecursorMiceReceptor Cannabinoid CB1Alzheimer DiseaseCell Line TumorInternal medicinemental disordersmedicineAmyloid precursor proteinAnimalsHumansMaze LearningCognitive impairmentAmyloid beta-Peptidesbiologybusiness.industryGeneral NeuroscienceBody WeightAge FactorsBrainPeptide FragmentsDisease Models AnimalEndocrinologyGene Expression RegulationMutationbiology.proteinlipids (amino acids peptides and proteins)MicrogliaNeurology (clinical)CannabinoidGeriatrics and Gerontologymedicine.symptomCognition DisordersbusinessDevelopmental BiologyNeurobiology of Aging
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Lipocalin-2 Regulates Hippocampal Microglial Activation in Poststroke Depression

2021

Background and Purpose: Microglia play important role in poststroke depression (PSD), however, the exact mechanism was still unclear. The purpose of the study was to study the mechanism of microglial activation in PSD.Methods: 24 rats were randomly divided into three groups: the PSD group (n = 10), the poststroke (PS) group (n = 7), and the sham group (n = 7). Primary hippocampal microglia were isolated and cultured, and recombined LCN2 protein was used to stimulate the cultured microglia. The protein expression of Iba1, P38 MAPK and PP38 MAPK was analyzed by western blotting; the LCN2 expression was measured by RT-qPCR, the serum LCN2 level and the NO level were analyzed by ELISA.Results: …

Agingpoststroke depression (PSD)nervous systemCognitive NeuroscienceAging NeurosciencemicrogliahippocampiLipocalin-2 (Lcn2)Neurosciences. Biological psychiatry. Neuropsychiatryp38 mitogen-activated protein kinase (p38 MAPK)psychological phenomena and processesOriginal ResearchRC321-571Frontiers in Aging Neuroscience
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Fingolimod as a Treatment in Neurologic Disorders Beyond Multiple Sclerosis

2020

Abstract Fingolimod is an approved treatment for relapsing–remitting multiple sclerosis (MS), and its properties in different pathways have raised interest in therapy research for other neurodegenerative diseases. Fingolimod is an agonist of sphingosine-1-phosphate (S1P) receptors. Its main pharmacologic effect is immunomodulation by lymphocyte homing, thereby reducing the numbers of T and B cells in circulation. Because of the ubiquitous expression of S1P receptors, other effects have also been described. Here, we review preclinical experiments evaluating the effects of treatment with fingolimod in neurodegenerative diseases other than MS, such as Alzheimer’s disease or epilepsy. Fingolimo…

AgonistSphingosine 1 Phosphate Receptor ModulatorsMultiple Sclerosismedicine.drug_classDrug Evaluation PreclinicalDiseaseReview ArticleRM1-950PharmacologyNeuroprotection03 medical and health sciencesEpilepsyMice0302 clinical medicineNeurotrophic factorsAlzheimer DiseasemedicineAnimalsHumansLymphocytes030304 developmental biologyPharmacology0303 health sciencesEpilepsyMicrogliabusiness.industryFingolimod HydrochlorideMultiple sclerosisAnti-Inflammatory Agents Non-Steroidalmedicine.diseaseFingolimod3. Good healthRatsDisease Models Animalmedicine.anatomical_structureNeuroprotective AgentsTherapeutics. PharmacologyNervous System Diseasesbusiness030217 neurology & neurosurgerymedicine.drugDrugs in R&D
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Biological activities of Schottenol and Spinasterol, two natural phytosterols present in argan oil and in cactus pear seed oil, on murine miroglial B…

2014

International audience; The objective of this study was to evaluate the biological activities of the major phytosterols present in argan oil (AO) and in cactus seed oil (CSO) in BV2 microglial cells. Accordingly, we first determined the sterol composition of AO and CSO, showing the presence of Schottenol and Spinasterol as major sterols in AO. While in CSO, in addition to these two sterols, we found mainly another sterol, the Sitosterol. The chemical synthesis of Schottenol and Spinasterol was performed. Our results showed that these two phytosterols, as well as sterol extracts from AO or CSO, are not toxic to microglial BV2 cells. However, treatments by these phytosterols impact the mitoch…

Argan oilABCA1Biochemistrychemistry.chemical_compoundMice0302 clinical medicineSchottenolBV2 cellspolycyclic compoundsCactus oilATP Binding Cassette Transporter Subfamily G Member 1Liver X ReceptorsMembrane Potential Mitochondrial0303 health sciencesbiologyOpuntiafood and beveragesPhytosterolsOrphan Nuclear ReceptorsSterolsBiochemistryABCG1030220 oncology & carcinogenesisSeeds[PHYS.COND.CM-MS]Physics [physics]/Condensed Matter [cond-mat]/Materials Science [cond-mat.mtrl-sci]lipids (amino acids peptides and proteins)LXRMicrogliaATP Binding Cassette Transporter 1food.ingredientABCG1LipoproteinsBiophysicsStigmasterol[ PHYS.COND.CM-MS ] Physics [physics]/Condensed Matter [cond-mat]/Materials Science [cond-mat.mtrl-sci]Ficus indicaCell Line03 medical and health sciencesfoodAnimalsPlant OilsLiver X receptorMolecular BiologySpinasterol030304 developmental biologyCholesterolCell BiologySitosterolsSterolSpinasterolchemistryNuclear receptorGene Expression RegulationArgan oilABCA1biology.proteinATP-Binding Cassette Transporters
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Pharmacological blockade of the fatty acid amide hydrolase (FAAH) alters neural proliferation, apoptosis and gliosis in the rat hippocampus, hypothal…

2015

Endocannabinoids participate in the control of neurogenesis, neural cell death and gliosis. The pharmacological effect of the fatty acid amide hydrolase (FAAH) inhibitor URB597, which limits the endocannabinoid degradation, was investigated in the present study. Cell proliferation (phospho-H3(+) or BrdU(+) cells) of the main adult neurogenic zones as well as apoptosis (cleaved caspase-3(+)), astroglia (GFAP(+)), and microglia (Iba1(+) cells) were analyzed in the hippocampus, hypothalamus and striatum of rats intraperitoneally treated with URB597 (0.3 mg/kg/day) at one dose/4-days resting or 5 doses (1 dose/day). Repeated URB597 treatment increased the plasma levels of the N-acylethanolamine…

AstrocitosNeurobiologia del desenvolupamentAmidohidrolasasCannabinoid receptorCarbamatos:Chemicals and Drugs::Amino Acids Peptides and Proteins::Proteins::Intracellular Signaling Peptides and Proteins::Apoptosis Regulatory Proteins::Caspases [Medical Subject Headings]:Phenomena and Processes::Cell Physiological Phenomena::Cell Physiological Processes::Cell Differentiation::Neurogenesis [Medical Subject Headings]medicine.medical_treatment:Chemicals and Drugs::Carbohydrates::Monosaccharides::Hexoses::Glucose [Medical Subject Headings]Apoptosis:Phenomena and Processes::Physiological Phenomena::Body Constitution::Body Weights and Measures::Body Size::Body Weight [Medical Subject Headings]chemistry.chemical_compound:Chemicals and Drugs::Amino Acids Peptides and Proteins::Proteins::Membrane Proteins::Receptors Cell Surface::Receptors G-Protein-Coupled::Receptors Cannabinoid::Receptor Cannabinoid CB1 [Medical Subject Headings]0302 clinical medicine:Chemicals and Drugs::Organic Chemicals::Carboxylic Acids::Acids Acyclic::Carbamates [Medical Subject Headings]Fatty acid amide hydrolaseReceptor cannabinoide CB1:Organisms::Eukaryota::Animals [Medical Subject Headings]FAAHGliosishealth care economics and organizations:Chemicals and Drugs::Nucleic Acids Nucleotides and Nucleosides::Nucleosides::Deoxyribonucleosides::Deoxyuridine::Bromodeoxyuridine [Medical Subject Headings]:Chemicals and Drugs::Lipids::Glycerides::Triglycerides [Medical Subject Headings]Original Research0303 health sciencesNeurogenesisBenzamidas:Chemicals and Drugs::Polycyclic Compounds::Steroids::Cholestanes::Cholestenes::Cholesterol [Medical Subject Headings]Endocannabinoid systemEtanolaminas3. Good healthEndocannabinoides:Chemicals and Drugs::Lipids::Fatty Acids::Fatty Acids Unsaturated::Fatty Acids Monounsaturated::Oleic Acids [Medical Subject Headings]CannabinoidesMicroglíalipids (amino acids peptides and proteins)medicine.symptomColesterol:Chemicals and Drugs::Organic Chemicals::Hydrocarbons::Terpenes::Cannabinoids [Medical Subject Headings]:Chemicals and Drugs::Lipids::Fatty Acids::Palmitic Acids [Medical Subject Headings]psychological phenomena and processesProliferación celularmedicine.medical_specialtyCerebroNeurogenesiseducationBiologyBromodesoxiuridina:Anatomy::Nervous System::Neuroglia::Microglia [Medical Subject Headings]Triglicéridoslcsh:RC321-571Ácidos oléicosRatas03 medical and health sciencesCellular and Molecular NeuroscienceInternal medicineHipocampomedicineCaspasa 3:Anatomy::Nervous System::Central Nervous System::Brain::Limbic System::Hippocampus [Medical Subject Headings]:Phenomena and Processes::Cell Physiological Phenomena::Cell Physiological Processes::Cell Growth Processes::Cell Proliferation [Medical Subject Headings]lcsh:Neurosciences. Biological psychiatry. Neuropsychiatry030304 developmental biologyPalmitoylethanolamide:Chemicals and Drugs::Chemical Actions and Uses::Pharmacologic Actions::Molecular Mechanisms of Pharmacological Action::Neurotransmitter Agents::Endocannabinoids [Medical Subject Headings]:Chemicals and Drugs::Enzymes and Coenzymes::Enzymes::Hydrolases::Amidohydrolases [Medical Subject Headings]Cannabinoids:Anatomy::Cells::Neuroglia::Astrocytes [Medical Subject Headings]Peso corporalEnergy metabolism:Anatomy::Nervous System::Central Nervous System::Brain [Medical Subject Headings]:Anatomy::Nervous System::Central Nervous System::Brain::Limbic System::Hypothalamus [Medical Subject Headings]URB597:Phenomena and Processes::Cell Physiological Phenomena::Cell Physiological Processes::Cell Death [Medical Subject Headings]:Diseases::Pathological Conditions Signs and Symptoms::Pathologic Processes::Gliosis [Medical Subject Headings]:Chemicals and Drugs::Organic Chemicals::Amines::Amino Alcohols::Ethanolamines [Medical Subject Headings]Muerte celular:Phenomena and Processes::Cell Physiological Phenomena::Cell Physiological Processes::Cell Death::Apoptosis [Medical Subject Headings]:Organisms::Eukaryota::Animals::Chordata::Vertebrates::Mammals::Rodentia::Muridae::Murinae::Rats [Medical Subject Headings]EndocrinologyURB597chemistryGliosisnervous systemGlucosaCannabinoidEnergy Metabolism:Chemicals and Drugs::Organic Chemicals::Amides::Benzamides [Medical Subject Headings]HipotálamoÁcidos palmíticos030217 neurology & neurosurgeryNeuroscienceFrontiers in Cellular Neuroscience
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