The Mechanisms of Estrogen Receptor Beta Ligand Mediated Neuroprotection
The Mechanisms of Estrogen Receptor Beta Ligand Mediated Neuroprotection
批准号:
9253023
负责人:
Youn-Jung Roy Kim
金额:
$3.52万
依托单位国家:
美国
项目类别:
财政年份:
2016
资助国家:
美国
项目状态:
已结题
起止时间:
2016-04-01 至 2018-03-31
关键词:
Alpha CellAnimal ModelAnti-Inflammatory AgentsAnti-inflammatoryAntigensAstrocytesAutoimmune DiseasesBindingBloodBone MarrowBrainBrain-Derived Neurotrophic FactorCell SeparationCell physiologyCellsChimera organismClinicalCognitionConfocal MicroscopyCre-LoxPCuprizoneDemyelinationsDendritic CellsDevelopmentDiseaseDisease ProgressionDisease modelEffectivenessEnvironmentEstriolEstrogen Receptor alphaEstrogen Receptor betaEstrogen ReceptorsEstrogensExperimental Autoimmune EncephalomyelitisFlow CytometryGene Expression ProfilingHematopoietic stem cellsITGAX geneImmuneImmune responseImmune systemImmunofluorescence MicroscopyInflammationInflammatoryInterferon Type IIInterleukin-1 betaInterleukin-10Interleukin-12Interleukin-4InvestigationKnock-outKnockout MiceLigandsLoxP-flanked alleleMediatingMemoryMicrogliaModelingMonitorMultiple SclerosisMusMyelinNerve DegenerationNeuraxisNeurodegenerative DisordersNeuronsOligodendrogliaPathway interactionsPeripheralPhenotypePlayPopulationPregnancyProcessPropertyRelapseReportingRestRoleSignal TransductionStructure of choroid plexusSynaptic plasticitySystemT-LymphocyteTNF geneTREM2 geneThird Pregnancy Trimesteraxon injurycell typecytokinediarylpropionitriledisabilityimmunoregulationimprovedin vivomRNA Expressionmouse modelmultiple sclerosis patientmultiple sclerosis treatmentneuroprotectionneurotoxicpreclinical studypreferencepregnantpreventpromoterpublic health relevancerecombinaseremyelinationrepaired
中文摘要
点击翻译按钮获取中文摘要
英文摘要
DESCRIPTION (provided by applicant): Multiple sclerosis (MS) is an autoimmune disease characterized by inflammation and demyelination of the central nervous system (CNS). The most widely used animal model for MS is experimental autoimmune encephalomyelitis (EAE). EAE is initiated by Th1/Th17-mediated immune responses causing demyelination and axonal damage. Current MS treatments have immunomodulatory effects and reduce relapse rates in MS patients, but have modest effects on disability progression. There is a need to develop new treatments that are neuroprotective and understand their mechanisms to halt disability progression. Administration of estrogens and estrogen receptor (ER) specific-ligands in neurodegenerative disease models has neuroprotective effects. Specifically, our lab has shown that treatment with the ERβ-ligand is neuroprotective during EAE by providing clinical disease protection, preserving neurons, preventing demyelination and promoting remyelination. With increasing evidence that ERβ plays an important role in synaptic plasticity, improving memory, brain development and cognition, we focus on understanding the mechanisms of ERβ-ligand treatment on neuroprotection. Recently, using a cell specific approach by creating conditional knockouts (CKO) of ERβ in cells of the CNS, we shown that ERβ expression on astrocyte and neurons do not play an important role for mediating neuroprotective effects of ERβ-ligand treatment during EAE. In contrast, a subsequent study reported that oligodendrocytes may play a role, however, the mechanism remains unclear. This project will focus on investigating whether the neuroprotective effects of ERβ-ligand treatment are mediated through immune cells of the CNS, microglial cells and dendritic cells (DCs). Microglial cells and DCs share similar phenotypes and lineage properties, however, they are located in different environments. Microglial cells are resident CNS immune cells and DCs reside near the boundaries of the brain, such as the choroid plexus and perivascular space. DCs have a specific marker CD11c to study them, although, recently it has been reported that activated microglial cells also express CD11c during EAE. Therefore, studying the function of these cells in vivo using one marker has been difficult to achieve. In this proposal, we will utilize the DCs marker, CD11c, for cell sorting and
creating bone marrow chimeras to distinguish the effect of ERβ-ligand treatment between CD11c+ microglial cells versus DCs. In addition, we understand the underlying mechanisms of ERβ signaling in each cell type through immunofluorescence and confocal microscopy, flow cytometry and mRNA expression analyses.
期刊论文(0)
专著(0)
科研奖励(0)
会议论文
The Mechanisms of Estrogen Receptor Beta Ligand Mediated Neuroprotection
-
批准号:9124505
-
项目类别:
-
资助金额:$3.52万
-
财政年份:2016
-
负责人:Youn-Jung Roy Kim
-
依托单位:
海外基金