Immune Regulation of CNS Viral Recrudescence
Immune Regulation of CNS Viral Recrudescence
批准号:
7455850
负责人:
Cornelia Bergmann
金额:
$37.89万
依托单位国家:
美国
项目类别:
财政年份:
2001
资助国家:
美国
项目状态:
已结题
起止时间:
2001-05-15 至 2011-06-30
关键词:
AcuteAntibodiesAntibody SpecificityAstrocytesAutoimmune DiseasesB-LymphocytesBindingBone MarrowCD8B1 geneCXCL10 geneCXCL12 geneCXCL9 geneCXCR3 geneCXCR4 geneCell Differentiation processCell SurvivalCellsCentral Nervous System InfectionsChimera organismChronicCoronavirusCoronavirus InfectionsDemyelinating DiseasesDemyelinationsDiseaseDown-RegulationEncephalomyelitisEventExperimental Animal ModelFlow CytometryFrequenciesGoalsGreen Fluorescent ProteinsHIVHeterogeneityHomingHumanHumoral ImmunitiesImmuneImmunizationImmunoglobulin-Secreting CellsInfectionInflammationInflammatoryJC VirusKineticsLifeLigandsLocalizedLymphoidLymphoid TissueMaintenanceMeasles virusMediatingMediator of activation proteinMemory B-LymphocyteModelingMonitorMultiple SclerosisNeuraxisNeurologicNumbersOrganPathologyPathway interactionsPeripheralPersonal SatisfactionPlasma CellsPopulationReactionRecrudescencesRecruitment ActivityRegulationRelative (related person)Research PersonnelRoleRubella virusSecondary toSerumSignal TransductionSiteSourceStagingStructure of germinal center of lymph nodeT-LymphocyteTechniquesTimeTissuesTracerTransgenic MiceViralVirusVirus Diseasescell motilitycell typechemokinedifferentiated B cellenzyme linked immunospot assayinsightmigrationmortalityneurotropicneurotropic virusnovelpreventprogramsresearch studyrespiratoryresponsetrafficking
中文摘要
描述(由申请方提供):负责维持体液免疫的主要细胞类型是抗体分泌细胞(ASC)。在外周感染后,ASC优先迁移到骨髓(BM),在那里它们分化成专门用于免疫球蛋白(IG)分泌的长寿命固着浆细胞(PC)。然而,ASC也被吸引到炎症部位,在那里它们可以像BM一样持续很长时间。鞘内抗体(Ab)的合成在人类与神经系统并发症和脱髓鞘疾病多发性硬化症(MS)相关的感染过程中得到了很好的证明。虽然抗体可能导致病理学,但中枢神经系统(CNS)内的局部分泌也可能在控制嗜神经病毒方面具有保护作用。然而,B细胞迁移到中枢神经系统,并在当地的生存知之甚少。本提案的总体目标是确定介导嗜神经冠状病毒诱导的急性脑脊髓炎后CNS中ASC归巢、分化和维持的因素。我们已经表明,在感染性病毒被清除后,病毒特异性ASC(vASC)在CNS中达到峰值,并且它们以高频率保留可防止病毒复发。具体目的是:1)表征CNS内ASC的分化和特异性; 2)鉴定调节优先vASC迁移至CNS的信号; 3)确定CNS定位的Ag与趋化因子在调节ASC保留中的相对作用; 4)证明BAFF是CNS内ASC的主要存活因子。使用一种新的转基因小鼠,称为Blimpgfp/+,流式细胞术和ELISPOT技术的组合将表征GFP+ ASC群体独特的中枢神经系统和他们的潜力,分化成固着PC。使用部分骨髓嵌合体以及趋化因子抑制来评估病毒诱导的趋化因子作为CNS ASC募集到CNS的主要信号的作用。用示踪剂Ag免疫将监测病毒感染后“旁观者”ASC向CNS的募集和保留。了解与持续CNS感染相关的体液免疫调节将揭示人类CNS持续感染期间鞘内ASC存活的新见解,即麻疹病毒,风疹病毒,JC病毒和HIV。它们在与有限的持续炎症相关的病毒持续存在模型中的保护作用可能将它们与慢性炎症性自身免疫性疾病期间普遍存在的有害事件区分开来。
英文摘要
DESCRIPTION (provided by applicant): The major cell types responsible for maintaining humoral immunity are antibody secreting cells (ASC). Following peripheral infections, ASC preferentially migrate to bone marrow (BM), where they differentiate into long lived sessile plasma cells (PC) dedicated to immunoglobubulin (Ig) secretion. However, ASC are also drawn to inflammatory sites, where they can persist for prolonged periods similar to the BM. Intrathecal antibody (Ab) synthesis is well documented in humans during infections associated with neurological complications and the demyelinating disease multiple sclerosis (MS). Although antibody may contribute to pathology, local secretion within the central nervous system (CNS) may also be protective in controlling neurotropic viruses. However, B cell migration to the CNS, and local survival are poorly understood. The overall goal of this proposal is to identify factors mediating ASC homing, differentiation and maintenance in the CNS following acute encephalomyelitis induced by neurotropic coronavirus. We have shown that virus specific ASC (vASC) peak in the CNS after infectious virus is cleared and their retention at high frequencies prevents viral recrudescence. The Specific Aims are to 1) characterize differentiation and specificities of ASC within the CNS; 2) identify signals regulating preferential vASC migration into the CNS; 3) determine the relative role of CNS localized Ag versus chemokines in regulating ASC retention and 4) demonstrate that BAFF is the major survival factor for ASC within the CNS. Using a novel transgenic mouse, termed Blimpgfp/+, a combination of flow cytometry and ELISPOT techniques will characterize GFP+ ASC populations unique to the CNS and their potential to differentiate into sessile PC. The role of virus induced chemokines as major signals for CNS ASC recruitment into the CNS are assessed using partial bone marrow chimeras as well as chemokine inhibition. Immunization with a tracer Ag will monitor recruitment and retention of 'bystander' ASC to the CNS following viral infection. Understanding the regulation of humoral immunity associated with persistent CNS infection will reveal novel insights into intrathecal ASC survival during persistent infections of the human CNS, i.e. measles virus, rubella virus, JC virus, and HIV. Their protective role in a model of viral persistence associated with limited ongoing inflammation may distinguish them from detrimental events prevailing during chronic inflammatory autoimmune diseases.
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会议论文
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资助金额:$37.84万
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负责人:Cornelia Bergmann
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依托单位:
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批准号:8507825
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项目类别:
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资助金额:$39.25万
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财政年份:2012
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负责人:Cornelia Bergmann
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依托单位:
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依托单位:
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依托单位:
海外基金