High-Fat Diets and Memory Loss With Aging
High-Fat Diets and Memory Loss With Aging
批准号:
8852523
负责人:
Ann-Charlotte Esther Granholm-Bentley
金额:
$27.15万
依托单位国家:
美国
项目类别:
财政年份:
2012
资助国家:
美国
项目状态:
已结题
起止时间:
2012-09-01 至 2016-05-31
关键词:
AffectAgeAgingAging-Related ProcessAlbuminsAnimalsBiochemicalBlood - brain barrier anatomyBrainBrain StemCell CountCellsChimera organismCholesterolCognitiveCollaborationsDataDenervationDevelopmentDietEventExposure toFatty acid glycerol estersGenerationsGenesHippocampal FormationHippocampus (Brain)ImageImpaired cognitionInfiltrationInflammationInflammatoryInflammatory ResponseInjection of therapeutic agentInterleukin-4InterventionLabelLeadLesionLimbic SystemLipopolysaccharidesLongevityMRI ScansMemory LossMicrogliaModelingMonitorNerve DegenerationNeuronsOutcome MeasurePathway interactionsPenetrationPerfusionPeripheralPharmaceutical PreparationsPhenotypePlayPopulationPredispositionPrincipal InvestigatorProductionProgress ReportsPublic HealthRattusRegulationReportingResearchRoleSpecificitySubstantia nigra structureSystemTestingTherapeuticTissue GraftsTissuesToxinage relatedage related neuroinflammationagedaging brainbasebehavioral outcomecognitive performancecognitive testingcytokinedensitydopaminergic neuronfetalfrontal lobein vivolocus ceruleus structuremiddle agemonocytenerve supplyneuroinflammationnoradrenergicnormal agingreceptorresponse
中文摘要
点击翻译按钮获取中文摘要
英文摘要
Aging leads to an increased susceptibility to infiammation, caused by either neuronal degeneration or
external triggers, such as high-fat diets or toxins. Recent studies have suggested that some neuronal
populations in the brain may act as neuroprotective entities, providing regulation at the level of microglial
activation. For example, disruption of locus coeruleus (LC) -noradrenergic (NE) innervation activates
microglial cells and leads to altered function of both hippocam pal neurons and dopam ine neurons of the
substantia nigra (SN). Inflammatory pathways are chronically activated in the aged brain, and elevations in
pro-inflammatory cytokines cause disruption of the blood-brain barrier (BBB) and lead to microglial
activation. NE protection against inflammation functions by regulating the expression of inflammatory genes
in the brain, and NE innervation also affects the integrity of the BBB. Degeneration of LG-NE that occurs in
normal aging may therefore cause the observed inflammatory and BBB-related changes reported, but
mechanisms for these events have not been examined. We propose to investigate the interaction between
LG-NE loss with aging, pro-inflammatory cytokines, BBB integrity, and hippocampal-dependent memory loss.
Two models are proposed: one that inflicts microglial activation by a High-fat/high cholesterol (HFHC) diet,
and one model specific to the brain, using the NE selective toxin DSP-4. We believe that these two models
exacerbate aging processes and can be utilized to examine specificity of NE-influence upon BBB and
neuroinflammation. Reversibility of NE-degeneration induced damage will also be explored using NE-
enhancing drugs. Based on our findings, we propose the following central hypothesis: BBB disruption
occurring with aging is regulated by NE and contributes to age-related neuroinflammation and associated
memory loss.
t
RELEVANCE (See instaicfe'ons):
Age-related memory loss is an increasing public health problem today, due to increased longevity and the
baby boomer generation. Studying basic mechanisms for this problem may lead to translational therapeutic
avenues for treatment and intervention.
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