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Metabolic syndrome and hippocampal Ca2+ dysregulation in aging-related memory dec

Metabolic syndrome and hippocampal Ca2+ dysregulation in aging-related memory dec
衰老相关记忆衰退中的代谢综合征和海马 Ca2+ 失调
批准号:
7904136
负责人:
Olivier Thibault
金额:
$29.55万
依托单位:
依托单位国家:
美国
项目类别:
财政年份:
2009
资助国家:
美国
项目状态:
已结题
起止时间:
2009-08-01 至 2014-07-31
关键词:
2,4-thiazolidinedioneAddressAdipose tissueAffectAgeAge-MonthsAge-associated memory impairmentAgingAgonistAlzheimer&aposs DiseaseAlzheimer&aposs disease modelAmyloidAnimalsAttenuatedBehavioralBiological MarkersBrainCellsCholesterolClinicalCognitionCognitiveComplementDevelopmentDiabetes MellitusDietDown-RegulationDrug usageDyslipidemiasEnsureEpidemicEpidemiologyExhibitsFatty acid glycerol estersFunctional disorderGene ExpressionGenesGlucoseGoalsGrantHippocampus (Brain)HomeostasisHyperglycemiaHyperinsulinismHypertensionImageImpaired cognitionInbred F344 RatsIncidenceIndividualInflammationInsulinInsulin ResistanceInsulin Signaling PathwayInterventionLearningLinkLongitudinal StudiesMeasuresMediatingMemoryMemory impairmentMetabolicMetabolic Brain DiseasesMetabolic MarkerMetabolic PathwayMetabolic syndromeMonitorMouse StrainsN-Methyl-D-Aspartate ReceptorsNeurobiologyNeuronsObesityObesity associated diseaseOutcome MeasurePPAR gammaPathway interactionsPatientsPeripheralPharmaceutical PreparationsPioglitazoneProcessPublic HealthRattusRegulationReportingResearchResistanceRodentRodent ModelSeriesShort-Term MemorySignal PathwaySignal TransductionSliceSocietiesSynaptic plasticityTechniquesTestingThiazolidinedionesTimeTissue SampleTissuesVascular DiseasesWorkage effectage relatedagedaging brainaging genebrain cellcognitive functioncytokinediabeticdirect applicationfeedingglycemic controlimprovedindexinginsulin sensitivityinsulin signalingmalemultidisciplinarynew therapeutic targetnormal agingpreventpublic health relevanceresearch studyresponsevoltage

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中文摘要
翻译
描述(申请人提供):越来越多的流行病学和实验证据表明,与代谢综合征相关的因素,包括葡萄糖失调、胰岛素不敏感和/或肥胖,与衰老中的认知能力下降有关。此外,肥胖和代谢综合征的发病率正在接近流行病的比例。噻唑烷二酮(TZD)是选择性的PPAR3激动剂,可以改善代谢综合征的几个方面,包括降低2型糖尿病患者的胰岛素抵抗、血糖和胆固醇水平,还与减少阿尔茨海默病(AD)模型中的炎症和2-淀粉样蛋白负荷有关。然而,将外周代谢综合征与脑功能障碍联系起来的机制仍然知之甚少,很少有研究分析老年动物的这些外周-大脑关系。在过去的几年里,我们和其他人发现了大量的电生理和成像证据,表明海马钙调节失调与衰老与认知能力下降有关。最近,我们的基因芯片研究还揭示了与衰老相关的记忆障碍相关的海马体胰岛素和葡萄糖信号的下调。在这里,我们将检验一种工作假说,即代谢综合征的外周成分通过作用于L型电压门控钙通道(L-VGCCs)、NMDARs、钙诱导的钙释放和钙依赖的后超极化,从而对突触可塑性和认知功能产生负面影响,从而导致海马区钙稳态的改变。我们还将测试这一假设,即这些作用部分是由大脑胰岛素/葡萄糖信号通路的变化介导的,并可以被TZD抵消。具体目标1将研究饲喂正常饲料的F344雄性大鼠,并在7-8和18-20个月龄时确定代谢紊乱的哪个成分与认知功能和海马电生理/成像功能(L-VGCCs、NMDARs、CICR、AHPs和LTP)最密切相关。具体目标#2将测试饮食诱导的肥胖(DIO)是否会加剧大脑老化的神经生物学、认知、基因表达和神经病理指标,以及TZDS的干预是否可以减缓或逆转这一过程。具体目标#3将分析胰岛素对海马片的影响,测试对衰老的电生理标记物的直接影响,并将测试来自老年动物的神经元表现出胰岛素抵抗的亚假说。总而言之,这些多学科研究将提供第一批系统分析导致外周代谢综合征的变量和大脑老化的细胞机制之间的联系。因此,即使中心假说被推翻,拟议的研究也将为代谢综合征的影响以及TZD对大脑的作用提供更确凿的证据。与公共卫生相关的代谢综合征和糖尿病是与年龄和肥胖相关的疾病,在我们的社会中正迅速接近流行比例。最近的研究表明,代谢综合征和认知能力下降之间可能存在联系。外周代谢失调的个别成分可能对大脑功能产生负面影响的潜在机制尚不清楚。我们的研究将确定大脑老化、糖尿病和肥胖之间的新联系。如果成功,我们的项目可能会通过提供强有力的线索来帮助确定新的治疗靶点和防止认知老化,从而影响公众健康。
英文摘要
DESCRIPTION (provided by applicant): Increasing epidemiological and experimental evidence shows that factors associated with metabolic syndrome, including glucose dysregulation, insulin insensitivity, and/or obesity, are linked to cognitive decline in aging. Moreover, the incidence of obesity and metabolic syndrome are approaching epidemic proportions. The thiazolidinediones (TZD), selective peroxisome proliferator-activated receptor-gamma (PPAR3) agonists, improve several aspects of metabolic syndrome including lowering insulin resistance, glucose and cholesterol levels in Type 2 diabetics, and have also been linked to decreased inflammation and 2-amyloid load in models of Alzheimer's disease (AD). However, the mechanisms that link peripheral metabolic syndrome to brain dysfunction are still poorly understood, and few studies have analyzed these periphery-brain relationships in aged animals. Over the past years, we and others have found considerable electrophysiological and imaging evidence that hippocampal Ca2+ dysregulation with aging correlates with cognitive decline. Recently, our gene microarray studies also revealed downregulation of hippocampal insulin and glucose signaling that correlated with aging-related memory impairment. Here, we will test the working hypothesis that peripheral components of metabolic syndrome induce alterations in Ca2+ homeostasis in the hippocampus by acting on L-type voltage-gated Ca2+ channels (L-VGCCs), NMDARs, Ca2+-induced Ca2+ release (CICR), and the Ca2+-dependent afterhyperpolarization (AHP), thereby negatively affecting synaptic plasticity (LTP) and cognitive function. We will also test the hypothesis that these actions are mediated in part by changes in brain insulin/glucose signaling pathways and can be counteracted by TZDs. Specific Aim # 1 will study F344 male rats fed a normal diet and determine, at 7-8 and 18-20 months of age, which component of metabolic dysregulation most closely associates with measures of cognitive function, and hippocampal electrophysiological/imaging function (L-VGCCs, NMDARs, CICR, AHPs, and LTP). Specific Aim #2 will test whether diet-induced obesity (DIO) exacerbates neurobiological, cognitive, gene expression and neuropathological indices of brain aging and whether interventions with TZDs can slow or reverse this process. Specific Aim #3 will analyze the effects of insulin on hippocampal slices, testing for direct effects on electrophysiological markers of aging, and will test the sub-hypothesis that neurons from aged animals exhibit insulin resistance. Together, these multidisciplinary studies will provide one of the first systematic analyses of links between variables contributing to peripheral metabolic syndrome and cellular mechanisms of brain aging. Therefore, even if the central hypothesis is rejected, the studies proposed will provide more definitive evidence for the impact o metabolic syndrome, as well as the actions of TZDs, on the brain. PUBLIC HEALTH RELEVANCE Metabolic syndrome and diabetes are age- and obesity-related diseases that are rapidly approaching epidemic proportions in our society. Recent studies indicate that there may be a link between metabolic syndrome and cognitive decline. The underlying mechanisms through which individual components of peripheral metabolic dysregulation can negatively impact brain function are not known. Our research will identify new links between brain aging, diabetes and obesity. If successful, our project could impact public health by providing strong clues to help identify novel therapeutic targets and prevent cognitive decline in aging.
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Metabolic syndrome and hippocampal Ca2+ dysregulation in aging memory decline
  • 批准号:
    8111933
  • 项目类别:
  • 资助金额:
    $28.4万
  • 财政年份:
    2009
  • 负责人:
    Olivier Thibault
  • 依托单位:
Metabolic syndrome and hippocampal Ca2+ dysregulation in aging memory decline
  • 批准号:
    8510539
  • 项目类别:
  • 资助金额:
    $26.84万
  • 财政年份:
    2009
  • 负责人:
    Olivier Thibault
  • 依托单位:
Metabolic syndrome and hippocampal Ca2+ dysregulation in aging-related memory dec
  • 批准号:
    7741837
  • 项目类别:
  • 资助金额:
    $29.85万
  • 财政年份:
    2009
  • 负责人:
    Olivier Thibault
  • 依托单位:
Metabolic syndrome and hippocampal Ca2+ dysregulation in aging memory decline
  • 批准号:
    8306213
  • 项目类别:
  • 资助金额:
    $28.4万
  • 财政年份:
    2009
  • 负责人:
    Olivier Thibault
  • 依托单位:
海外基金