Synapse function in a mouse model of Alzheimer's disease
Synapse function in a mouse model of Alzheimer's disease
批准号:
7469504
负责人:
MATTHEW E FRERKING
金额:
$6.79万
依托单位国家:
美国
项目类别:
财政年份:
2007
资助国家:
美国
项目状态:
已结题
起止时间:
2007-07-15 至 2009-05-31
关键词:
AddressAgeAge-MonthsAlzheimer&aposs DiseaseAmyloid beta-ProteinAmyloid beta-Protein PrecursorApolipoprotein EAppearanceBehavioralBrain regionCessation of lifeChromosome PairingDefectDepositionEventExhibitsFiberGenesGlutamatesGoalsHippocampus (Brain)Impaired cognitionImpairmentLeadLearningLong-Term PotentiationMemoryMemory LossMethodsModelingMusMutationNeocortexNeurobehavioral ManifestationsNeurodegenerative DisordersNeurofibrillary TanglesNeurologicNeuronsPeptidesPhysiologicalPhysiological ProcessesPrevalenceProductionPropertyProteinsResearchResearch DesignSenile PlaquesSliceStudy modelsSynapsesSynaptic TransmissionSynaptic plasticityTechniquesThinkingTransgenic MiceTransgenic OrganismsVaccinatedWhole-Cell RecordingsWild Type Mouseabeta accumulationamyloid pathologybasefamilial Alzheimer diseaselong term memorymouse modelneurofibrillary tangle formationneuron losspatch clamppostsynapticpresenilinpresenilin-1presenilin-2receptorsynaptic functiontau Proteins
中文摘要
描述(由申请人提供):阿尔茨海默病(AD)是一种神经退行性疾病,导致进行性认知障碍,最明显的是记忆丧失。阿尔茨海默病的特点是神经元丧失,蛋白质沉积(斑块)和神经原纤维缠结在包括海马体在内的许多大脑区域积累,海马体是许多形式的学习和记忆的关键区域。斑块的主要成分-淀粉样蛋白肽的积累被认为是与AD相关的认知障碍的一个因果因素,但β -淀粉样蛋白积累导致这些障碍的生理效应尚不清楚。我们的长期目标是确定β -淀粉样蛋白损害认知的生理机制,以便开发治疗方法来保护这些机制,从而限制AD造成的损害。近年来,已经建立了几种AD转基因小鼠模型。其中一种模型是淀粉样蛋白前体蛋白(APR)和早老素-1 (PS-1)突变的小鼠系,其β -淀粉样蛋白水平强劲而迅速地增加,而没有形成缠结或神经元损失。APP/PS-1小鼠海马突触功能受损,早期出现突触长期可塑性缺陷,后期出现基础突触功能缺陷。然而,这些缺陷背后的机制仍然未知。在本研究中,我们将确定APP/PS-1小鼠突触功能缺陷的机制。应用场电位记录和全细胞膜片钳记录,比较APP/PS-1小鼠和野生型幼崽海马切片的突触特性。将讨论两个具体目标。首先,我们将确定这些小鼠在长期可塑性的早期缺陷和基础突触传递的晚期缺陷中受损的突触机制。其次,我们将确定这些缺陷是否由β -淀粉样蛋白积累引起。本研究将确定APP/PS-1突变导致海马突触功能受损的机制。项目相关性:拟议的研究将确定由β -淀粉样蛋白积累引起的突触缺陷的机制,β -淀粉样蛋白被认为是阿尔茨海默氏症认知障碍的主要因素。
英文摘要
DESCRIPTION (provided by applicant): Alzheimer's disease (AD) is a neurodegenerative disorder that causes progressive cognitive impairments, most notably memory loss. AD is characterized by neuronal loss and by accumulation of protein deposits (plaques) and neurofibrillary tangles in many brain regions including the hippocampus, a region critical for many forms of learning and memory. The build-up of beta-amyloid peptides, a major component of plaques, is thought to be a causal factor in the cognitive impairments associated with AD, but the physiological effects of beta-amyloid accumulation that would cause these impairments are poorly understood. Our long-term objective is to define physiological mechanisms by which beta-amyloids impair cognition, so that therapies may be developed to protect these mechanisms and thereby limit the damage caused by AD. Recently, several transgenic mouse models for AD have been developed. One of these models, a mouse line with mutations in both amyloid precursor protein (APR) and presenilin-1 (PS-1), has a robust and rapid increase in the levels of beta-amyloids, without formation of tangles or neuronal loss. Hippocampal synaptic function in APP/PS-1 mice is impaired, with early defects in long-term synaptic plasticity and later defects in basal synaptic function. However, the mechanisms underlying these defects remain unknown. In the proposed research, we will identify mechanisms underlying the defects in synaptic function in APP/PS-1 mice. Synaptic properties will be compared in hippocampal slices from APP/PS-1 mice and wild- type littermates, using field potential recordings and whole-cell patch clamp recordings. Two specific aims will be addressed. First, we will identify the synaptic mechanisms that are impaired in these mice during early defects in long-term plasticity, and during late defects in basal synaptic transmission. Second, we will determine whether these defects are caused by the accumulation of beta-amyloids. The proposed research will identify the mechanisms by which APP/PS-1 mutations lead to impaired synaptic function in the hippocampus. Project relevance: The proposed research will identify mechanisms underlying synaptic defects caused by accumulation of beta-amyloids, which is thought to be a major factor in the cognitive impairments in AD.
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批准号:7208370
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批准号:7997239
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财政年份:2007
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负责人:MATTHEW E FRERKING
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批准号:8197539
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资助金额:$24.01万
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财政年份:2007
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负责人:MATTHEW E FRERKING
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Hippocampal synaptic dynamics during realistic patterns of afferent activity
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批准号:7541371
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项目类别:
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资助金额:$24.26万
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财政年份:2007
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负责人:MATTHEW E FRERKING
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Hippocampal synaptic dynamics during realistic patterns of afferent activity
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财政年份:2007
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Kainate Receptors on Hippocampal Interneurons
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批准号:6748177
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项目类别:
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资助金额:$28.69万
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财政年份:2003
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负责人:MATTHEW E FRERKING
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依托单位:
Kainate Receptors on Hippocampal Interneurons
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批准号:7215193
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项目类别:
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资助金额:$27.2万
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财政年份:2003
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负责人:MATTHEW E FRERKING
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Kainate Receptors on Hippocampal Interneurons
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批准号:6890965
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资助金额:$28.69万
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财政年份:2003
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资助金额:$28.02万
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财政年份:2003
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负责人:MATTHEW E FRERKING
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Kainate Receptors on Hippocampal Interneurons
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批准号:6683551
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资助金额:$28.69万
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财政年份:2003
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负责人:MATTHEW E FRERKING
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MECHANISMS UNDERLYING PLASTICITY OF RECEPTIVE FIELDS
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批准号:6293966
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资助金额:$1.75万
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负责人:MATTHEW E FRERKING
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