Effect of Aging on Efficacy of Alzheimer-focused Therapeutic Strategies
Effect of Aging on Efficacy of Alzheimer-focused Therapeutic Strategies
批准号:
9978935
负责人:
Lennart Mucke
金额:
$16.85万
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:
2016-09-30 至 2021-08-31
关键词:
AblationAffectAgeAge-MonthsAgingAlzheimer&aposs DiseaseAlzheimer&aposs disease modelAlzheimer&aposs disease riskAmyloid beta-ProteinAnimal ModelAntiepileptic AgentsAttentionBehavioralBiochemicalBrainClinical TrialsCognitiveCountryDiseaseElderlyElectrophysiology (science)Exposure toGeneticGliosisHumanHuman Amyloid Precursor ProteinImpaired cognitionImpairmentInstitutesInstitutionJ20 mouseLaboratoriesLearningLevetiracetamMemoryModelingMusNeurodegenerative DisordersOutcomePathologicPhenotypePublicationsPublishingReportingResearch PersonnelRisk FactorsSenile PlaquesSynapsesTestingThe Jackson LaboratoryTherapeuticTransgenic MiceTreatment Efficacyage effectagedaging braincohortcomparative efficacyeffective therapymiddle agemouse modelnetwork dysfunctionneural networknon-geneticpreclinical studypreventtau Proteinsyoung adult
中文摘要
点击翻译按钮获取中文摘要
英文摘要
Alzheimer's disease (AD) is the most common neurodegenerative disorder, affecting over 5 million people in
the U.S. No effective treatments are available to prevent, halt, or reverse the disease. Although aging is the
most important nongenetic risk factor for AD, young mice have been used for the vast majority of preclinical
studies in AD-related mouse models, mainly for practical and financial reasons. Even at young ages, these
models share several pathological features with AD. However, they clearly do not simulate the full complexity
of the human condition. We hypothesize that aged mouse models will simulate the human condition to a
greater extent than young mouse models and that assessing candidate therapies in aged mouse models will
better predict the efficacy of these therapies in later clinical trials. In this UH2/UH3 proposal, we will elucidate
the phenotypic impact of natural aging in human amyloid precursor protein (hAPP) transgenic mice from line
J20—one of the most extensively used AD-related mouse models. In addition, we will compare the efficacy of
promising candidate therapies in young and old mice from this line. While strategies targeting amyloid-β (Aβ)
have justifiably received considerable attention over the past decade, it is still unclear whether they will turn out
to be both efficacious and safe in ongoing clinical trials. We reported in well-cited publications that treatment
with the anti-epileptic drug levetiracetam and genetic reduction of tau ameliorate synaptic, network and
cognitive dysfunction in hAPP-J20 mice, and these findings have been confirmed by other groups in
independent mouse models. However, it remains to be determine whether these strategies also have
beneficial effects in aging brains that have had longer exposures to pathologically elevated levels of Aβ. We
therefore propose to investigate the efficacy of levetiracetam treatment and genetic reduction of tau in old
hAPP-J20 mice.
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Therapeutic Potential and Mechanisms of Tau Reduction in Autism Models
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Therapeutic Potential and Mechanisms of Tau Reduction in Autism Models
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依托单位:
Effect of Aging on Efficacy of Alzheimer-focused Therapeutic Strategies
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负责人:Lennart Mucke
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Neurobiology and Therapeutic Potential of Klotho
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项目类别:
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Neurobiology and Therapeutic Potential of Klotho
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资助金额:$70.85万
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Behavioral Core
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依托单位:
PHOSPHOPROTEOMIC ANALYSIS OF SYNAPTIC PROTEINS IN ALZHEIMER DISEASE MOUSE MODELS
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海外基金