Insulin Resistance, Biomarkers of Brain Function, and Intermittent Calorie Restriction
Insulin Resistance, Biomarkers of Brain Function, and Intermittent Calorie Restriction
批准号:
9352930
负责人:
Auriel Willette
金额:
$24.9万
依托单位:
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 2020-12-31
关键词:
AdultAffectAgingAlzheimer&aposs DiseaseAlzheimer&aposs disease riskAmericanAmyloid depositionAnimal ModelAreaAtrophicBiological MarkersBody Weight decreasedBrainCaloric RestrictionClinicalClinical ResearchClinical TrialsCognitionCognitiveColorConduct Clinical TrialsCounselingDataDietEarly InterventionEatingEducational workshopElderlyEndocrinologyEthicsExecutive DysfunctionExtramural ActivitiesFoodFood PreferencesFunctional Magnetic Resonance ImagingGoalsGrantHospitalsHumanHuman ResourcesImpaired cognitionIndividualInsulinInsulin ResistanceInterventionIntramural Research ProgramLaboratoriesLeadMacaca mulattaMagnetic Resonance ImagingMeasuresMemoryMentorsMethodsNational Institute on AgingNeurobiologyNeurodegenerative DisordersNeurologistNeurologyNeurosciencesObesityOutcomeOverweightParticipantPathogenesisPatientsPerformancePeripheralPhasePhysicsPositron-Emission TomographyPrefrontal CortexPrevalenceProcessReducing dietRegulationResearchResearch PersonnelResearch TrainingResourcesRestReview CommitteeRiskTestingTimeTrainingUniversitiesVisitWeightWisconsinWomanWorkWritingagedbasecerebral atrophyclinical investigationcognitive performancecognitive testingcohortcostexecutive functionexperiencefluorodeoxyglucosefluorodeoxyglucose positron emission tomographyglucose metabolismglucose uptakehigh riskimprovedinsulin signalingmiddle agemild cognitive impairmentneuroimagingneuropathologynonhuman primatepre-clinicalprospectivetenure trackuptake
中文摘要
预计到2050年,阿尔茨海默病(AD)将影响约1380万美国人,并花费120万美元
英文摘要
Alzheimer's disease (AD) is projected by 2050 to affect approximately 13.8 million Americans and cost 1.2
trillion dollars per year. Insulin resistance (IR), a reduced cellular responsiveness to insulin, is typically
induced by obesity. In late middle-age, IR is associated with deficits in memory and executive function
performance and increased AD risk. The applicant, Dr. Auriel Willette, recently found using Magnetic
Resonance Imaging (MRI) and Positron Emission Tomography (PET) data that IR in late middle-aged adults is
associated with atrophy, lower glucose uptake, and amyloid deposition in prefrontal cortex (PFC), a brain area
impacted by early AD that subserves executive function. He also previously found that long-term calorie
restriction (CR) in aged rhesus macaques lowers IR, reduces PFC atrophy associated with IR, and improves
cognitive performance. The goal of this project is to determine if a previously validated intermittent CR diet that
reduces IR in late middle-aged adults, composed of five ad libitum days and two consecutive days of
consuming 530 kilocalories (5-2 CR), improves executive function performance and changes PFC functional
MRI (fMRI) activation during executive tasks. To accomplish this project, Dr. Willette requires additional
supervised research training in human 5-2 CR, clinical trials, task-based fMRI neuroimaging, cognitive testing,
AD neuropathology, and endocrinology specific to insulin signaling. Dr. Willette's primary mentor at the
National Institute on Aging, Dr. Mark Mattson, is a leader in CR, neuroscience, and conducting CR clinical
trials. Dr. Willette will work with a cross-disciplinary team of intramural and extramural co-mentors to gain the
required training for performing this study. Specifically, Dr. Willette will add to his two years of clinical
experience by being trained in conducting clinical trials through Dr. Josephine Egan, the NIA Clinical Director
and Chief of the Laboratory of Clinical Investigation, Dr. Mattson, and Dr. Dimitrios Kapogiannis, a tenure-track
Neurologist who has conducted several clinical trials. Dr. Willette will develop expertise in task-based fMRI and
cognitive testing from Dr. Kapogiannis, Dr. Arthur Kramer, a leader in the field of cognition and aging with over
30 years of neuroimaging experience, and Dr. Richard O'Brien, Chair of Neurology at Johns Hopkins
University. For AD neuropathology, Drs. Mattson and O'Brien are established experts in animal models and
older adults respectively. For insulin signaling, Dr. Egan is a senior investigator and pioneer in the field of
insulin regulation, incretins, and glucose metabolism. In Aims 1 and 2 (K99 mentored phase), 40 cognitively
normal, late middle-aged women with IR on a given visit will engage in a battery of executive function tasks
outside of the MRI scanner, perform a fMRI color-word Stroop task that induces PFC brain activity, and
perform a fMRI energy-dense food preference task that also activates PFC through cognitive appraisal of food.
This testing will occur at baseline and after 8 weeks of either 5-2 CR (n=20) or an ad libitum control diet (n=20).
Compliance visits will be conducted every 2 weeks. This project will be conducted through the Laboratory of
Clinical Investigation at Harbor Hospital, the NIA's clinical research unit. The NIA Scientific Review Committee
has approved this project, and through the Intramural Research Program has adequate resources and
dedicated personnel time to be completed in a timely manner. Additional training will include coursework in
clinical trials, neurobiology of aging, ethics, management seminars, and workshops for prospective
independent investigators including grant writing and tenure-track topics. In Aim 3 (R00 independent phase),
Dr. Willette will combine his previous and new training to conduct a similar 5-2 CR intervention in aged patients
with Mild Cognitive Impairment (MCI) and IR. In addition to cognition and fMRI, he will acquire and process
fluorodeoxyglucose data (FDG-PET) to examine resting glucose uptake in PFC. He will gain FDG-PET training
during the K99 phase from Dr. Bradley Christian, senior PET researcher and co-director of PET Physics at the
University of Wisconsin-Madison. Given that IR is higher in MCI compared to cognitively normal adults,
associations with cognition and brain measures may be stronger than in the late middle-aged cohort. The 5-2
CR intervention is expected to improve executive function, stabilize fMRI PFC activity, and increase PFC
glucose uptake. These outcomes would have a substantial impact on possible interventions for early AD.
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Insulin Resistance, Biomarkers of Brain Function, and Intermittent Calorie Restriction
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批准号:9355566
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项目类别:
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资助金额:$24.31万
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财政年份:2016
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负责人:Auriel Willette
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依托单位:
Insulin Resistance, Biomarkers of Brain Function, and Intermittent Calorie Restriction
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批准号:9922828
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项目类别:
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资助金额:$23.83万
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财政年份:2016
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负责人:Auriel Willette
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依托单位:
海外基金