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Metabolic & Molecular Physiology

Metabolic & Molecular Physiology
新陈代谢
批准号:
10454981
负责人:
Andrea L Hevener
金额:
$22.39万
依托单位国家:
美国
项目类别:
财政年份:
2002
资助国家:
美国
项目状态:
未结题
起止时间:
2002-12-01 至 2025-06-30
关键词:
ATP Synthesis PathwayAcuteAerobicAnimal ModelAnimalsArchitectureAreaArterial Fatty StreakBiogenic AminesBiological AssayBiologyBody CompositionCaliforniaCell RespirationCellsCellular Metabolic ProcessChronicCollaborationsComplications of Diabetes MellitusConsultConsultationsDataData AnalysesDatabasesDiabetes MellitusDiseaseDual-Energy X-Ray AbsorptiometryEnvironmentEpigenetic ProcessEvaluationEvolutionExerciseExperimental DesignsFacultyFeeding behaviorsFertilizationFlow CytometryFosteringGene Expression ProfilingGenetic EngineeringGenetically Engineered MouseGenomicsGenus HippocampusGlucoseGlucose ClampGoalsHomeostasisHormonesHumanImageIn SituIndirect CalorimetryIndividualInflammationInflammatoryInstitutionInsulinInvestigationLabelLaboratoriesLeadershipMagnetic Resonance ImagingMaintenanceMass Spectrum AnalysisMeasuresMetabolicMetabolic PathwayMetabolismMethodologyMicroscopyMitochondriaMolecularMolecular TargetMorphologyMovementMusMuscleNuclear ReceptorsObesityOrganellesOutcomeOxygen ConsumptionPathway AnalysisPathway interactionsPerformancePhenotypePhysiologicalPhysiologyPlasmaProceduresProductionProductivityProtocols documentationPublicationsReceptor SignalingResearchResearch PersonnelResolutionResourcesRodentRoleSamplingScientific Advances and AccomplishmentsSeriesServicesSignal PathwaySignal TransductionStandardizationTechniquesTechnologyTimeTissuesTracerTrainingTranslational ResearchTravelUnited States National Institutes of HealthUpdateWorkadipokinesanimal tissuebasebench to bedsidebiobankcell bankcell typechemokinecostcost effectivecytokinedata integrationdata repositorydiabetes pathogenesisfatty acid metabolismfunctional genomicshormone metabolismhormone sensitivityimagerimprovedin vivoinsightinstrumentinstrumentationinsulin sensitivityinsulin tolerancelaser capture microdissectionmanmembermetabolic abnormality assessmentmetabolic phenotypenew technologyrecruitsuccesssynergismtissue preparation

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中文摘要
翻译
NIH发起的集中专业知识、仪器和设施的努力,以促进全面的 对转基因小鼠、组织和细胞的评估提高了我们对 功能基因组学和疾病病理生物学。代谢与分子生理学核心(MMPC) 为加州大学圣地亚哥分校、加州大学洛杉矶分校及其附属机构的调查人员提供一系列最先进的 以及从国家表型鉴定中难以获得的经济高效的分子和生理分析方法 中锋。MMPC分为四个子核:A)胰岛素敏感性和代谢稳态,B) 动物和组织中的氧化代谢,C)线粒体生物学和细胞中的代谢,以及D) 炎症信号和糖尿病并发症,每个分核心提供广泛的培训和 就从实验设计到数据解释和集成的各种主题提供咨询。 具体地说,MMPC提供以下评估服务:运动、进食行为、间接量热法、 身体成分,葡萄糖/胰岛素耐量,胰岛素作用(体外、原位和体内),底物 代谢和氧化能力,线粒体功能和形态,循环激素/ 脂肪因子/细胞因子和糖尿病并发症。MMPC维护着一个组织生物库以及 一个广泛的基因工程小鼠表型结果的综合数据库 以及用于大量表型鉴定技术的标准方案。MMPC领导层包括 来自综合代谢、核受体生物学、线粒体等领域的顶级研究人员 功能和架构,以及炎症,包括:Andrea Hevener,Orian Shirihai,Peter Tontonoz, 还有凯伦·鲁。MMPC的优势包括其全面和互补的专业知识 领导力,卓越的研究生产力记录,以及影响深远的科学出版物。 MMPC团队的协作精神营造了一个大学环境,并支持好服务- 与刚果民主共和国其他核心和机构资源协调。MMPC的中心目标是 提高刚果民主共和国成员在尖端代谢分析和研究方面的科学能力 通过加强细胞、组织和组织研究想法的翻译,提高整体研究质量 老鼠对(我)人。
英文摘要
NIH-initiated efforts to centralize expertise, instrumentation, and facilities to promote comprehensive evaluation of genetically engineered mice, tissues and cells has improved our understanding of functional genomics and disease pathobiology. The Metabolic and Molecular Physiology Core (MMPC) provides investigators at UCSD, UCLA, and their affiliated institutions with a series of state-of-the-art and cost effective molecular and physiological assays not readily available from national phenotyping centers. The MMPC is divided into four sub-cores: A) Insulin sensitivity and metabolic homeostasis, B) Oxidative metabolism in animals and tissues, C) Mitochondrial biology and metabolism in cells, and D) Inflammatory signaling and diabetes complications, and each sub-core offers extensive training and consultation on a variety of topics from experimental design to data interpretation and integration. Specifically, the MMPC provides services to assess: movement, feeding behavior, indirect calorimetry, body composition, glucose/insulin tolerance, insulin action (ex vivo, in situ, and in vivo), substrate metabolism and oxidative capacity, mitochondrial function and morphology, circulating hormones / adipokines / cytokines, and diabetes complications. The MMPC maintains a tissue bio-bank as well as a comprehensive database of phenotypic outcomes for a wide variety of genetically engineered mice and standard protocols for a vast number of phenotyping techniques. The MMPC leadership includes top investigators from the fields of integrative metabolism, nuclear receptor biology, mitochondrial function and architecture, and inflammation including: Andrea Hevener, Orian Shirihai, Peter Tontonoz, and Karen Reue. Strengths of the MMPC include the well-rounded and complementary expertise of its leadership, an exceptional track record of research productivity, and high impact scientific publications. The collaborative spirit of the MMPC team fosters a collegial environment and supports service well- coordinated with other DRC cores and institutional resources. The central goal of the MMPC is to advance the scientific capabilities of the DRC membership in leading-edge metabolic analyses and improve overall research quality with enhanced translation of research ideas from cells, tissues, and mice to (wo)man.
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