Neuroendocrine control of spontaneous physical activity
Neuroendocrine control of spontaneous physical activity
批准号:
7268709
负责人:
MATTHIAS H TSCHOP
金额:
$25.62万
依托单位:
依托单位国家:
美国
项目类别:
财政年份:
2005
资助国家:
美国
项目状态:
已结题
起止时间:
2005-08-01 至 2010-07-31
关键词:
AcuteAdverse effectsAgonistAmbulatory MonitoringAnimalsBehaviorBody CompositionBody TemperatureBody WeightBody Weight decreasedBody fatBrainCachexiaCaloric RestrictionCalorimetryCause of DeathCellsClassificationComputer softwareConditionControl GroupsDataDeveloped CountriesDietDietary FatsDisruptionDoseDuodenumEatingElementsEndocrineEnergy IntakeEnergy MetabolismExposure toFastingFatty acid glycerol estersFeeding behaviorsFutureGeneticGoalsHealthHormonalHormonesHourHumanHungerHypothalamic structureIntakeKnockout MiceLaboratoriesLife StyleLiquid substanceMagnetic ResonanceMediatingMessenger RNAModelingMolecularMonitorMusNeuronsNeuropeptidesNeurosecretory SystemsObesityPathway interactionsPeptide Initiation FactorsPeptidesPhenotypePhysical activityPlasmaPrevalencePreventionPrincipal InvestigatorRangeRattusRegulationRelative (related person)RestRodentRodent ModelRoleSeriesSignal PathwaySignal TransductionStomachSystemTestingThermogenesisTransgenic OrganismsUniversitiesWild Type Mousebaseenergy balancefeedingghrelinghrelin receptorin vivomelanocortin receptormouse modelneuropeptide Y-Y1 receptornovelpreventreceptorresearch studyrespiratorysedentarytool
中文摘要
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英文摘要
DESCRIPTION (provided by applicant): Obesity is one of the most urgent health problems, and all strategies for its prevention or treatment have failed. Increased sedentary behavior represents one reason for the increasing prevalence of obesity and its devastating consequences. Low physical activity levels are also a major determinant of body fat gain during overfeeding. We have recently generated preliminary data indicating that within the established regulatory system controlling food intake and body weight, the novel hormone ghrelin, as well at its main mediating target molecule in the brain AGRP, effectively suppress spontaneous physical activity (SPA) in rodent models. The putative regulation of spontaneous physical activity (SPA) by several other players in the same hormonal and neuronal networks, all of which are known to regulate food intake, has not previously been investigated in a systematic manner. We therefore propose to investigate a possible role for endogenous ghrelin and its immediate hypothalamic targets in the regulation of SPA. This series of studies might add a new and important element to the current model of energy balance regulation. Expanding the current model of food intake control to include a detailed characterization of the hormonal mechanisms regulating physical activity will promote our understanding of one of the major factors causing obesity. Equally important will be to develop a novel functional blueprint of a defined interactive network of pathways in the brain, which simultaneously regulates food intake, thermogenesis and SPA. This strategy may help to develop efficacious pharmacological agents to prevent and treat obesity in the future.
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