Metabolic Regulation by Glial Inflammatory Signaling
Metabolic Regulation by Glial Inflammatory Signaling
批准号:
10660915
负责人:
JOSHUA P THALER
金额:
$59.48万
依托单位:
依托单位国家:
美国
项目类别:
财政年份:
2018
资助国家:
美国
项目状态:
已结题
起止时间:
2018-09-12 至 2024-06-30
关键词:
AstrocytesAstrocytosisBrainCaloriesCellsCellular StressCentral Nervous SystemCentral Nervous System DiseasesClosure by clampClozapineConsumptionCoupledDataDependenceDesigner DrugsDesire for foodDevelopmentDiabetes MellitusDietDiseaseDissociationDrug ReceptorsFatty acid glycerol estersFutureGenetic RecombinationGliosisGlucoseGlucose IntoleranceHigh Fat DietHigh PrevalenceHumanHyperinsulinismHyperphagiaHypothalamic structureImmune systemIn VitroInflammationInflammatoryInflammatory ResponseKineticsKnock-outLeptinLinkMediatingMediatorMedicalMetabolicMetabolic DiseasesMetabolic dysfunctionMetabolismMethodsMicrogliaModelingModernizationMolecularMusNeurogliaNeuronsNeurosciencesObese MiceObesityOutcomeOvernutritionOxidesPathogenesisPathologyPathway interactionsPeripheralPhenotypePhysiologicalPredispositionPublic HealthRegulationResistanceRibosomesRodentRoleSecondary toSignal TransductionSynaptic plasticitySystemTLR4 geneTNF geneTechnologyTestingTherapeuticThinnessTimeTissuesTumor Necrosis Factor ReceptorUp-RegulationWeightWeight Gainantagonistblood glucose regulationcell typedesigner receptors exclusively activated by designer drugsdiabetes pathogenesisdiet-induced obesityeffective therapyenergy balanceeuglycemiaexcessive weight gainfeedingglial activationglobal healthglucose toleranceimmune activationimpaired glucose toleranceimprovedin vivoinnovationknowledge of resultsmetabolic phenotypemouse modelpharmacologicpreventrapid weight gainreceptorrecruittranscriptomics
中文摘要
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英文摘要
Project Summary
Obesity is a significant public health concern worldwide, and the incomplete understanding of its pathogenesis
has limited the development of effective treatments. Overnutrition triggers immune cell activation in peripheral
tissues and the brain, suggesting that strategies to target the inflammatory response have theoretical
therapeutic potential. However, these approaches remain largely untested. We recently demonstrated that
mice lacking IKKβ in brain glia (astrocytes and microglia) show reduced susceptibility to diet-induced obesity
(DIO) and hyperphagia, but with different kinetics. Microglial activation occurs earlier and is required for DIO
susceptibility from the onset of HFD feeding whereas astrocyte protection from DIO only occurs after weeks of
HFD exposure. Consistent with the known role of microglia to induce reactive astrocytosis in CNS inflammatory
diseases, these data suggest a cascade of inflammatory activation beginning with microglia that subsequently
triggers astrocytes to promote DIO.
Another stark difference between the mouse models is a paradoxical impairment of glucose tolerance in the
lean microglial IKKβ knockout, suggesting dissociation between the regulation of energy balance and glucose
homeostasis by microglia. However, the molecular mediators responsible for this phenotype remain unknown.
We have now developed a diet-independent inducible model of microglial activation using the Designer
Receptor Activated by Designer Drugs (DREADD) approach. Microglia expressing the Gq-coupled DREADD
receptor hM3D are rapidly activated by CNO treatment with marked upregulation of TNFa expression.
Nevertheless, the CNO treatment causes an immediate improvement in glucose tolerance even in HFD-fed
mice. Unexpectedly, this effect can be blocked using icv pretreatment with either a specific TNF receptor
antagonist or a melanocortin 3/4 receptor antagonist. While TNF signaling can disrupt leptin sensitivity in
hypothalamic neurons, it also increases POMC neuron firing, promotes synaptic plasticity and activates the
melanocortin pathway. Therefore, we hypothesize that HFD feeding acts through microglial TLR4 to
triggers DIO susceptibility but improve glucose tolerance through the melanocortin pathway. To
investigate these premises further, in Aim 1 we will determine whether astrocyte activation is dependent on
microglial inflammatory signaling and required for microglia-induced DIO. Aim2 will determine whether
microglial TNF and melanocortin signaling are required for the improved glucose tolerance induced by
microglial activation. Finally, Aim 3 investigates the peripheral mechanisms of improved glucose tolerance and
includes a transcriptomic screen for additional microglial mediators of glucose homeostasis regulation.
Together, these studies will help identify the cellular and molecular components of microglial activation that
mediate its impact on obesity and diabetes pathogenesis.
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Metabolic Regulation by Glial Inflammatory Signaling
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批准号:10186848
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项目类别:
-
资助金额:$44.13万
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财政年份:2018
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负责人:JOSHUA P THALER
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依托单位:
Glial-neuronal metabolic coupling in obesity
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批准号:8681979
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项目类别:
-
资助金额:$8.7万
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财政年份:2014
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负责人:JOSHUA P THALER
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依托单位:
Cellular Mechanisms of Hypothalamic Inflammation in High Fat Diet-Induced Obesity
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批准号:8704233
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项目类别:
-
资助金额:$14.92万
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财政年份:2010
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负责人:JOSHUA P THALER
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依托单位:
Cellular Mechanisms of Hypothalamic Inflammation in High Fat Diet-Induced Obesity
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批准号:7952683
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项目类别:
-
资助金额:$14.92万
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财政年份:2010
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负责人:JOSHUA P THALER
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依托单位:
Cellular Mechanisms of Hypothalamic Inflammation in High Fat Diet-Induced Obesity
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批准号:8100510
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项目类别:
-
资助金额:$14.92万
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财政年份:2010
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负责人:JOSHUA P THALER
-
依托单位:
Cellular Mechanisms of Hypothalamic Inflammation in High Fat Diet-Induced Obesity
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批准号:8487398
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项目类别:
-
资助金额:$14.92万
-
财政年份:2010
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负责人:JOSHUA P THALER
-
依托单位:
Cellular Mechanisms of Hypothalamic Inflammation in High Fat Diet-Induced Obesity
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批准号:8281715
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项目类别:
-
资助金额:$14.92万
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财政年份:2010
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负责人:JOSHUA P THALER
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依托单位:
Enrichment Program
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批准号:10426301
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项目类别:
-
资助金额:$2.95万
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财政年份:1996
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负责人:JOSHUA P THALER
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依托单位:
Enrichment Program
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批准号:10645186
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项目类别:
-
资助金额:$2.95万
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财政年份:1996
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负责人:JOSHUA P THALER
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依托单位:
Enrichment Program
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批准号:10203931
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项目类别:
-
资助金额:$2.95万
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财政年份:1996
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负责人:JOSHUA P THALER
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依托单位:
Enrichment Program
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批准号:10045746
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项目类别:
-
资助金额:$2.95万
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财政年份:--
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负责人:JOSHUA P THALER
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依托单位:
海外基金