Gut-brain endocannabinoid signaling in feeding behavior and obesity
Gut-brain endocannabinoid signaling in feeding behavior and obesity
批准号:
10581577
负责人:
Nicholas Vincent DiPatrizio
金额:
$34.01万
依托单位国家:
美国
项目类别:
财政年份:
2019
资助国家:
美国
项目状态:
未结题
起止时间:
2019-07-01 至 2025-03-31
关键词:
AdultAffectAgonistAmericanAmerican Medical AssociationAppetite StimulantsBehavioralBindingBiological AssayBody Weight decreasedBrainCB1 knockoutCNR1 geneCaloriesCannabinoidsCannabisCell LineCellsCholecystokininCholecystokinin ReceptorChronicConsumptionDataDevelopmentDietDietary ComponentDietary FatsDietary InterventionDiseaseEatingEndocannabinoidsEnteroendocrine CellEnzymesExposure toFastingFat emulsionFatty AcidsFatty acid glycerol estersFeeding behaviorsFood EnergyFunctional disorderGastrointestinal tract structureHumanHyperphagiaIn VitroIntakeIntestinal Neuroendocrine NeoplasmIntestinesKnockout MiceLife ExpectancyMapsMediatorMetabolicMetabolic DiseasesMetabolic PathwayMolecularMusNutrientObese MiceObesityOralPathway interactionsPatternPeptidesPeripheralPhysiologyPlayProcessReportingRodentRoleSatiationSeminalSignal PathwaySignal TransductionSignaling MoleculeSmall IntestinesSucroseTestingThinnessWorkantagonistbehavioral outcomedetection of nutrientdiet-induced obesitydietingendocannabinoid signalingendogenous cannabinoid systemenergy balancefeedinggut-brain axisin vivoinhibitorintestinal epitheliumlipidomicsmouse modelnovelnovel therapeutic interventionobesity treatmentpharmacologicrecidivismresponsesugartoolwestern diet
中文摘要
项目总结/文摘
英文摘要
PROJECT SUMMARY/ABSTRACT
Food intake and energy balance are controlled by a dynamic interplay of gut-brain signaling pathways;
however, the molecular underpinnings in these processes and their dysregulation in obesity remain poorly
understood. Recent work from the DiPatrizio lab suggests that our bodies’ cannabis-like signaling molecules,
the endocannabinoids (eCBs), are critical mediators of gut-brain signaling important for food intake, and are
upregulated in the gut in diet-induced obesity (DIO). These seminal studies suggest that eCB signaling in the
gut is an orexigenic signal that is activated under several behavioral and metabolic conditions, and may become
dysregulated in obesity. The mechanism(s) of gut-brain eCB control of food intake and reorganization of these
pathways in DIO is unknown. Preliminary data, however, suggests that in DIO, increased eCB signaling in the
intestinal epithelium inhibits nutrient-induced release of satiation peptides, which increases meal size and delays
satiation. We propose the central hypothesis that the eCB system in the gut plays a critical role in nutrient
sensing and gut-brain satiation signaling, which is remodeled after chronic exposure to high-energy nutrients
and contributes to overeating in DIO. We propose the following specific aims to test this hypothesis: SA1. To
determine if CB1Rs in the gut control gut-brain satiation signaling. Based on preliminary data, we
hypothesize that CB1Rs in the intestinal epithelium control nutrient sensing and gut-brain satiation signaling that
become dysregulated in DIO. To test this hypothesis, we will examine the role for CB1Rs in controlling feeding
behavior by evaluating nutrient-induced release of satiation peptides in vivo and in vitro using our first-of-kind
mouse model that conditionally lacks CB1Rs in intestinal epithelium in combination with peripherally-restricted
CB1R antagonists, and enteroendocrine cell lines. This aim will provide evidence of a previously unidentified
control mechanism of nutrient-induced gut-brain satiation signaling. SA2. To determine the mechanism of eCB
system remodeling in DIO, and impact of dietary intervention on these pathways. The molecular
underpinnings of eCB system remodeling in DIO, specific dietary components that drive this process, as well as
the impact of dietary intervention on these pathways and behavioral outcomes are unknown. We hypothesize
that chronic exposure to WD leads to remodeling of the eCB system in the gut, which promotes overeating and
DIO. To test this hypothesis, we will use our intestinal epithelial CB1R-null mice in combination with targeted
lipidomics and advanced UPLC/MS/MS-based assays of eCB system function to identify specific dietary
components that drive heightened eCB system activity and overeating, and the mechanism of remodeling that
occurs in DIO. Furthermore, weight loss following dieting is all-too-often met with high levels of recidivism to
overeating and obesity; thus, we will assess the ability for low-calorie dietary intervention to normalize gut-brain
eCB signaling in DIO.
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会议论文
Gut-brain endocannabinoid signaling in feeding behavior and obesity
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批准号:10375448
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项目类别:
-
资助金额:$34.05万
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财政年份:2019
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负责人:Nicholas Vincent DiPatrizio
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依托单位:
Endocannabinoid regulation of host-helminth interaction
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批准号:9797211
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项目类别:
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资助金额:$8.11万
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财政年份:2018
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负责人:Nicholas Vincent DiPatrizio
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依托单位:
A Role for Endocannabinoids in the Control of Dietary Fat Intake
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批准号:8940324
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项目类别:
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资助金额:$24.9万
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财政年份:2013
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负责人:Nicholas Vincent DiPatrizio
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依托单位:
A Role for Endocannabinoids in the Control of Dietary Fat Intake
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批准号:9111460
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项目类别:
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资助金额:$3.73万
-
财政年份:2013
-
负责人:Nicholas Vincent DiPatrizio
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依托单位:
A Role for Endocannabinoids in the Control of Dietary Fat Intake
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批准号:8654327
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项目类别:
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资助金额:$12.63万
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财政年份:2013
-
负责人:Nicholas Vincent DiPatrizio
-
依托单位:
A Role for Endocannabinoids in the Control of Dietary Fat Intake
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批准号:8509542
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项目类别:
-
资助金额:$12.63万
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财政年份:2013
-
负责人:Nicholas Vincent DiPatrizio
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依托单位:
海外基金