Elucidating the role for MCH neurons in feeding behavior and responses to sensory food cues
阐明 MCH 神经元在进食行为和对感官食物线索的反应中的作用
基本信息
- 批准号:10272685
- 负责人:
- 金额:$ 43.68万
- 依托单位:
- 依托单位国家:美国
- 项目类别:
- 财政年份:2021
- 资助国家:美国
- 起止时间:2021-08-15 至 2026-07-31
- 项目状态:未结题
- 来源:
- 关键词:Adaptive BehaviorsAdvertisementsAmericasAmygdaloid structureAnatomyAnorexiaAreaArousalAttentionAutomobile DrivingBasic ScienceBehaviorBehavioralBrainBrain regionCandyCognitiveConsummatory BehaviorConsumptionCuesEatingEating DisordersEnvironmentFeeding behaviorsFiberFinancial costFoodFood ProcessingFosteringFutureGoalsHealthHealth Care CostsHumanHungerHyperphagiaHypothalamic structureInjectionsInvestigationKnockout MiceLateralLearningMediatingMetabolicMetabolismMissionModelingModernizationNeuronsNucleus AccumbensObesityObesity EpidemicPalatePathway interactionsPhenotypePhotometryPopulationPrevalenceProcessPublic HealthRabiesResearchRewardsRoleSensorySignal TransductionSiteSleepSocietiesStimulusStructureStructure of nucleus infundibularis hypothalamiSystemUnited States National Institutes of HealthVisualWorkbasebehavioral responsebillboardcravingfeedingfood consumptionhormonal signalsimaging approachimprovedin vivoin vivo calcium imaginginnovationmelanin-concentrating hormonemelanin-concentrating hormone receptorneuromechanismoptogeneticspeptide hormonerelating to nervous systemresponsereward processingsensory stimulussleep behaviortoolzona incerta
项目摘要
Project summary
America has an obesity epidemic, which is getting progressively worse and has immense human and
financial costs. While our understanding of homeostatic feeding circuits has advanced steadily over the past
several decades much remains unclear. In addition, much of our food consumption is not due to homeostatic
need, instead, it is often a result of non-homeostatic drivers. Cravings for sugary or fatty foods, even when
sated, drive increased consumption. Stimuli in our environment that signal food availability, including food-
associated visual cues in the form of advertisements, billboards, and candy-bar wrappers, promote these
cravings, and, ultimately, promote consumption. We aim to understand the circuits that drive feeding behavior,
including how food-associated sensory stimuli can hijack normally advantageous neural processes to increase
consumption and contribute to the obesity epidemic.
We propose to determine the role of melanin-concentrating hormone (MCH) neurons in regulating
feeding and responses to food-associated cues. MCH neurons in the lateral hypothalamus and zona incerta
project throughout the brain, including to limbic and higher-order brain regions, and can drive a diverse array of
behaviors, such as feeding, sleep, and learning. Discrete MCH subpopulations likely serve separate functions;
for example, some might promote feeding while others promote sleep or other consummatory behaviors. Our
central hypothesis is that MCH neurons will drive food consumption, increase the rewarding value of
consummatory behavior and enhance responses to food-associated cues through projections to the arcuate
nucleus, nucleus accumbens, and basolateral amygdala.
We will first identify the activity and projection profiles of MCH neuron subpopulations that drive feeding
by mapping specific subpopulations of MCH neurons and recording their activity across a range of feeding
behaviors. We will then activate specific MCH projections to determine if they are capable of driving feeding
behaviors, in addition to other MCH-related behaviors, including sleep. We expect that a specific subpopulation
of MCH neurons projecting to the nucleus accumbens and basolateral amygdala will respond to food rewards
and increase consummatory behaviors. Finally, we will use in vivo two-photon calcium imaging to investigate
the role for MCH activity in forming enhanced behavioral and sensory responses to food-associated cues. By
using cutting-edge tools and approaches to identify the role for the MCH system in feeding behavior and
responses to food cues, we will generate findings that can help to identify cognitive targets and mechanisms
for treating maladaptive feeding behaviors.
项目摘要
美国有一个肥胖流行病,这是越来越严重,并有巨大的人类和
财务费用。虽然我们对自我平衡进食回路的理解在过去已经稳步推进,
几十年来,许多事情仍然不清楚。此外,我们的大部分食物消耗不是由于体内平衡
相反,它往往是非稳态驱动因素的结果。对含糖或高脂肪食物的渴望,即使
满足,带动消费增长。我们环境中的刺激物,标志着食物的可用性,包括食物-
广告、广告牌和糖果包装纸等形式的相关视觉提示,
消费,最终促进消费。我们的目标是了解驱动进食行为的电路,
包括食物相关的感官刺激如何劫持正常有利的神经过程,
消费和促进肥胖流行。
我们建议确定黑色素浓集激素(MCH)神经元在调节
进食和对食物相关线索的反应。下丘脑外侧部和齿状回的MCH神经元
投射到整个大脑,包括边缘系统和更高级的大脑区域,并可以驱动各种各样的
行为,如进食、睡眠和学习。离散的妇幼保健亚群可能发挥不同的功能;
例如,一些可能促进进食,而另一些则促进睡眠或其他消费行为。我们
中心假设是,MCH神经元将驱动食物消费,增加奖励价值,
完善的行为,并通过对弓状核的投射增强对食物相关线索的反应
核、杏仁核和基底外侧杏仁核。
我们将首先确定驱动进食的MCH神经元亚群的活动和投射概况
通过绘制MCH神经元的特定亚群并记录它们在一系列进食中的活动,
行为。然后,我们将激活特定的MCH预测,以确定它们是否能够驱动喂养
行为,以及其他与妇幼保健有关的行为,包括睡眠。我们认为一个特定的亚群
投射到杏仁核和基底外侧杏仁核的MCH神经元对食物奖赏有反应
并增加消费行为。最后,我们将使用在体双光子钙成像来研究
MCH活性在形成对食物相关线索的增强的行为和感觉反应中的作用。通过
使用先进的工具和方法来确定妇幼保健系统在喂养行为中的作用,
对食物线索的反应,我们将得出有助于识别认知目标和机制的发现
用于治疗适应不良的进食行为
项目成果
期刊论文数量(0)
专著数量(0)
科研奖励数量(0)
会议论文数量(0)
专利数量(0)
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Christian Richard Burgess的其他文献
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{{ truncateString('Christian Richard Burgess', 18)}}的其他基金
Elucidating the role for MCH neurons in feeding behavior and responses to sensory food cues
阐明 MCH 神经元在进食行为和对感官食物线索的反应中的作用
- 批准号:
10666467 - 财政年份:2021
- 资助金额:
$ 43.68万 - 项目类别:
Elucidating the role for MCH neurons in feeding behavior and responses to sensory food cues
阐明 MCH 神经元在进食行为和对感官食物线索的反应中的作用
- 批准号:
10469594 - 财政年份:2021
- 资助金额:
$ 43.68万 - 项目类别:
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