Natural products as probes of the pain pathway
天然产物作为疼痛通路的探针
基本信息
- 批准号:10054206
- 负责人:
- 金额:$ 119.52万
- 依托单位:
- 依托单位国家:美国
- 项目类别:
- 财政年份:2017
- 资助国家:美国
- 起止时间:2017-12-15 至 2025-11-30
- 项目状态:未结题
- 来源:
- 关键词:AcuteAcute PainAcute pain managementAfferent NeuronsAnalgesicsAnatomyBindingBiochemicalBiophysicsBrainCapsaicinCellsChemicalsChili PepperClinicalComplexDetectionDevelopmentDiseaseFamilyGeneticGenus MenthaGoalsHypersensitivityInflammatoryInjuryIon ChannelIrritantsMechanicsMedication ManagementMentholModalityMolecularMorphineMusNatural ProductsNatureNerve FibersNociceptionNociceptorsOpioid ReceptorOpiumPainPapaverPathologicPathway interactionsPersistent painPharmaceutical PreparationsPharmacologyPhysiologicalPlantsPlayPopulationProcessRoleSalicylic AcidsSignal TransductionSpinal CordStimulusStructureSyndromeTRP channelTemperatureTouch sensationWillowWorkchronic painenvironmental changeimaging modalityin vivo imaginginsightinterestmembernovelnovel therapeuticspressurereceptorresponsesomatosensorytherapeutic developmenttool
项目摘要
Nociception is the process whereby a subset of somatosensory nerve fibers (called nociceptors) detect noxious stimuli and transmit this information to the spinal cord and brain, ultimately producing a percept of discomfort or pain. Nociceptors are faced with the complex task of detecting disparate environmental and endogenous signals of both a physical and chemical nature; these include temperature, pressure, irritants, pruritogens, and inflammatory agents. Consequently, nociceptor activation elicits acute pain as well as injury-evoked pain hypersensitivity and can contribute to so-called ‘maladaptive’ processes underlying persistent pain syndromes. Our goal is to understand how nociceptors detect and integrate these signals in response to changing environmental or physiological conditions. Natural products from plants or venomous creatures have served as tremendously valuable tools for deciphering cellular and molecular mechanisms contributing to nociception and pain. Notable examples include the use of natural analgesics, such as morphine (from the opium poppy) and salicylate (from willow bark) to discover opioid receptors and cyclooxgenases, respectively. Other important examples include the use of natural irritants, such as capsaicin (from chili peppers) and menthol (from mint leaves) to identify ion channels that detect heat and cold, respectively. Indeed, each of these natural product receptors represents a validated or potential target for pharmacological management of acute or chronic pain. This proposal is aimed at elucidating molecules, cells, and mechanisms that contribute to nociception in the context of acute (protective) or pathological (chronic) pain states. We shall continue to exploit the vast chemical ‘space’ of natural product pharmacology to identify and characterize ion channels and sensory neuron subtypes that contribute to distinct nociceptive modalities. At the most reductionist level, we will use biophysical, biochemical, and pharmacological tools to elucidate structural mechanisms underlying ion channel function, including stimulus detection, drug binding, and gating. Here, the main emphasis will be on members of the TRP channel family that are targeted by natural pungent agents and play major roles in thermo- or chemo-nociception. At a more integrative level, we will use molecular and pharmacological probes to characterize distinct nociceptor subtypes, whose functionalities will be examined in mice using genetic, anatomical, and in vivo imaging methods. As one such example, we are interested in characterizing a population of presumptive Aδ nociceptors and asking how they contribute to mechanical pain. Together, these studies will provide important mechanistic insights for the development of novel analgesic therapies.
痛觉是一种体感觉神经纤维(称为痛觉感受器)检测到有害刺激并将此信息传递给脊髓和大脑的过程,最终产生不适或疼痛的感觉。伤害感受器面临着检测不同环境和内源性物理和化学性质信号的复杂任务;这些因素包括温度、压力、刺激物、致痒剂和炎症剂。因此,伤害感受器的激活会引起急性疼痛以及损伤诱发的疼痛超敏反应,并可能导致所谓的“适应不良”过程,从而导致持续性疼痛综合征。我们的目标是了解伤害感受器如何检测和整合这些信号,以应对不断变化的环境或生理条件。来自植物或有毒生物的天然产物已经成为破译导致伤害和疼痛的细胞和分子机制的极有价值的工具。值得注意的例子包括使用天然镇痛药,如吗啡(来自罂粟)和水杨酸(来自柳树皮),分别发现阿片受体和环氧化酶。其他重要的例子包括使用天然刺激物,如辣椒素(来自辣椒)和薄荷醇(来自薄荷叶)来识别分别探测热和冷的离子通道。事实上,这些天然产物受体中的每一个都代表了急性或慢性疼痛的药理学管理的验证或潜在目标。该建议旨在阐明在急性(保护性)或病理性(慢性)疼痛状态下导致伤害感觉的分子、细胞和机制。我们将继续利用天然产物药理学的广阔化学“空间”来识别和表征离子通道和感觉神经元亚型,这些亚型有助于不同的伤害性模式。在最还原的层面上,我们将使用生物物理、生化和药理学工具来阐明离子通道功能的结构机制,包括刺激检测、药物结合和门控。在这里,主要的重点将放在TRP通道家族的成员,这些成员是天然刺激剂的目标,并在热或化学伤害感受中发挥主要作用。在更综合的水平上,我们将使用分子和药理学探针来表征不同的伤害感受器亚型,其功能将在小鼠中使用遗传,解剖和体内成像方法进行检查。作为一个这样的例子,我们感兴趣的是描述推定的a δ伤害感受器人群的特征,并询问它们是如何导致机械疼痛的。总之,这些研究将为新型镇痛疗法的发展提供重要的机制见解。
项目成果
期刊论文数量(0)
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David Julius其他文献
David Julius的其他文献
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{{ truncateString('David Julius', 18)}}的其他基金
Natural products as probes of the pain pathway
天然产物作为疼痛通路的探针
- 批准号:
10318584 - 财政年份:2017
- 资助金额:
$ 119.52万 - 项目类别:
Natural products as probes of the pain pathway
天然产物作为疼痛通路的探针
- 批准号:
10548116 - 财政年份:2017
- 资助金额:
$ 119.52万 - 项目类别:
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