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Targeting Spinal Neuropeptide Y1 Receptor-expressing Neurons for the Control of Neuropathic Pain

Targeting Spinal Neuropeptide Y1 Receptor-expressing Neurons for the Control of Neuropathic Pain
靶向表达脊髓神经肽 Y1 受体的神经元来控制神经性疼痛
批准号:
10319216
负责人:
Tyler Scott Nelson
金额:
$4.7万
依托单位国家:
美国
项目类别:
财政年份:
2021
资助国家:
美国
项目状态:
已结题
起止时间:
2021-07-01 至 2023-06-30
关键词:
AblationAbsence of pain sensationAddressAffectAfferent NeuronsAgonistAmericasAmygdaloid structureAnalgesicsBehaviorBehavioralBehavioral SymptomsBrainBrain regionCellsComplexCoupledDataData SetDevelopmentDiseaseEducational process of instructingElectrophysiology (science)EquilibriumFamilyFellowshipFluorescent in Situ HybridizationFrequenciesGeneral PopulationGeneticGlutamatesGoalsImmediate-Early GenesInjuryInstitutionInterneuronsKnock-outLabelLaboratoriesLeadLearningLesionMaintenanceMeasuresMediatingMentorsMentorshipMessenger RNAMethodsMusNational Research Service AwardsNeurobiologyNeuronsNeuropathyNeuropeptide ReceptorNeuropeptidesNeurosciencesNociceptionNociceptorsNucleosomesOpioidOutputPainPathologicPatientsPeripheralPeripheral nerve injuryPharmacologyPhasePhysiologicalPopulationPositioning AttributePrincipal InvestigatorProteinsQuality of lifeReportingResearchResearch PersonnelSignal TransductionSliceSocietiesSpinalSpinal CordSpinal cord posterior hornStimulusSystemTechniquesTestingTherapeuticTissuesTrainingTransgenic OrganismsUnited StatesUniversitiesWireless TechnologyWorkWritingbehavior testbehavioral pharmacologychronic painchronic painful conditiondorsal hornexperiencehealingimprovedin vivoin vivo calcium imaginginflammatory painmouse modelnerve injuryneuropeptide Yneuropeptide Y-Y1 receptornovel strategiesoptogeneticspain perceptionpainful neuropathyparabrachial nucleuspatch clamppostsynapticreceptorrelating to nervous systemsham surgerysingle-cell RNA sequencingskillssomatosensorytemporal measurementtenure tracktranscriptome sequencingtranscriptomicsvoltage clamp

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Project Summary Chronic pain conditions place significant burdens on patients, their families, and society by reducing quality of life and creating enormous financial consequences that total more than 630 billion USD annually for the United States of America alone. Neuropathic pain is a debilitating type of chronic pain that arises from a lesion or disease affecting the somatosensory system. Neuropathic pain affects 7-8% of the general population yet is poorly responsive to analgesic drugs, including opioids, thus, alternative therapeutics for treatment are desperately needed. However, the underlying mechanisms of the development and maintenance of neuropathic pain are poorly understood. It is hypothesized that neuropathic pain results from a loss of spinal cord dorsal horn inhibition and/or a gain in dorsal horn excitation that allows the propagation of low threshold innocuous inputs to be perceived as painful. Exactly how nerve injury disrupts this balance to generate a net pronociceptive tone, however, remains unclear. Specific Aim 1 describes promising preliminary data within our laboratory that implicates glutamatergic dorsal horn interneurons expressing the neuropeptide Y (NPY) Y1 receptor in both the development and maintenance of neuropathic pain. First, selective ablation of neuropeptide Y1 receptor- expressing interneurons (Y1-INs) with intrathecal NPY-saporin reduced the development of behavioral signs of neuropathic pain. Second, intrathecal pharmacology and intraspinal chemogenetic techniques indicate that Y1- INs are both necessary and sufficient for the behavioral manifestations of neuropathic pain. Lastly, both single cell RNA-sequencing and fluorescence in situ hybridization data indicate that Y1-INs segregate into three distinct dorsal horn interneuron subpopulations. Together, these observations form the premise for my central hypothesis that nerve injury increases the excitability of Y1-INs, and this makes one or more subpopulations of Y1-INs necessary for the behavioral symptoms of neuropathic pain. Specific Aim 2 will explore this hypothesis via intraspinal pharmacology, behavioral testing, in vivo wireless optogenetics, intersectional Cre-lox transgenics, and patch clamp electrophysiology. Together these methods will test which Y1-IN subpopulation(s) is/are necessary for the behavioral signs of neuropathic pain. Further, these methods will assess changes in pre- or postsynaptic excitatory and inhibitory activity to Y1-INs following nerve injury to uncover mechanistic changes in the circuit that might lead to the development of neuropathic pain. Specific Aim 3 details a plan to identify and pursue a neuroscience focused postdoctoral fellowship following the completion of the dissertation work described in Specific Aim 2. The overarching goals of this study are to increase our understanding of how nerve injury increases the excitability of Y1-IN subpopulations, and provide rationale for targeting spinal Y1-INs as a novel approach to treat neuropathic pain.
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Targeting Spinal Neuropeptide Y1 Receptor-expressing Neurons for the Control of Neuropathic Pain
Dissecting the Parabrachial Nucleus’s Role in the Development and Maintenance of Neuropathic Pain
  • 批准号:
    10710096
  • 项目类别:
  • 资助金额:
    $8.64万
  • 财政年份:
    2021
  • 负责人:
    Tyler Scott Nelson
  • 依托单位: