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Alternative treatments for disc degeneration: Effects on matrix homeostasis

Alternative treatments for disc degeneration: Effects on matrix homeostasis
椎间盘退变的替代治疗:对基质稳态的影响
批准号:
7661899
负责人:
Gwendolyn A Sowa
金额:
$12.49万
依托单位国家:
美国
项目类别:
财政年份:
2009
资助国家:
美国
项目状态:
已结题
起止时间:
2009-05-01 至 2014-01-31
关键词:
1 year oldAcidsAddressAffectAgeAging-Related ProcessAlternative TherapiesAnimal ModelBiochemical PathwayBiological AssayBiological AvailabilityBiological ModelsBiomechanicsCartilageCatabolismCell Culture TechniquesCellsCenters for Disease Control and Prevention (U.S.)ChondroitinClinical ResearchClinical TreatmentCollagenDataDevelopmentDinoprostoneEnvironmentEquilibriumExtracellular MatrixFactor AnalysisFutureGene ExpressionGlucosamineGlucosamine SulfateGoalsHeightHistologyHomeostasisHumanIn VitroInflammationInflammatoryInstructionInterventionIntervertebral disc structureInvestigationLaboratoriesLeadLow Back PainMagnetic Resonance ImagingMeasurementMeasuresMechanical StimulationMechanical StressMechanicsMediator of activation proteinMetabolismMetalloproteasesModelingMolecularMotionMovementNitric OxideNutritionalOmega-3 Fatty AcidsOperative Surgical ProceduresOralOryctolagus cuniculusOutcomePathway interactionsPatientsPerformancePharmaceutical PreparationsPhysiologicalProcessProteoglycanRegulatory PathwayReportingResearchRobotRoleStagingStimulusStressStructural GenesSystemTechniquesTestingTissuesTrainingTranslatingTranslationsTreatment ProtocolsVertebral columnWaterWhole OrganismWorkYogaaggrecanaggrecanasealternative treatmentbasechronic back paincyclooxygenase 2designdietary supplementsexperiencehuman NOS2A proteinin vivoin vivo Modelindexingindium arsenideinhibitor/antagonistintervertebral disk degenerationkinematicsnovelnucleus pulposuspreventprogramsprotective effectpublic health relevanceresponsesimulationtherapeutic target

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DESCRIPTION (provided by applicant): Intervertebral disc degeneration is characterized by progressive loss of disc height related to loss of water content and proteoglycans. Key mechanisms involved in this process include inflammatory and mechanical stress. It is biologically plausible that CAM therapies, such as yoga or nutritional supplements, may exert their beneficial actions on the spine through these pathways. The fundamental goals of this research are to investigate the mechanisms behind the effects of motion based therapies, such as yoga, and oral supplements, including glusosamine, chondroitin, and omega-3 fatty acids, on matrix balance in the intervertebral disc through use of both in vitro and in vivo systems. The immediate impact of this work is in demonstrating the biologic effects of mechanical loading and nutritional supplements on the intervertebral disc using cell culture and animal model systems. This will provide us with a powerful experimental platform with which we can test the effect of various additional loading paradigms as well as nutritional supplements on disc matrix homeostasis. Upon elucidation of the effected biochemical pathways, future studies will correlate the model systems to human spine kinematics relevant to CAM motion based therapies. This will result in the ability to translate these findings into more mechanistically directed clinical studies and rationally targeted therapeutics, which represents the long term goal of the candidate. This work and the expertise gained through the proposed training plan will serve as initial building blocks for a research program in which CAM questions can be addressed at the molecular, tissue, and whole organism level. RELEVANCE (See instructions): In a CDC report from 2004, low back pain was identified as the most common condition for which patients sought alternative treatments such as yoga and oral supplements. To utilize these interventions most effectively, it is critical to understand how these therapies are facilitating their effects. The goals of this research are to understand the effects of motion based therapies, such as yoga, and oral supplements, including glusosamine, chondroitin, and omega-3 fatty acids, on the cartilage of the spine. PUBLIC HEALTH RELEVANCE: In a CDC report from 2004, low back pain was identified as the most common condition for which patients sought alternative treatments such as yoga and oral supplements. To utilize these interventions most effectively, it is critical to understand how these therapies are facilitating their effects. The goals of this research are to understand the effects of motion based therapies, such as yoga, and oral supplements, including glusosamine, chondroitin, and omega-3 fatty acids, on the cartilage of the spine.
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海外基金
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  • 批准号:
    22007039
  • 项目类别:
    青年科学基金项目
  • 资助金额:
    24.0万元
  • 批准年份:
    2020
  • 负责人:
    王黎明
  • 依托单位:
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  • 批准号:
    21172061
  • 项目类别:
    面上项目
  • 资助金额:
    30.0万元
  • 批准年份:
    2011
  • 负责人:
    许新华
  • 依托单位: