Epigenetic Modulation of the Epiphyseal Growth Plate to Treat Pediatric Limb Deformities
Epigenetic Modulation of the Epiphyseal Growth Plate to Treat Pediatric Limb Deformities
批准号:
8823861
负责人:
Annalise Noelle Larson
金额:
$7.95万
依托单位:
依托单位国家:
美国
项目类别:
财政年份:
2014
资助国家:
美国
项目状态:
已结题
起止时间:
2014-09-16 至 2017-07-31
关键词:
Activities of Daily LivingAnatomyBiological AssayBiopsyCell Culture TechniquesCell CycleCell Cycle ProgressionCell Differentiation processCell ProliferationCellsChildChildhoodChondrocytesClinicalClinical TrialsCollagenComplexDataDeformityDevelopmentDiseaseDistalDistraction OsteogenesisDrug Delivery SystemsEpigenetic ProcessEpiphysial cartilageExhibitsExternal Fixation DevicesExtracellular MatrixFractureFunctional RNAGoalsGrowthHistological TechniquesHumanHuman ActivitiesHypertrophyIn VitroInfectionInjection of therapeutic agentInvestigationLegLengthLimb structureLinkLocationMeasuresMediatingMediator of activation proteinMedicalMessenger RNAMicroRNAsModelingMorbidity - disease rateOperative Surgical ProceduresOutcomePainPoriferaProceduresProductionProliferatingRNA SequencesRegulator GenesResearchRoleSideSmall RNAStagingSymptomsTechniquesTherapeuticTherapeutic AgentsTherapeutic EffectValidationbasebonechronic painclinical applicationclinical practicedisabilityfunctional outcomesfunctional restorationhigh riskhistone modificationimprovedinfancyinhibitor/antagonistlong bonenerve injurynext generationpre-clinicalpublic health relevancereconstructiontissue culturetranscription factortreatment strategy
中文摘要
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英文摘要
DESCRIPTION (provided by applicant): Pediatric limb deformities are clinically challenging disorders that result in lifelong disability, chronic pain, and often require multiple complex surgical reconstructions to restore function. Therapeutic strategies that can reversibly slow or accelerate the growth of the extremities by altering the biologic landscape of the epiphyseal growth plate have the potential to correct limb deformities while avoiding the complications and morbidity associated with current treatments. Epiphyseal growth plates initially grow at symmetrical rates within the body, but later in development begin to show changes in growth velocity based on their location within the body. We hypothesize that changes in the epigenetic state of the epiphyseal growth plate are responsible for the differential growth rates. MicroRNAs are small non-coding RNA molecules that are capable of mediating epigenetic shift by suppressing the activity of target transcription factors. This proposal will investigate the clinicl potential of microRNAs to induce epigenetic change within the epiphyseal growth plate to alter its growth velocity for applications in pediatric limb deformity correction by (i) defining gene regulatory parameters linked to growth rate in surgical biopsies of the human physis, (ii) validating the biologic activity of microRNA transcription factor regulatory networks on growth plate chondrocytes, and (iii) evaluating different drug delivery strategies that can potentially be
used to treat limb length discrepancies and angular limb deformities. Completion of this investigation will identify small non-coding RNAs that can be therapeutically leveraged to treat pediatric limb deformities and leg length discrepancies by increasing or slowing limb growth. It will also identify transcription factor networks that can be therapeutically targeted to control lib growth using pharmacologic agents that are currently being used in clinical practice to treat other medical conditions. This proposal will also explore two different drug delivery strategies, one involving direct injection into the center of the epiphyseal growth plate to uniformly increase
or decrease growth throughout the physis, and another delivery strategy where therapeutic agents are delivered preferentially to one side of the physis to intentionally induce asymmetrical growth across the physis, so that angular limb deformities can be corrected.
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Epigenetic Modulation of the Epiphyseal Growth Plate to Treat Pediatric Limb Deformities
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批准号:8928047
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项目类别:
-
资助金额:$7.95万
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财政年份:2014
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负责人:Annalise Noelle Larson
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依托单位:
海外基金