INHIBITED INTRAMEMBRANEOUS BONE HEALING IN DIABETES
INHIBITED INTRAMEMBRANEOUS BONE HEALING IN DIABETES
批准号:
7231492
负责人:
PHILIP C TRACKMAN
金额:
$25.46万
依托单位国家:
美国
项目类别:
财政年份:
2003
资助国家:
美国
项目状态:
已结题
起止时间:
2003-06-01 至 2009-02-28
关键词:
Advanced Glycosylation End ProductsAnimalsAtherosclerosisBindingBiological AssayBlocking AntibodiesBone DensityBone DiseasesCalvariaCell Surface ReceptorsClinicalCollagenCollagen Type IComplicationComplications of Diabetes MellitusConditionCultured CellsDefectDermalDiabetes MellitusDiabetic mouseDoseDown-RegulationEatingEventExtracellular MatrixExtracellular ProteinGenesGlucoseGoalsGrowth FactorHealedI Kappa B-AlphaIn VitroInsulin-Dependent Diabetes MellitusInvestigationKidney FailureLeadMeasurementMeasuresMediatingMineralsModelingModificationMolecularMusNF-kappa BOsteoblastsOsteogenesisPathologyPatternPeriodontal DiseasesPhenotypePlayProductionPropertyProteinsProtocols documentationRattusRegulationReportingResearchRoleSerumSpecific qualifier valueStreptozocinStructural ProteinTransfectionWound Healingbasebonebone growth factorbone healingbone morphogenetic protein 4bone turnovercytokinedensitydiabeticextracellulargene repressionglycationhealingin vivoinhibitor/antagonistintramembranous bonenon-diabeticnovel therapeuticsprocollagen C-endopeptidasereceptortranscription factor
中文摘要
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英文摘要
DESCRIPTION (provided by applicant): Complications of diabetes result in part from elevated serum glucose levels. This leads to non-enzymatic glycation of proteins to form advanced glycation end products (AGE's). AGE's play a significant role in many complications of diabetes. Osteopenia and low mineral density and weak bones is a complication of Type 1 diabetes and is known as "diabetic bone disease". Surprisingly little is known regarding the role of AGE's in modulating bone healing, bone formation, and osteoblast function. For example, the presence and activity of the receptor for advanced glycation end products (RAGE) has not been reported in osteoblasts. The principal hypothesis of the proposed research is that AGE's inhibit bone healing and formation by binding and activating RAGE in osteoblasts. We propose that this results in NFKB activation and transcriptional repression and down-regulation of key osteoblast growth factors and extracellular matrix genes.
Aim 1 will measure in vivo the expression of selected growth factors and extracellular matrix products (BMP-1, BMP- 2, BMP-4, and type I collagen) in healing calvaria defects made in diabetic and non-diabetic mice. Diabetes will be induced by the multiple low dose streptozotocin protocol in Balb/c mice; selected studies will be performed in the nonchemically-induced murine diabetic model (NOD strain). The degree of inhibition of bone healing in diabetic animals and expression patterns of RAGE will be determined by quantitative histomorphometric and quantitative immunohistochemical measurements. Studies will directly determine the role of AGE's in diminished diabetic bone formation by local application of AGE's to calvaria defects in non-diabetic mice. The degree to which this mimics diabetic bone will be determined by measuring inhibition of healing and regulation of the same growth factors and extracellular matrix products.
Aim 2 will determine in vitro in primary rat osteoblast cell cultures that AGE's inhibit production of osteoblast growth factors and type I collagen via RAGE activated NF-KB. RAGE function blocking antibody studies will identify the AGE/RAGE-dependent NF-KB activation mechanism in the regulation of the specified osteoblast genes. The role of NF-KB activation in down-regulating target osteoblast genes will be directly determined by transfection with the super-repressor 32A/36A IKB-alpha, a potent and specific inhibitor of NF-KB activation. These studies will identify a new mechanism that contributes to diabetic bone disease; and should lead to the identification of new therapeutic treatment targets for this increasingly prevalent clinical condition.
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会议论文
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批准号:10368127
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资助金额:$20.46万
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依托单位:
GROWTH FACTORS AND GINGIVAL FIBROSIS
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批准号:7606224
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资助金额:$1.39万
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财政年份:2007
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依托单位:
GROWTH FACTORS AND GINGIVAL FIBROSIS
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批准号:7379471
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项目类别:
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资助金额:$0.23万
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财政年份:2005
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负责人:PHILIP C TRACKMAN
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依托单位:
GROWTH FACTORS AND GINGIVAL FIBROSIS
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批准号:7206266
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项目类别:
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资助金额:$0.26万
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财政年份:2004
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依托单位:
INHIBITED INTRAMEMBRANEOUS BONE HEALING IN DIABETES
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批准号:6744840
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项目类别:
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资助金额:$26.85万
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财政年份:2003
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负责人:PHILIP C TRACKMAN
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依托单位:
Growth Factors and Gingival Fibrosis
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批准号:7042186
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项目类别:
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资助金额:$1.3万
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财政年份:2003
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负责人:PHILIP C TRACKMAN
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依托单位:
INHIBITED INTRAMEMBRANEOUS BONE HEALING IN DIABETES
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批准号:7067185
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项目类别:
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资助金额:$26.22万
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财政年份:2003
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负责人:PHILIP C TRACKMAN
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依托单位:
INHIBITED INTRAMEMBRANEOUS BONE HEALING IN DIABETES
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批准号:6572973
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项目类别:
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资助金额:$26.85万
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财政年份:2003
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负责人:PHILIP C TRACKMAN
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依托单位:
INHIBITED INTRAMEMBRANEOUS BONE HEALING IN DIABETES
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批准号:6890030
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项目类别:
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资助金额:$26.85万
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财政年份:2003
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负责人:PHILIP C TRACKMAN
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依托单位:
Inhibited Intramembranous Bone Healing in Diabetes
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批准号:8220803
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项目类别:
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资助金额:$34.04万
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Inhibited Intramembranous Bone Healing in Diabetes
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批准号:8415964
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Inhibited Intramembranous Bone Healing in Diabetes
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批准号:7646032
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项目类别:
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资助金额:$37.11万
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依托单位:
Inhibited Intramembranous Bone Healing in Diabetes
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批准号:7778365
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项目类别:
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资助金额:$34.39万
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财政年份:2003
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负责人:PHILIP C TRACKMAN
-
依托单位:
Inhibited Intramembranous Bone Healing in Diabetes
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批准号:8034355
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项目类别:
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资助金额:$33.36万
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财政年份:2003
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负责人:PHILIP C TRACKMAN
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依托单位:
MECHANISMS OF MINERALIZED MATRIX ACCUMULATION
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批准号:6150531
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项目类别:
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资助金额:$20.05万
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财政年份:1999
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负责人:PHILIP C TRACKMAN
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依托单位:
MECHANISMS OF MINERALIZED MATRIX ACCUMULATION
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批准号:6350588
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项目类别:
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资助金额:$20.96万
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财政年份:1999
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负责人:PHILIP C TRACKMAN
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依托单位:
MECHANISMS OF MINERALIZED MATRIX ACCUMULATION
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批准号:6497918
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项目类别:
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资助金额:$21.59万
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财政年份:1999
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负责人:PHILIP C TRACKMAN
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依托单位:
MECHANISMS OF MINERALIZED MATRIX ACCUMULATION
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批准号:2760246
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项目类别:
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资助金额:$20.37万
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财政年份:1999
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依托单位:
海外基金