Epigenetic reprogramming to generate novel chondro-osseous stem cells for bone tissue engineering
Epigenetic reprogramming to generate novel chondro-osseous stem cells for bone tissue engineering
批准号:
10041588
负责人:
Alan ROBERT Davis
金额:
$21.12万
依托单位国家:
美国
项目类别:
财政年份:
2020
资助国家:
美国
项目状态:
已结题
起止时间:
2020-07-15 至 2022-06-30
关键词:
ATAC-seqActive SitesAdultAffinityAlgorithmsAstrocytesAutomobile DrivingBMP2 geneBone DiseasesBone RegenerationBone TissueCartilageCell MaturationCell physiologyCellsCellular AssayChondrocytesChromatinCluster AnalysisCpG dinucleotideDNADataData SetDevelopmentEGR2 geneEmbryoEngineeringEnhancersEnterobacteria phage P1 Cre recombinaseEpigenetic ProcessErythrocytesExposure toGLAST ProteinGenerationsGenesGenetic TranscriptionGenomicsGlutamate TransporterGrantHeterotopic OssificationHistonesHome environmentHourLabelLeadLinkLiteratureMalignant NeoplasmsMethyltransferaseModelingMolecularMusMyelin Basic ProteinsN-CadherinNatural regenerationNerveNeural CrestNucleosomesOntologyOsteoblastsOsteogenesisPMP22 genePathway interactionsPeripheral NervesPhenotypePhospholipidsPhysiologic pulsePolycombPopulationProcessProteinsRed nucleus structureReporterReportingRepressionRepressor ProteinsRoleSchwann CellsSiteSynapsesTamoxifenTechnologyTestingTissue EngineeringTissuesTomatoesTranscriptTransposaseVariantaortic valve disorderbeta Tubulinblastomere structurebonecalcificationcancer stem cellcell typechromatin remodelingembryo tissueepigenetic memoryepigenetic regulationepithelial to mesenchymal transitionexperimental studyfetal reactivitygenomic platformhistone methylationin vivoin vivo evaluationlimb regenerationnerve stem cellneurograninnext generation sequencingnovelprogenitorpromoterrelating to nervous systemrepairedsingle-cell RNA sequencingsoft tissuestemstem cellsstem-like celltissue regenerationtranscription factortranscriptome
中文摘要
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英文摘要
Recent studies to harness the capacity of BMP2 to induce de novo bone formation for tissue and/or
limb regeneration resulted in the identification of a novel chondro-osseous progenitor that is primed to engraft
into sites of active bone formation, even when delivered systemically. These cells were identified using lineage
tracing for glial high affinity glutamate transporter GLAST, which has been shown to be restricted to neural
stem cells, astrocytes, and chondrocytes. Transcriptome analysis, using single cell RNAseq, led to the
identification of a highly replicating stem cell that appears to undergo an epithelial to mesenchymal transition
(EMT) to become a cell that expresses a large number of chondrocyte and osteoblast associated transcripts
similar to a recently reported periosteal stem cell. Surprisingly, while the replicating stem cell expressed
GLAST as well as neurogranin, another synaptic protein, and β-tubulin 3/TUJ1; whereas mature chondrocytes
did not express this protein supporting its neural association. In further support several or all clusters also
expressed several Schwann cell markers including N-cadherin, Krox20, and myelin basic protein.
Transcriptome analysis also revealed that this cluster is highly expressing H2A.Z and SET methyltransferase
with decreasing synthesis in other clusters/cells correlating with pseudotime or cell maturation. The data
collectively has led us to hypothesize that Schwann cells upon exposure to BMP2 undergo epigenetic
reprogramming and reactivation of primed tissue specific developmental enhancers leading to a neural crest
progenitor/stem cell phenotype. Further, these stem/progenitors are then able to undergo re-differentiation into
chondrocytes and osteoblasts. To test this hypothesis, we propose to utilize the phospholipid protein 1 (Plp1)
promoter driving Cre recombinase and tomato redfloxSTOPflox mouse to be able to initially label Schwann cells
and allow for reporter expression in downstream reprogrammed cells. GLAST-TR+ cells obtained 48 hours
after delivery of BMP2, will also be included to obtain potential earlier clusters. GLAST-TR+ and/or Plp1-TR+
cells from soft tissues surrounding the region of de novo bone formation 24 hours after delivery of BMP2 and
subjected to single cell RNAseq and single cell ATACseq, which will identify changes in chromatin within the
cell populations that might reflect reprogramming of the cells to the highly replicative stem cell. The resultant
data will be correlated with the scRNAseq data to provide a molecular mechanism for the generation of these
cells. From this data one can then start to envision ex vivo reprogramming of cells to form these chondro-
osseous progenitors that will home to sites of active bone formation.
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Epigenetic reprogramming to generate novel chondro-osseous stem cells for bone tissue engineering
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批准号:10215392
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项目类别:
-
资助金额:$17.07万
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财政年份:2020
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负责人:Alan ROBERT Davis
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依托单位:
Neural Mechanisms in Heterotopic Ossification
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批准号:9088356
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项目类别:
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资助金额:$34.87万
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财政年份:2014
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负责人:Alan ROBERT Davis
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依托单位:
Neural Mechanisms in Heterotopic Ossification
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批准号:8748220
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项目类别:
-
资助金额:$34.65万
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财政年份:2014
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负责人:Alan ROBERT Davis
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依托单位:
Neural Mechanisms in Heterotopic Ossification
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批准号:8895267
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项目类别:
-
资助金额:$34.87万
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财政年份:2014
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负责人:Alan ROBERT Davis
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依托单位:
Heterotopic bone from stem cells in peripheral nerves released by neurogenic infl
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批准号:8499272
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项目类别:
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资助金额:$16.73万
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财政年份:2012
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负责人:Alan ROBERT Davis
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依托单位:
Heterotopic bone from stem cells in peripheral nerves released by neurogenic infl
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批准号:8383974
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项目类别:
-
资助金额:$21.13万
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财政年份:2012
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负责人:Alan ROBERT Davis
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依托单位:
Vector Targeting for Fracture Repair
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批准号:6441350
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项目类别:
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资助金额:$7.53万
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财政年份:2001
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负责人:Alan ROBERT Davis
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依托单位:
Vector Targeting for Fracture Repair
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批准号:6533045
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项目类别:
-
资助金额:$7.53万
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财政年份:2001
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负责人:Alan ROBERT Davis
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依托单位:
海外基金