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The Role of MicroRNAs in Corneal Epithelial Homeostasis

The Role of MicroRNAs in Corneal Epithelial Homeostasis
MicroRNA 在角膜上皮稳态中的作用
批准号:
10468130
负责人:
ROBERT M LAVKER
金额:
$39.77万
依托单位国家:
美国
项目类别:
财政年份:
2010
资助国家:
美国
项目状态:
已结题
起止时间:
2010-06-01 至 2024-07-31
关键词:
ACE2AffectAgeAngiogenesis InhibitorsAnteriorAnti-Inflammatory AgentsAreaAttenuatedAutophagocytosisBasal CellBiochemicalBiologicalBiological AssayBiological ProcessBiologyBlood VesselsCell Culture TechniquesCell LineCell-Cell AdhesionCellsChronicComplexConnexin 43CorneaCorneal DiseasesCorneal NeovascularizationCytoplasmDNA BindingDNA Modification MethylasesDataDiabetes MellitusDiabetic mouseDiseaseE-CadherinEndothelial CellsEndotheliumEnvironmentEph Family ReceptorsEphrin-A3EphrinsEpigenetic ProcessEpithelialEpithelial CellsEquilibriumEyeFamilyFoundationsFundingGap JunctionsGene DeliveryGene SilencingGoalsHigh Density LipoproteinsHistone AcetylationHistone DeacetylaseHomeostasisHumanHypermethylationINPPL1 geneInflammationInflammatoryInjuryInvestigationKeratitisKnockout MiceLigandsMaintenanceMediatingMethyl-CpG-Binding Protein 2MethylationMicroRNAsModelingModificationMolecularMusNF-kappa BObese MicePatientsPersonal SatisfactionPharmacologyPhenotypePhysiologicalPhysiological ProcessesProcessPromoter RegionsPropertyProteinsRNA InterferenceReceptor Protein-Tyrosine KinasesRegulationRegulator GenesReportingRestRoleSignal TransductionSiteStructureSurfaceSystemTNFRSF5 geneTestingTherapeuticTherapeutic InterventionTissuesTopical applicationTreatment ProtocolsVascular Endothelial Growth FactorsVascularizationVisionWingbasecell motilitychromatin immunoprecipitationcorneal epithelial stem cellscorneal epithelial wound healingcorneal epitheliumdiet-induced obesityepithelial stem cellepithelial woundeye drynessin vivoinhibitorinnovationlimbalmacrophagemembermigrationnanoparticlenanoparticle deliverynovelocular surfaceoverexpressionpreservationpromoterself assemblyself-renewalside effectsmall hairpin RNAstem cell homeostasisstem cell nichestem cellstissue regenerationtranslational potentialvascular factor

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PROJECT SUMMARY/ABSTRACT The anterior surface of the eye functions as a barrier to the external environment and protects the delicate underlying structures from injury, in part, through the elaboration of the limbal and corneal epithelia. It is well- accepted that the limbal epithelium is the site of the corneal epithelial stem cells, which are crucial for maintaining the corneal epithelium; however, major questions remain unresolved concerning how the limbal epithelium is regulated. microRNAs (miRNAs) are a major class of regulatory molecules that are part of the RNAi silencing machinery. We demonstrated that miR-184 was the most abundant corneal epithelial miRNA, and that miR-184 had marked angiostatic properties, which makes excellent biological sense as it is vital that the cornea maintains avascularity. Surprisingly, given the prominence of miR-184 in limbal/corneal epithelial biology, little is known about its regulation. Our recent evidence suggests that miR-184 is negatively regulated by Ephrin-A3 (EFNA3), a member of the Eph/ephrin receptor tyrosine kinase family. EFNA3, is primarily restricted to limbal epithelial basal cells. Interestingly, overexpression of EFNA3 significantly reduced miR-184 levels. Furthermore, another corneal-preferred miRNA, miR-210, targets EFNA3, which could indirectly maintain miR-184 levels in the corneal epithelium. The lack of miR-210 in the limbal epithelium likely accounts for limbal epithelial EFNA3 expression. Our hypothesis is that a EFNA3/miR-210 axis negatively regulates miR-184, which enables proper limbal vascularity, an essential component of the stem cell niche; a relatively understudied area. To test this hypothesis, we will modulate miRNA and target protein levels in submerged cultures of human limbal and corneal epithelial cells and human microvascular endothelial cells. We will assess the functional consequences of such miRNA and protein modulations with a combination of biochemical, molecular biological, cell biological and physiological approaches. Another goal of this proposal is to realize the unlimited potential of miRNAs as therapeutic interventions to affect diseased tissues. Preliminary data indicates that a novel high density lipoprotein (HDL)-nanoparticle (NP) can deliver functional miRNAs into human corneal epithelial cells. Excitingly, when a Cy-3-taged HDL-NP solution was applied topically to resting mouse corneas, the Cy-3-tagged HDL-NPs were detected in the cytoplasm of corneal epithelial basal and wing cells. We propose to focus on how miR-HDL-NPs affect the biology of limbal/corneal epithelia in vivo. To accomplish this, we will use diabetic mice as a model of compromised corneal epithelial wound healing and topically treat with a HDL-NP conjugated miR-205, a pro-migration miRNA. We will also use mice lacking angiotensin converting enzyme 2 (ACE2) as a model of chronic corneal inflammation (e.g., bacterial keratitis or dry eye) and topically treat with a HDL-NP conjugated miR-146a, an anti-inflammatory miRNA. Ultimately our studies will provide a foundation for delivery of: (i) inhibitors of specific miRNAs or their targets; or (ii) miRNAs to patients with diseases that affect the ocular anterior epithelia.
期刊论文(4)
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会议论文
DOI: 10.1016/j.mce.2021.111260
发表时间: 2021-06-01
期刊: Molecular and cellular endocrinology
影响因子: 4.1
作者: [Kaplan N, Gonzalez E, Peng H, Batlle D, Lavker RM]
通讯作者: Lavker RM
DOI: 10.1016/j.bbagrm.2016.07.006
发表时间: 2016-10
期刊: Biochimica et biophysica acta
影响因子: --
作者: [Cipolla GA, Park JK, de Oliveira LA, Lobo-Alves SC, de Almeida RC, Farias TD, Lemos Dde S, Malheiros D, Lavker RM, Petzl-Erler ML]
通讯作者: Petzl-Erler ML
DOI: 10.3389/fimmu.2017.01022
发表时间: 2017-09-05
期刊: FRONTIERS IN IMMUNOLOGY
影响因子: 7.3
作者: [Cipolla, Gabriel A., Park, Jong Kook, Petzl-Erler, Maria Luiza]
通讯作者: Petzl-Erler, Maria Luiza
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