Novel Mechanisms of Decreased NO Bioavailability in Sickle Cell Nephropathy
Novel Mechanisms of Decreased NO Bioavailability in Sickle Cell Nephropathy
批准号:
9324987
负责人:
Brandon M Fox
金额:
$4.25万
依托单位国家:
美国
项目类别:
财政年份:
2015
资助国家:
美国
项目状态:
已结题
起止时间:
2015-08-01 至 2019-07-31
关键词:
AdultAffectAnimalsBiological AvailabilityBlood VesselsBone Marrow TransplantationChildhoodChronicClinicalComplicationDataDeacetylationDevelopmentDiseaseEnd stage renal failureEndothelial CellsEndothelin-1Functional disorderGene ExpressionGenetic TranscriptionGenotypeGoalsHDAC1 geneHematological DiseaseHistone DeacetylaseHistone Deacetylase InhibitorHypoxiaIndividualInheritedInjuryInterventionKidneyKidney Concentrating AbilityKidney DiseasesKidney FailureKnock-outKnockout MiceLeadLysineMS-275MeasurementMeasuresMediatingMorbidity - disease rateMusNOS3 geneNitric OxideOrganPathologyPathway interactionsPatientsPharmacologyPhysiciansPlayProductionProtein IsoformsProteinuriaReactive Oxygen SpeciesRegulator GenesRenal functionRoleScientistSickle CellSickle Cell AnemiaSourceTestingTissuesTrainingTransgenic MiceUnited StatesVascular Endothelial CellVascular EndotheliumVasoconstrictor AgentsVorinostatbeta Globinexperimental studyimprovedinhibitor/antagonistkidney vascular structuremortalitymouse modelmutantnon-histone proteinnoveloutcome forecastoverexpressionpatient subsetspreventpublic health relevancereceptorrenal artery
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英文摘要
DESCRIPTION (provided by applicant): Sickle Cell Disease is the most common inherited blood disorder in the United States and arises when affected individuals are homozygous for a mutant form of beta globin. Renal disease in patients with sickle cell disease (sickle cell nephropathy) occurs in a significant subset of patients and often rapidly progresses to renal failure. Decreased renal vascular nitric oxide production plays a major role in the development of sickle cell nephropathy. However, the mechanisms that contribute to this decreased nitric oxide production are poorly understood. The central hypothesis of the proposed studies is that, within renal vascular endothelial cells, sickle cell disease causes increased endothelin-1 (ET-1) production and increased histone deacetylase 1 (HDAC1) activity that lead to decreased nitric oxide production and, subsequently, renal injury and sickle cell nephropathy. In order to study the contribution of ET-1, we are developing an endothelial-specific ET-1 knockout mouse on a humanized sickle cell disease mouse background. These animals will be studied in order to determine markers of renal vascular nitric oxide production, and additionally, will undergo studies to evaluate renal function and renal injury. To determine the contribution of increased HDAC1 activity in renal vascular endothelial cells, humanized sickle cell disease mice will be treated with the HDAC1 inhibitor MS-275 and the clinically approved HDAC inhibitor, vorinostat. Following treatment, experiments used in the ET-1 aim will be utilized to investigate nitric oxide production, renal function, and renal damage.
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Novel Mechanisms of Decreased NO Bioavailability in Sickle Cell Nephropathy
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批准号:8983325
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项目类别:
-
资助金额:$3.33万
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财政年份:2015
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负责人:Brandon M Fox
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依托单位:
海外基金