课题基金 / 基金详情

Multiplexed imaging of Renin-Angiotensin System (RAS) pathways, endothelial and immune dysfunction in COVID-19 Lung

Multiplexed imaging of Renin-Angiotensin System (RAS) pathways, endothelial and immune dysfunction in COVID-19 Lung
COVID-19 肺中肾素-血管紧张素系统 (RAS) 通路、内皮和免疫功能障碍的多重成像
批准号:
10230749
负责人:
Yousef Al-Kofahi
金额:
$10.0万
依托单位国家:
美国
项目类别:
财政年份:
2019
资助国家:
美国
项目状态:
已结题
起止时间:
2019-09-15 至 2022-08-31
关键词:
2019-nCoVAffectAngiotensin IIAngiotensin ReceptorAngiotensinsAntibodiesArteriesAtlasesBindingBlood PlateletsBlood PressureBlood VesselsBlood capillariesCOVID-19Cardiovascular DiseasesCathepsin LCell LineageCell NucleusCellsCessation of lifeChronic lung diseaseCluster AnalysisCoagulation ProcessCollaborationsComplementCountryDataData ReportingData SetDiseaseDrug TargetingEndothelial CellsEndotheliumEnzymesEpithelialEpithelial CellsEpitheliumEtiologyExtravasationFreezingFunctional disorderFundingGenesGoalsGrowthHistologyHumanHuman BioMolecular Atlas ProgramHyperplasiaImmuneImmune System DiseasesImmune responseImmunofluorescence ImmunologicImpairmentIn SituIndividualInfectionInflammationInflammatoryInjuryInterventionJournalsKidneyLower respiratory tract structureLungLymphocyteMeasurementMeasuresMediatingMegakaryocytesMethodsMolecularMorbidity - disease rateMyeloid CellsNitric OxideOrganOrgan DonorPathway AnalysisPathway interactionsPatientsPeer ReviewPneumoniaPrincipal InvestigatorProcessProductionProtein AnalysisProteinsProteomicsPublicationsPulmonary artery structureRegulationRenin-Angiotensin SystemReportingResearchResearch PersonnelRespiratory MucosaRespiratory SystemRoleRouteSamplingSignal PathwaySliceSpecimenStainsStretchingStructure of parenchyma of lungSurfaceTMPRSS2 geneTechnologyThrombosisTissuesTrainingTumor-infiltrating immune cellsUnited States National Institutes of HealthUniversitiesVaccinesViralVirusVirus DiseasesWashingtonWorkalveolar epitheliumbasebiobankcell injurycell typecellular targetingcoronavirus diseasecytokine release syndromeendothelial dysfunctionhuman tissueimaging studyinsightinterestlung developmentmortalitymultiple omicsmultiplexed imagingpandemic diseaseprogramsprotective effectprotein expressionreceptorrecruitrespiratory virusresponsesingle cell analysissingle-cell RNA sequencingtranscriptomicsvascular smooth muscle cell migration

项目摘要

项目成果

Yousef Al-Kofahi的其他基金

相似基金

相关文献

中文摘要
翻译
项目总结
英文摘要
PROJECT SUMMARY SARS-CoV2 pandemic has already taken a high toll with ~700,000 (~155,00 US) deaths and 18 million (~5 million US) infections globally with unabated spread in many countries and new hotspots reemerging on a regular basis. While frantic efforts are underway to develop vaccines and therapies and there is high hope that these will be available over the next 6-12 months, there are no answers to how much and how long these will be effective. A continued effort on understanding the disease etiology, particularly in the organ first infected, and identifying new avenues of intervention therefore is important. The major route of virus infection is via the respiratory tract and virus is reported to spread via lung to other organs by vascular leakage by directly (through infection) or indirectly (by impairing ACE2 activity) affecting the endothelial and immune cells. Cells expressing ACE2 enzyme and other viral coreceptors (TMPRSS2 or Cathepsin L) are the major targets of viral infection. ACE2 is a key player in regulation of the Renin-Angiotensin system (RAS) pathway. By converting the product of ACE activity, angiotensin II (ang II), to angiotensin 1-7 (ang 1-7), ACE2 diminishes Ang II mediated deleterious effects that can include promoting vascular wall inflammation, endothelial dysfunction, endothelial cell and vascular smooth muscle cell migration, growth, proliferation, and thrombosis. Disruption of ACE2 by viral binding may reduce this protective effect. The inhibition of nitric oxide production, activation of megakaryocytes, complement and platelets can also cause thrombosis and thrombolytic dysfunction leading to clot formation in lung arteries and other organs. Since the early unprecedented global effort to identify the cellular targets of SARS-CoV2 using single cell RNA sequencing (scRNAseq) data from multiple human and non-human single cell datasets, several in depth reports on individual organs infected and cells and cellular pathways affected by this virus have appeared. Most of these reports are based on transcriptomic analysis of homogenized or disaggregated samples although some singleplex immunofluorescence analysis have been reported. COVID-19 tissue histology shows a very heterogenous disease which may be a function of multiple factors including cellular composition, spatial organization and neighboring cell activation. To understand these factors, here we propose an in situ multiplex immunofluorescence study of SARS- CoV2 positive and negative patient samples to spatially profile the cell types affected in the upper and lower respiratory tract and the role of RAS pathway activation in endothelial and immune cell dysfunction related to COVID-19 morbidity and mortality.
期刊论文(0)
专著(0)
科研奖励(0)
会议论文
Multi-Scale 3-D Image Analytics for High Dimensional Spatial Mapping of Normal Tissues
海外基金