Dissecting the mechanisms of intestinal epithelial injury by Ebola virus using iPSC-derived intestinal organoids
Dissecting the mechanisms of intestinal epithelial injury by Ebola virus using iPSC-derived intestinal organoids
批准号:
10659217
负责人:
Gustavo Mostoslavsky
金额:
$21.25万
依托单位:
依托单位国家:
美国
项目类别:
财政年份:
2022
资助国家:
美国
项目状态:
已结题
起止时间:
2022-07-05 至 2024-06-30
关键词:
Abdominal PainAblationAdmission activityAffectAfricaAnimal ModelAreaBacteremiaBacteriaCDX2 geneCase Fatality RatesCase StudyCell Culture SystemCell LineageCell modelCellsCessation of lifeCharacteristicsClustered Regularly Interspaced Short Palindromic RepeatsComplicationDefectDeteriorationDevelopmentDiarrheaDiseaseDisease ProgressionDisease modelDistalEbolaEbola Hemorrhagic FeverEbola virusEmergency SituationEndotoxinsEnterocytesEpithelial CellsEpitheliumFeverFiloviridae InfectionsFilovirusFunctional disorderGenesGeneticGoalsHumanHypovolemic ShockImmuneImmune responseIn VitroIndividualInfectionInflammatory ResponseIntercellular JunctionsIntestinesInvadedIonsLiquid substanceMacrophageMarburg Virus DiseaseMarburgvirusMediatingModelingMolecularMonoclonal AntibodiesOrganOrganoidsPathogenesisPathogenicityPathologyPathway interactionsPatientsPositioning AttributePreparationProteinsReportingRoleSamplingSepticemiaSymptomsTestingTherapeuticTherapeutic InterventionTherapeutic Monoclonal AntibodiesTight JunctionsTissuesVaccinesViralViral PathogenesisVirusVirus DiseasesVomitingZaire Ebola virusZoonosescell injurycommon symptomdesigndrug candidateenteric infectionepithelial injurygastrointestinalgastrointestinal symptominduced pluripotent stem cellintestinal barrierintestinal epitheliumnonhuman primatenovelregeneration modelself-renewalstem cell differentiationtissue regenerationtranscriptomicsviral outbreak
中文摘要
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英文摘要
Project Summary
Filoviruses, including ebola- and marburgviruses, are prime examples of zoonotic viruses that cause severe
disease in humans. The most pathogenic ebolavirus species is Ebola virus (Zaire ebolavirus; EBOV) with case
fatality rates ranging from 40 to 90%. Many patients who succumb to the disease are admitted to Ebola treatment
units when they are already severely ill. Importantly, there are no therapeutics available to mitigate late-stage
Ebola Virus Disease (EVD). While many aspects of EBOV pathogenesis have been extensively studied in cell
culture systems and animal models, the involvement of the intestine in EVD is not at all understood, despite
diarrhea being among the most frequent symptoms (78% of patients in some case studies) and being one of the
main causes for demise. Gastrointestinal manifestations, including vomiting, abdominal pain, and diarrhea, are
also common symptoms of Marburg virus (MARV) disease. There are currently no infection models available
that allow to study the consequences of filovirus infection of the gut. To fill this gap, we propose to establish
human intestinal infection platforms to dissect the molecular mechanisms underlying filovirus-induced damage
of the intestinal organs. We will explore two potential mechanisms that might play a role in the pathophysiological
effects induced by filovirus infection: i) Filovirus infection of the human intestinal epithelium leads to loss of barrier
integrity. ii) Filovirus infection of the human intestinal epithelium modulates the function of ion transporters.
Identifying mechanisms that contribute to the induction of severe diarrhea in filovirus infection has the potential
to inform urgently needed therapeutic approaches to mitigate the severe intestinal symptoms in late-stage
filovirus disease.
Human induced pluripotent stem cells (iPSCs) are capable of indefinite self-renewal and have the potential to
differentiate into any tissue-specific cell lineage, including human intestinal organoids (HIOs). In preparation for
this project, we have successfully achieved robust EBOV and MARV infections of iPSC-derived HIOs. The
infected cells showed signs of cell damage, and transcriptomics analysis indicated the modulation of cell junction
pathways and a set of ion transporters known to play a role in the induction of diarrhea. To begin to explore the
intrinsic host response of intestinal cells to filovirus infection and the impact of infection-induced cellular damage
on barrier integrity, we have designed the following specific aims:
Specific Aim 1: To study the pathophysiological effects of EBOV and MARV infection on intestinal
epithelial integrity.
Specific Aim 2: To validate the role of individual genes by genetic ablation and test potential drug
candidates as modulators of intestinal epithelial function.
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Dissecting the mechanisms of intestinal epithelial injury by Ebola virus using iPSC-derived intestinal organoids
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批准号:10538716
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项目类别:
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批准号:7533036
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项目类别:
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资助金额:$25.1万
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财政年份:2008
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负责人:Gustavo Mostoslavsky
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项目类别:
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资助金额:$21.11万
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财政年份:2008
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负责人:Gustavo Mostoslavsky
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依托单位:
海外基金