grant

Leveraging multi-omics to maximize the scientific value of pediatric sepsis biorepository and advance patient endotyping

Organization CINCINNATI CHILDRENS HOSP MED CTRLocation CINCINNATI, UNITED STATESPosted 5 Aug 2023Deadline 30 Jun 2027
NIHUS FederalResearch GrantFY20250-11 years oldAddressAffectAntibiotic AgentsAntibiotic DrugsAntibioticsBeadChipBioinformaticsBiologicalBiologyBlood SampleBlood specimenCancersCharacteristicsChildChild YouthChildhoodChildren (0-21)ClinicalClinical DataClinical TrialsCollectionCommunitiesCpG IslandsCpG-Rich IslandsCritical IllnessCritically IllCritically ill childrenDNADNA MethylationDNA methylation profilingDataData BasesData SetDatabasesDeoxyribonucleic AcidDerivationDerivation procedureDevelopmentDimensionsDiseaseDisorderDrugsDysfunctionElectronic Health RecordEnsureEpigeneticEpigenetic ChangeEpigenetic MechanismEpigenetic ProcessEquityEvolutionFactor AnalysesFactor AnalysisFeasibility StudiesFoundationsFunctional disorderFundingFutureGene Action RegulationGene ExpressionGene Expression MonitoringGene Expression Pattern AnalysisGene Expression ProfilingGene Expression RegulationGene RegulationGene Regulation ProcessGene TranscriptionGenesGenetic TranscriptionHealthHumanImmune responseInfectionInvestigatorsKnowledgeLaboratoriesLifeLinkMalignant NeoplasmsMalignant TumorMedicationMessenger RNAMethodologyMethodsMethyl-SeqMethylSeqMethylationMethylation sequencingMiscellaneous AntibioticModelingModern ManMolecularMorbidityMorbidity - disease rateNIGMSNational Institute of General Medical SciencesNatureNon-Polyadenylated RNAOrganOutcomePathway interactionsPatient CarePatient Care DeliveryPatient outcomePatient-Centered OutcomesPatient-Focused OutcomesPatientsPatternPharmaceutical PreparationsPhasePhased Innovation AwardsPhysiopathologyPrecision therapeuticsProcessQuality ControlR21/R33 MechanismR21/R33 ProgramRNARNA ExpressionRNA Gene ProductsRNA SeqRNA sequencingRNAseqReportingResearchResearch PersonnelResearch SpecimenResearchersRibonucleic AcidRoleSamplingScientific Advances and AccomplishmentsSepsisSeptic ShockSeriesSpecimenSubgroupTestingTimeTranscript Expression AnalysesTranscript Expression AnalysisTranscriptionValidationWhole Bloodanalyze gene expressionantisepsis treatmentbead chipbiobankbiologicbiological heterogeneitybiorepositorycare for patientscare of patientscaring for patientschild patientschildren with sepsisclinical relevanceclinical significanceclinically relevantclinically significantcohortcritically ill childdata basedata integrationdepositorydevelopmentaldisease subgroupsdisease subtypedisorder subtypedrug/agentefficacious therapyefficacious treatmentelectronic health care recordelectronic health medical recordelectronic health plan recordelectronic health registryelectronic medical health recordepigeneticallyepigenomeepigenomicsgene classifiergene expression analysisgene expression assaygene regulatory networkgenetic classifiergenomic classifierglobal gene expressionglobal transcription profilehost responseimmune system responseimmunoresponseimprovedindividuals with sepsiskidsmRNAmalignancymethylomemethylomicsmortalitymultiomicsmultiple omicsneoplasm/cancernovelpanomicspathophysiologypathwaypatient oriented outcomespatient responsepatient specific responsepatient subclasspatient subclusterpatient subgroupspatient subpopulationspatient subsetspatient subtypespatients with sepsispediatricpediatric patientspediatric sepsispediatric septicpeople with sepsisperformance testspower analysisprecision medicineprecision therapiesprecision treatmentprecision-based medicinepreventpreventingpublic health emergencyrepositoryresponse to therapyresponse to treatmentresponsive patientscale upscientific accomplishmentsscientific advancessepsis caresepsis groupssepsis in childrensepsis interventionssepsis managementsepsis patientssepsis populationsepsis subjectssepsis therapeuticssepsis therapysepsis treatmentseptic childrenseptic groupseptic individualsseptic patientsseptic peopleseptic populationseptic subjectseptic therapyseptic treatmentsocial rolesubjects with sepsissystemic inflammationsystemic inflammatory responsetargeted drug therapytargeted drug treatmentstargeted therapeutictargeted therapeutic agentstargeted therapytargeted treatmenttherapeutic responsetherapy responsetranscriptional profilingtranscriptometranscriptome sequencingtranscriptomic sequencingtranscriptomicstreat sepsistreatment responsetreatment responsivenessvalidationsyoungster
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Full Description

Leveraging multi-omics to maximize the scientific value of pediatric sepsis biorepository and advance patient endotyping.
PROJECT SUMMARY:

Sepsis is major pediatric health problem and kills more children than cancer in the U.S each year. Primarily

driven by a dysfunctional host response to an infection, a subset of patients with persistent or progressive

multiple organ dysfunctions disproportionately contribute to sepsis morbidity and mortality. Yet, there are no

disease modifying therapies currently available beyond early antibiotics and organ support. Biological

heterogeneity among patients has significantly impeded scientific progress and advances in patient care.

Although precision medicine approaches have been used to begin to sift through patient-level differences, we

fundamentally lack a comprehensive understanding of disease mechanisms. Thus, there is a crucial need to

maximize the use of existing pediatric sepsis biorepositories to unravel causal pathways, facilitate rapid

identification of biologically relevant patient subclasses more likely to benefit from targeted therapies.

To bridge this gap, we seek to utilize state-of-the-art multi-omics approaches to explore the scientific value

of our vast collection of biospecimens from critically ill children with sepsis. While gene-expression profiling has

been used to identify biologically relevant endotypes, it is increasingly evident that interrogation of single layer

of molecular data is likely insufficient. Recent studies suggest that the epigenomic changes, including

differential DNA methylation at CpG islands, closely regulate gene-expression in human sepsis. Through this

phased innovation award, we seek to determine whether integrated analyses of methylomic and transcriptomic

datasets at scale can provide a comprehensive understanding of mechanisms and inform patient endotyping.

We further seek to determine whether clinical data linked with patient biospecimens can be used to predict

endotype membership, with operational implications for predictive enrichment in future clinical trials.

Milestone-driven developmental activities in the R21 phase will focus on stringent quality control of DNA

and RNA samples within our biorepository to determine suitability for high throughput methods. We will then

generate pilot DNA methylation profiling and RNA sequencing data for study planning and to demonstrate

feasibility of integrated analyses. In the R33 phase, we will scale efforts to generate robust methylomic and

transcriptomic datasets. We will leverage the bioinformatic capabilities of the investigator team to derive and

validate novel multi-omic endotypes and determine their clinical significance. Finally, we will develop a

classifier model to predict endotype membership using clinical data within the derivation cohort and test its

generalizability in a large electronic health record-based dataset of >15,000 critically ill children with sepsis and

multiple organ dysfunctions. Through the successful execution of this proposal, we seek to generate a rich

dataset to drive future mechanistic research in human sepsis and develop an actionable framework for rapid

and equitable identification of pediatric sepsis subclasses who may benefit from targeted sepsis therapeutics.

Grant Number: 4R33GM151703-03
NIH Institute/Center: NIH

Principal Investigator: Mihir Atreya

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