PROJECT SUMMARY/ABSTRACT - CORE C: Single-Cell Analysis Core
HR arises from cell-to-cell variation of genotypic and metabolic processes. The goal of the Single-Cell Analysis
Core (Core C) is to provide experimentally-validated and yet difficult-to-perform single-cell-level analyses to
evaluate the mechanisms and dynamics of HR. Core C will support the single-cell-level studies proposed in all
three Projects by providing a centralized platform for culturing bacterial cells under well-controlled antibiotic
environments, measuring relevant processes at single-cell resolution, and performing image analysis as well as
necessary statistical analysis. Specifically, Core C will i) provide microfluidic continuous culture platform, ii)
quantify the copy number variation of resistance genes, and iii) determine metabolic activities of single cells in
heteroresistant populations. Core C activities will be conducted by Dr. Minsu Kim's laboratory in the Department
of Physics at Emory University, which has extensive expertise in single-cell-level imaging and analysis of gene
expression, metabolism, and physiology in bacteria. Dr. Kim was one of the first scientists to apply a single-cell
approach to antibiotic research and is considered a leading expert in this area. Dr. Kim and his team will work
with the PI of individual projects collaboratively to ensure they can successfully complete their projects in a timely
manner.
Public Health Relevance Statement
PROJECT NARRATIVE
In accordance with RFA-AI-20-001, the project narrative should not be completed for the scientific core.
NIH Spending Category
No NIH Spending Category available.
Project Terms
AntibioticsAreaBacteriaBioreactorsCell MaintenanceCellsClinicalComplementControlled EnvironmentCopy Number PolymorphismDevicesEnsureEnvironmentFiberFluorescenceFluorescent ProbesFluorescent in Situ HybridizationGene AmplificationGene DosageGene Expression ProfilingGenotypeGlutathione Metabolism PathwayGoalsHeterogeneityImageImage AnalysisIndividualInterdisciplinary StudyIntermediate resistanceLaboratoriesLengthMeasuresMetabolicMetabolismMethodsMicrofluidicsMonitorNutrientPhysicsPhysiologyPopulationPrevalenceProcessReporterResearchResolutionScientistStatistical Data InterpretationTimeUniversitiesVariantWaste ProductsWorkexperimental studyfluorescence microscopeglucose metabolisminterestresistance genesingle cell analysissingle molecule
National Institute of Allergy and Infectious Diseases
CFDA Code
DUNS Number
066469933
UEI
S352L5PJLMP8
Project Start Date
05-March-2021
Project End Date
28-February-2026
Budget Start Date
01-March-2024
Budget End Date
28-February-2025
Project Funding Information for 2024
Total Funding
$371,349
Direct Costs
$228,155
Indirect Costs
$143,194
Year
Funding IC
FY Total Cost by IC
2024
National Institute of Allergy and Infectious Diseases
$371,349
Year
Funding IC
FY Total Cost by IC
Sub Projects
No Sub Projects information available for 5U19AI158080-04 5646
Publications
Publications are associated with projects, but cannot be identified with any particular year of the project or fiscal year of funding. This is due to the continuous and cumulative nature of knowledge generation across the life of a project and the sometimes long and variable publishing timeline. Similarly, for multi-component projects, publications are associated with the parent core project and not with individual sub-projects.
No Publications available for 5U19AI158080-04 5646
Patents
No Patents information available for 5U19AI158080-04 5646
Outcomes
The Project Outcomes shown here are displayed verbatim as submitted by the Principal Investigator (PI) for this award. Any opinions, findings, and conclusions or recommendations expressed are those of the PI and do not necessarily reflect the views of the National Institutes of Health. NIH has not endorsed the content below.
No Outcomes available for 5U19AI158080-04 5646
Clinical Studies
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