Metals, Drugs and Fungal Pathogens
Metals, Drugs and Fungal Pathogens
批准号:
9471545
负责人:
Katherine J. Franz
金额:
$36.6万
依托单位:
依托单位国家:
美国
项目类别:
财政年份:
2008
资助国家:
美国
项目状态:
已结题
起止时间:
2008-07-01 至 2022-06-30
关键词:
AddressAffectAntifungal AgentsAzolesBiologicalBlood CirculationCandidaCandida albicansCandidate Disease GeneCellsChelating AgentsChemicalsChromatographyComplexCopperCoupledCryptococcus neoformansCulture MediaDataDetectionDrug ExposureDrug InteractionsDrug effect disorderDrug resistanceEnvironmentFluconazoleFundingGene ProteinsGenesGoalsGrowthHealthHomeostasisHumanImmune responseImmunocompromised HostIndividualInductively Coupled Plasma Mass SpectrometryIndustrial fungicideInfectionInvadedIonophoresIonsLaboratoriesLifeLocationMeasurableMedicineMetalloproteinsMetalsMolecularMorphologyMucous MembraneMycosesNutrientOrganOrganismOutcomeOutcome MeasurePathogenesisPathogenicityPathway interactionsPatientsPeptidesPharmaceutical PreparationsPhenotypePredispositionPrevalenceProcessProteomicsResearchResistanceResistant candidaSalivarySkinStressTestingTherapeuticTimeToxinTransition ElementsVirulenceWorld Health OrganizationYeastsantimicrobialantimicrobial drugantimicrobial peptidebasecell growthchemical geneticsdrug efficacyfightingfunctional genomicsfungusgenome sequencinghistidine-rich proteinsimprovedinnovationmetal chelatormicrobialmutantnovel strategiespathogenresistant strainresponsetooltranscriptometranscriptome sequencingwhole genome
中文摘要
项目总结/文摘
英文摘要
PROJECT SUMMARY/ABSTRACT
Candida albicans is usually a harmless commensal organism, but it can opportunistically invade the
bloodstream of immunocompromised individuals and quickly spread to multiple organs, giving rise to life-
threatening fungal infections. The limited arsenal of antifungal drugs, the prevalence of drug-resistant Candida
strains, and significant gaps in understanding how fungal cells adapt to become pathogenic are serious threats
to human health. The research proposed here explores the innovative and unexplored concept that changes in
nutrient metal availability over the course of infection affect drug efficacy in currently unpredictable ways. At the
same time, fungal responses to drug stress influence how fungi remodel their metallobiology to resist drug
action and favor virulence. This hypothesis is based on preliminary data collected in the applicant's laboratory
showing that the amount of copper in the growth medium of Candida albicans dramatically modulates the
potency and resistance of three different classes of antifungal agents: transition metal ionophores, azoles, and
antimicrobial peptides. These studies align with the applicant's long-term goals to develop chemical tools to
manipulate biological metal ion location, speciation, and reactivity for potential therapeutic benefit. The overall
objective of the current application is to identify targets, mechanisms, and pathways that confer metal-adjusted
responses in drug efficacy against fungal species relevant to human health. This objective will be met by using
a powerful combination of chemical, genetic and proteomic approaches to address three specific aims: 1)
Determine how metal availability in the cellular growth environment affects phenotypic outcomes of fungal
pathogens treated with common azole drugs; 2) Determine how metal availability modulates the cellular
response to antifungal drug stress; and 3) Identify molecular and biological determinants of metal-modulated
candidacidal activity of the antifungal histatin peptides. These aims will take advantage of growth media
rigorously controlled for metal concentrations to correlate drug susceptibility of Candida albicans with
measurable outcomes in growth inhibition, morphology and total cellular metal content. The second and third
aims use both targeted and unbiased functional genomic and metalloproteomic approaches to identify genes
and metalloproteins that influence or are influenced by treatment with azoles or histatins under conditions of
variable metal levels. The assembled collaborative team of world-leading experts in fungal pathogenesis and
metallobiology coupled with compelling preliminary results demonstrate feasibility of these strategies by the
applicant. The impact of these studies for understanding how metal status affects antifungal drug efficacy will
inform new directions for overcoming drug resistance and developing new antimicrobial strategies that take
into account complex metallobiology along the host-pathogen interface.
期刊论文(0)
专著(0)
科研奖励(0)
会议论文
Development of Chemical Tools to Manipulate Copper at the Host/Pathogen Interface
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批准号:8505953
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项目类别:
-
资助金额:$29.42万
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财政年份:2008
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负责人:Katherine J. Franz
-
依托单位:
Development of Chemical Tools to Manipulate Copper at the Host/Pathogen Interface
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批准号:8669004
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项目类别:
-
资助金额:$29.38万
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财政年份:2008
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负责人:Katherine J. Franz
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依托单位:
Metals, Drugs and Fungal Pathogens
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批准号:10200835
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项目类别:
-
资助金额:$36.58万
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财政年份:2008
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负责人:Katherine J. Franz
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依托单位:
Development of Chemical Tools to Manipulate Copper at the Host/Pathogen Interface
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批准号:8848385
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项目类别:
-
资助金额:$29.34万
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财政年份:2008
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负责人:Katherine J. Franz
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依托单位:
Development of Chemical Tools to Probe and Inhibit Iron-Induced Oxidative Stress
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批准号:7637329
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项目类别:
-
资助金额:$30.42万
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财政年份:2008
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负责人:Katherine J. Franz
-
依托单位:
Metals, Drugs and Fungal Pathogens
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批准号:9767213
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项目类别:
-
资助金额:$36.73万
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财政年份:2008
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负责人:Katherine J. Franz
-
依托单位:
Development of Chemical Tools to Probe and Inhibit Iron-Induced Oxidative Stress
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批准号:7825260
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项目类别:
-
资助金额:$30.12万
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财政年份:2008
-
负责人:Katherine J. Franz
-
依托单位:
Development of Chemical Tools to Manipulate Copper at the Host/Pathogen Interface
-
批准号:9066406
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项目类别:
-
资助金额:$5.93万
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财政年份:2008
-
负责人:Katherine J. Franz
-
依托单位:
Development of Chemical Tools to Probe and Inhibit Iron-Induced Oxidative Stress
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批准号:8068699
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项目类别:
-
资助金额:$29.81万
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财政年份:2008
-
负责人:Katherine J. Franz
-
依托单位:
Development of Chemical Tools to Manipulate Copper at the Host/Pathogen Interface
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批准号:9067377
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项目类别:
-
资助金额:$35.77万
-
财政年份:2008
-
负责人:Katherine J. Franz
-
依托单位:
Development of Chemical Tools to Probe and Inhibit Iron-Induced Oxidative Stress
-
批准号:7533955
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项目类别:
-
资助金额:$30.42万
-
财政年份:2008
-
负责人:Katherine J. Franz
-
依托单位:
Development of Chemical Tools to Probe and Inhibit Iron-Induced Oxidative Stress
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批准号:8280147
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项目类别:
-
资助金额:$29.81万
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财政年份:2008
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负责人:Katherine J. Franz
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依托单位:
海外基金