Increasing efficacy of an Adenovirus vaccine targeting Clostridium difficile usin
Increasing efficacy of an Adenovirus vaccine targeting Clostridium difficile usin
批准号:
8583699
负责人:
CHRISTOPHER M WATERS
金额:
$21.09万
依托单位国家:
美国
项目类别:
财政年份:
2013
资助国家:
美国
项目状态:
已结题
起止时间:
2013-05-15 至 2015-04-30
关键词:
Adenovirus VectorAdenovirusesAdjuvantAdvanced DevelopmentAntibiotic TherapyAntibodiesAntigensBiologyCell LineChimeric ProteinsClinical TrialsClostridium difficileCommunicable DiseasesDNADNA VaccinesDataDeveloping CountriesDevelopmentDiagnosisDiseaseDoseEnzymesEukaryotic CellFundingFutureGenerationsGenesGenomeGoalsGrantHIVHela CellsImmune responseImmunityImmunologic AdjuvantsIndividualInfectionInflammatoryInflammatory ResponseIntellectual PropertyLaboratoriesLeadLifeMalignant NeoplasmsMedicalMethodsMolecularMusNosocomial InfectionsOutcomePatientsPatternPreventionRecombinantsRecurrenceReportingReproduction sporesResearchResearch Project GrantsRiskSecond Messenger SystemsSignal TransductionSymptomsSystemTechnologyTestingTherapeuticToxic effectToxinToxin ConjugatesUnited States National Institutes of HealthVaccinatedVaccine TherapyVaccinesViralViral VaccinesVirusbasebis(3&apos,5&apos)-cyclic diguanylic acidcancer therapycombatcytokinediguanylate cyclaseenteric pathogenimprovedinnovationmacrophagemicrobialmouse developmentnext generationnovelnovel strategiesnovel vaccinespathogenpreventprophylacticpublic health relevanceresearch studyresponsesecond messengertooltreatment durationvaccine candidatevaccine deliveryvaccine developmentvaccine efficacyviral DNA
中文摘要
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英文摘要
DESCRIPTION (provided by applicant): Clostridium difficile is one of the most problematic bacterial pathogens in developing countries with over 300,000 cases in the US annually. Cases of C. difficile are predicted to rise 40% over the next two years with billions of dollars of associated medical expenses. As antibiotic therapy often promotes colonization of C. difficile, more effective strategies to treat these infections are needed. Here, we propose to develop an innovative next generation Adenovirus (Ad) based vaccine targeting C. difficile combining technologies developed in the two PI's laboratories. Nonreplicating Ad based vaccines offer a unique, powerful vaccine delivery platform as genes encoding a desired antigen are directly expressed from the recombinant Ad vector. Our preliminary results developed a base Ad vaccine expressing a non-toxic portion of the C. difficile TA toxin that has shown promise as a vaccine candidate. However, to function as a therapeutic to rapidly reduce symptoms of individuals infected with C. difficile, generation of a rapid humoral response is required. One mechanism by which this can be achieved is the inclusion of an immunostimulatory adjuvant molecule into the vaccine. Here, we propose a novel approach to increase the efficacy of the previously constructed C. difficile Ad vaccine by inclusion of an adjuvant (specific details are excluded for protection of intellectual property). These experiments may lead to the development of a new vaccine for C. difficile. Additionally, our results will be proof-of-concept incorporation of this adjuvant can increase the efficacy of viral and DNA based vaccines to prevent infectious disease and other diseases, such as cancer.
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