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Diesel-Induced Alterations of Influenza infectivity

Diesel-Induced Alterations of Influenza infectivity
柴油引起的流感传染性改变
批准号:
8689014
负责人:
ILONA JASPERS
金额:
$75.5万
依托单位国家:
美国
项目类别:
财政年份:
2005
资助国家:
美国
项目状态:
已结题
起止时间:
2005-07-01 至 2017-06-30
关键词:
AdjuvantAdverse effectsAffectAirAir PollutantsAllergensAllergicAllergic inflammationAllergic rhinitisAntioxidantsAntiviral AgentsAntiviral ResponseAttentionAttenuatedBiopsyBroccoli - dietaryCell physiologyCellsChemopreventive AgentCompetenceCrowdingDataDefense MechanismsDiesel ExhaustDoseDouble-Stranded RNAEnvironmental PollutantsEnzyme GeneEnzymesEpidemicEpithelial CellsEpitheliumExperimental ModelsExposure toExtrinsic asthmaFrequenciesGene ExpressionGenotypeGrantHealthHigh PrevalenceHost DefenseHumanHuman VolunteersImmuneImmune responseIn VitroIndividualInfectionInflammationInflammation MediatorsInflammatoryInflammatory ResponseInfluenzaInfluenza A Virus, H1N1 SubtypeInterventionIsothiocyanatesLaboratoriesLifeLinkMeasurableMediatingMicrobeModelingMusNasal Lavage FluidNatural Killer CellsNoseOutcomeOxidantsOxidative StressParticulatePhasePhenotypePlacebosPlayPopulationPositioning AttributePredispositionProductionProtocols documentationPublic HealthPublishingRandomizedRespiration DisordersRespiratory Tract InfectionsRestRisk FactorsRoleSamplingSignal PathwaySulforaphaneSupplementationT-Cell ActivationT-LymphocyteTestingUrbanizationViralVirusVirus Diseasesairway inflammationallergic airway diseasebasecohortcytokinecytotoxicdefense responsedietary antioxidantefficacy testingenvironmental agenthealth economicshuman TLR3 proteinin vitro Modelin vivoin vivo Modelinfluenza virus vaccineinfluenzavirusnovelnovel strategiesoxidant stresspandemic influenzaparticlepollutantpreventprospectiverespiratoryresponsetooltranscription factorvolunteer

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DESCRIPTION (provided by applicant): Exposure to air pollutants, such as diesel exhaust (DE), is associated with airway inflammation, increased susceptibility to viral infection, and exacerbation of underlying respiratory disorders including allergic asthma. Based on studies in our laboratory and others, the mechanisms by which air pollutants cause these adverse effects likely involve alteration of inflammatory and antiviral signaling pathways linked to cellular oxidant/antioxidant imbalance. Since the previous grant we have expanded our experimental models to investigate 1.) how pre-existing allergic airway disease modifies the ability of DE to increase susceptibility to influenza, 2.) the role of NK cells and T cells in influenza-induced responses, and 3.) the effects of environmental pollutants on susceptibility to influenza virus in humans in vivo using inoculation with the live-attenuated influenza virus (LAIV) vaccine. We are therefore well positioned to test the hypotheses that exposure to DE increases allergic inflammation and susceptibility to influenza in humans, that oxidative stress-induced suppression of NK cell function mediates these effects, and that supplementation with SFN can prevent DE-induced alterations of antiviral immune responses. Aim 1 will determine how DE exposure modifies inflammatory and antiviral responses to LAIV in normal volunteers and subjects with allergic rhinitis (AR). This will be a randomized, prospective comparison study comparing cohorts of normal or AR subjects randomized to receive either DE (100-300 (g/m3 x 2hr at rest) or placebo (clean air), followed by a standard dose of LAIV. Nasal lavage fluids and biopsies will be sampled at intervals during the resulting self-limited infection. Endpoints will include inflammatory mediators, antiviral factors, virus clearance, and effects of antioxidant genotype on exposure outcomes. Aim 2 will determine how exposure to DE modifies NK and T cell activation in the context of influenza infection by assessing changes in activation, cytotoxic potential, and cytokine production (a) in nasal NK and T cells from subjects exposed to DE prior to infection with LAIV and (b) in in vitro models to further define potential mechanisms of DE-induced changes in NK cell activity. Aim 3 will determine whether antioxidant supplementation with Sulforaphane (SFN) prevents the effects of DE exposure on virus-induced inflammation, antiviral defense response, and immune cell competence. These studies are expected to increase our understanding of whether and how DE enhances susceptibility to influenza virus, especially in the setting of allergic inflammation and the role of NK and T cells in these responses. We further anticipate that these studies will provide a model template useful for assessment of the impact of other environmental agents on respiratory mucosal defense in the context of viral infections, and for determination of the efficacy of intervention strategies.
期刊论文(23)
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会议论文
DOI: 10.1016/j.jaci.2012.07.013
发表时间: 2012-10
期刊: JOURNAL OF ALLERGY AND CLINICAL IMMUNOLOGY
影响因子: 14.2
作者: [Bauer, Rebecca N., Brighton, Luisa E., Mueller, Loretta, Xiang, Zhidan, Rager, Julia E., Fry, Rebecca C., Peden, David B., Jaspers, Ilona]
通讯作者: Jaspers, Ilona
Airway protease/antiprotease imbalance in atopic asthmatics contributes to increased influenza A virus cleavage and replication.
特应性哮喘患者气道蛋白酶/抗蛋白酶失衡会导致甲型流感病毒裂解和复制增加。
DOI: 10.1186/1465-9921-13-82
发表时间: 2012
期刊: Respiratory research
影响因子: 5.8
作者: [Kesic,MatthewJ, Hernandez,Michelle, Jaspers,Ilona]
通讯作者: Jaspers,Ilona
Diesel exposure suppresses natural killer cell function and resolution of eosinophil inflammation: a randomized controlled trial of exposure in allergic rhinitics.
柴油暴露抑制自然杀伤细胞功能和嗜酸性粒细胞炎症的消退:过敏性鼻炎暴露的随机对照试验。
DOI: 10.1186/s12989-016-0135-7
发表时间: 2016
期刊: Particle and fibre toxicology
影响因子: 10
作者: [Pawlak,EricaA, Noah,TerryL, Zhou,Haibo, Chehrazi,Claire, Robinette,Carole, Diaz-Sanchez,David, Müller,Loretta, Jaspers,Ilona]
通讯作者: Jaspers,Ilona
DOI: 10.4414/smw.2012.13653
发表时间: 2012
期刊: Swiss medical weekly
影响因子: 2.9
作者: [Müller L, Jaspers I]
通讯作者: Jaspers I
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