Asbestos fate, exposure, remediation, and adverse health effects
Asbestos fate, exposure, remediation, and adverse health effects
批准号:
8651082
负责人:
Ian Alexander Blair
金额:
$227.78万
依托单位国家:
美国
项目类别:
财政年份:
2014
资助国家:
美国
项目状态:
已结题
起止时间:
2014-04-01 至 2018-03-31
关键词:
Animal ModelAnimalsAsbestosAttitudeBiologicalBiological MarkersChemopreventionCollaborationsCommunitiesCore FacilityDataDetectionDevelopmentDiseaseEcologyEnvironmentEnvironmental HealthEpidemiologic StudiesEpigenetic ProcessEvaluationFosteringFox Chase Cancer CenterGeneticGluesGoalsGovernment AgenciesHazardous SubstancesHealthHealth SciencesHome environmentHumanIncidenceInstitutional National Research Service AwardLeadLeadershipLegal patentLung diseasesMediatingMentorsMesotheliomaMethodologyMethodsModelingMolecularMonitorMovementPennsylvaniaPhiladelphiaPostdoctoral FellowRecruitment ActivityResearchResearch DesignResearch PersonnelResearch Project GrantsResearch SupportResearch TrainingResolutionResourcesRiskScienceSerumServicesSignal Recognition ParticleSiteSolutionsStudentsSuperfundTechniquesTechnologyTechnology TransferToxic effectTrainingTraining ProgramsTranslatingTranslational ResearchTranslationsUniversitiesbasecommunity livingdesignenvironmental justiceenvironmental toxicologyexposed human populationfungushuman subjectinnovationinstrumentationliquid chromatography mass spectrometrymetabolomicsnovelparticleprogramspublic health relevanceremediationresponsesocialsuperfund sitevalidation studieswasting
中文摘要
描述(由申请人提供)
宾夕法尼亚大学超级基金研究和培训计划中心(Penn SRP中心)的发展是生活在宾夕法尼亚州Ambler的BioRit Asphalt超级基金站点附近的社区关注的直接结果。安布勒的社区积极参与了该中心将要处理的项目的设计。因此,该中心将包括两个环境科学项目和四个生物医学科学研究项目,这将由一个研究核心和四个服务核心支撑。这些项目和核心将探讨石棉命运,暴露,补救和不良健康影响的各个方面。环境科学项目1和2分别题为“砷粒子的修复”和“砷粒子的流动性和命运”。生物医学科学项目3-6的标题为“超级基金环境正义社区中石棉风险和态度的社会决定因素”、“间皮瘤动物模型”、“石棉诱导肺部疾病的化学预防”和“石棉暴露的生物标志物”核心包括行政核心(核心A)、社区参与核心(核心B)、研究翻译核心(核心C)、生物统计研究支持核心(核心D)和跨学科培训核心(核心E)。宾夕法尼亚大学SRP中心的目标将通过两位资深的高成就的研究人员,伊恩A。Blair(Director)和特雷弗博士M.彭宁(副局长)。Penn SRP由四个非常重要的实体支撑。首先,宾夕法尼亚大学环境毒理学卓越中心(CEET)提供了一个学术之家,有大量的资源可以利用。其次,CEET翻译生物标志物核心为进行复杂的生物标志物发现和验证研究提供了工具和资源。第三,CEET综合健康科学设施核心将为人类受试者研究设计和注释生物标本的储存提供支持。第四,现有的CEET证书课程和T32环境健康科学培训课程提供了潜在的学生和博士后研究员的资源,他们可以被招募到宾夕法尼亚大学SRP中心。检测、评估和评价有害物质对人类健康影响的先进技术将涉及开发石棉诱发间皮瘤的新动物模型。评估有害物质对人类健康风险的方法将涉及使用高分辨率液相色谱-质谱分析法的新代谢组学方法,以确定接触石棉的人群。检测环境中有害物质的方法和技术将涉及两种完全不同的方法。其中一项将涉及利用地球科学方法监测垃圾场内石棉的移动,另一项将涉及社会学研究,以确定石棉接触如何发生,以及这是否可以解释安布勒的石棉诱发间皮瘤集群。减少有害物质的数量和毒性所采用的一种基本生物方法是通过菌根真菌介导的将石棉转化为无毒分子形式来补救石棉。因此,尽管这些项目是为了回应Ambler社区的关注(EPA区域3)而发展的,但其结果可以很容易地转化为其他五个EPA区域(2,5和8-10)中的十五个其他石棉场地。
英文摘要
DESCRIPTION (provided by applicant)
The University of Pennsylvania Superfund Research and Training Program Center (Penn SRP Center) evolved as a direct consequence of concerns from the community living proximal to the BioRit Asbestos Superfund site in Ambler, PA. The community at Ambler has actively participated in the design of projects to be tackled by the Center. As a result, the Center will consist of two Environmental Science Projects and four Biomedical Science Research Projects, which will be underpinned by one Research Core and four Service Cores. These Projects and Cores will explore various aspects of asbestos fate, exposure, remediation, and adverse health effects. Environmental Science Projects 1 and 2 are entitled "Remediation of Asbestos Particles" and "Mobility and Fate of Asbestos Particles," respectively. Biomedical Science Projects 3-6 are entitled "Social Determinants of Risk And Attitudes about Asbestos in a Superfund Environmental Justice Community," "Animal Models of Mesothelioma," "Chemoprevention of Asbestos-Induced Lung Diseases," and "Biomarkers of Asbestos Exposure" The Cores comprise an Administrative Core (Core A), the Community Engagement Core (Core B), the Research Translation Core (Core C), the Biostatistical Research Support Core (Core D), and the Interdisciplinary Training Core (Core E). The goals of the Penn SRP Center will be accomplished through the leadership of two senior highly accomplished investigators, Dr. Ian A. Blair (Director) and Dr. Trevor M. Penning (Deputy Director). The Penn SRP is underpinned by four highly significant entities. First, the Penn Center of Excellence in Environmental Toxicology (CEET) provides an academic home, with enormous resources to draw upon. Second, the CEET Translational Biomarker Core provides instrumentation and resources for conducting sophisticated biomarker discovery and validation studies. Third, the CEET Integrative Health Sciences Facility Core will provide support for human subject study design and storage of annotated biospecimens. Fourth, the existing CEET Certificate Program and T32 Training Program in Environmental Health Sciences provide a resource of potential students and postdoctoral fellows who could be recruited into the Penn SRP Center. Advanced techniques for the detection, assessment, and evaluation of the effect on human health of hazardous substances will involve the development of a new animal model of asbestos-induced mesothelioma. Methods to assess the risks to human health presented by hazardous substances will involve novel metabolomics methodology using high resolution liquid chromatography-mass spectrometry will be developed to identify human populations that are exposed to asbestos. Methods and technologies to detect hazardous substances in the environment will involve two quite separate approaches. One will involve the use of earth science-based methodology to monitor the movement of asbestos within dump sites and the other will involve a sociological study to identify how asbestos exposure can occur and whether this can explain the cluster of asbestos-induced mesotheliomas in Ambler. A basic biological method to be employed for reducing the amount and toxicity of a hazardous substance will involve the remediation of asbestos by mycorrhizal fungi-mediated conversion it to a non-toxic molecular form. Therefore, although these projects evolved in response to the Ambler community's concerns (EPA Region 3), the results can be readily translated to the fifteen other asbestos sites that are present in five of the other EPA Regions (2, 5, and 8-10).
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Development of Breast Cancer Risk Model Based on Estrogen Metabolomics
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依托单位:
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依托单位:
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Molecular mechanisms of DNA damage by PAHs
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海外基金