课题基金 / 基金详情

Molecular Mechanisms and Models of Exposure

Molecular Mechanisms and Models of Exposure
暴露的分子机制和模型
批准号:
7126129
负责人:
Robert H Tukey
金额:
$76.8万
依托单位国家:
美国
项目类别:
财政年份:
2000
资助国家:
美国
项目状态:
已结题
起止时间:
2000-07-01 至 2010-03-31

项目摘要

项目成果

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中文摘要
翻译
描述(由申请人提供): 了解我们环境中危险化学品的细胞和分子机制是一项重要的国家目标。 《综合环境反应、赔偿和责任法》(CERCLA)的制定是为了了解与接触超级基金场地危险废物有关的公共卫生风险。 因此,更好地了解接触途径和人类接触来自超级基金场地的不受控制的危险废物所造成的健康后果是高度优先事项。UCSD SBRP的目标是实施现代科学方法来识别和表征超级基金站点发现的水污染物引起的基因组应激机制。 研究人员的发现表明,化学暴露会导致基因表达模式的改变,这些模式由潜在的信号转导途径控制和调节。UCSD SBRP将测试“超级基金现场化学品对细胞信号传导和基因表达的改变可以用于开发化学毒物检测和生物修复的生物模型”的假设。 实验策略将在很大程度上依赖于重组DNA和新技术的发展,以产生新的观点监测,补救和机制的毒性介导的基因表达和异常的细胞信号。为了实现这些目标,UCSD SBRP将开发一个多学科的努力,包括6个生物医学研究项目,2个非生物医学研究项目和3个研究支持核心。这项研究将得到一位博士的部分支持。培训计划。由于调查人员位于沿海环境中以及我们靠近人口稠密的边境,造成了与水污染物特别相关的独特的美国/墨西哥边境环境问题。 通过研究转化和推广核心,与当地工业和社区团体建立了伙伴关系,利用发展中的技术作为评估接触水平和预测健康风险的应用生物工具。 来自10个UCSD部门,有组织的研究单位和中心的免费专业知识的研究人员正在参与这个项目。 预计这一共同努力将为导致环境疾病的分子机制提供新的见解,并提高我们对接触超级基金场地污染物后果的理解。
英文摘要
DESCRIPTION (provided by applicant): Understanding the cellular and molecular mechanisms of hazardous chemicals in our environment is a critical national objective. The Comprehensive Environmental Response, Compensation, and Liability Act (CERCLA) was established to gain knowledge on the public health risks associated with exposure to Superfund site hazardous waste. Thus, a greater understanding of the exposure pathway and the health consequences resulting from human exposure to uncontrolled hazardous waste from Superfund sites are high priorities. The goals of the UCSD SBRP are to implement modern scientific approaches to identify and characterize mechanisms responsible for genomic stress elicited by water born pollutants found at Superfund sites. Findings from the researchers have shown that chemical exposure leads to alterations in patterns of gene expression which are controlled and regulated by underlying signal transduction pathways. The UCSD SBRP will test the hypothesis that 'Alterations in cellular signaling and gene expression by Superfund site chemicals can be exploited to develop biological models for the detection and bioremediation of chemical toxicants'. Experimental strategies will rely heavily upon recombinant DNA and the development of new technologies to yield new perspectives on monitoring, remediation and mechanisms of toxicity mediated through altered gene expression and aberrant cellular signaling. To meet these goals, the UCSD SBRP will develop a multidisciplinary effort consisting of 6 biomedical research projects, 2 non-biomedical research projects and 3 research support cores. The research will be supported in part by a Ph.D. training program. The environmental problems resulting from the investigators' location in a coastal environment and our proximity to a populated border creates unique environmental US/Mexico border issues that are of special relevance to water born pollutants. Through the Research Translation and Outreach Core, partnerships have been formed with local industry and community groups to utilize developing technologies as applied biological tools for assessment of exposure levels and to predict health risk. Investigators with complimentary expertise from 10 UCSD Departments, Organized Research Units and Centers are participating in this project. The combined efforts are anticipated to provide new insights into the molecular mechanisms that lead to environmental illness and to improve our understanding of the consequences of exposure to Superfund site contaminants.
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