A Research Resource for Ultra-sensitive and High Throughput Proteomics - Driving Biomedical Projects
A Research Resource for Ultra-sensitive and High Throughput Proteomics - Driving Biomedical Projects
批准号:
10461821
负责人:
Jon Jacobs
金额:
$20.56万
依托单位国家:
美国
项目类别:
财政年份:
2003
资助国家:
美国
项目状态:
已结题
起止时间:
2003-09-15 至 2024-07-31
关键词:
Alzheimer&aposs DiseaseAreaAutomobile DrivingAwarenessBedsBioinformaticsBiologicalBiomedical ResearchCellsCommunitiesDataDevelopmentDiabetes MellitusEvaluationGenerationsGeographyGoalsIsomerismKnowledgeMalignant neoplasm of pancreasMeasurementPeptidesPost-Translational Protein ProcessingProblem SolvingProcessProteomicsPublicationsResearchResearch Project GrantsResourcesRoleSample SizeSamplingTechnologyTestingTimeWorkcommunity engagementhigh throughput technologyimprovedinsightinterestnew technologysuccesstechnology developmenttechnology research and development
中文摘要
项目摘要-推动生物医学项目
此次更新蛋白质组学研究资源的目标是通过以下方式广泛影响生物医学研究
提供从小得多的样本中获得更高质量的蛋白质组学数据的能力,以及
产生更全面的定量测量,提高低丰度的覆盖率
成分,如有问题的多肽异构体和翻译后修饰,并使大型
提高了测量吞吐量。这些进展将与确保广泛和
持续获得新能力,因此它们将继续对生物医学研究产生重大影响。至
为了帮助实现这些目标,我们确定了九个初步推动生物医学项目(DBP)。这些都有
被选为三个技术研究和开发(TR&D)项目的重点
解决现实世界的问题,并作为更广泛的社区如何使用新的
技术在他们自己的研究项目中。每个DBP将作为新的初始应用的试验台
技术和社区参与的最早阶段。九个DBP在地理上代表
分散的合作者,致力于广泛的生物医学相关研究主题,其工作可以
新技术的应用将大大增强这一能力。DBP将从所有
三个资源研发,包括:处理和处理小得多的样品的能力
(R&D 1),以更高的吞吐量从这些样本中提供广泛和定量的蛋白质组学数据(R&D 2),
并实现对结果数据的生物信息学分析以及生物洞察力的生成
(研发3)。与研发工作相配合,地区发展计划也将为
确定研发活动的优先顺序,将鼓励解决问题,并提供所需的挑战
推动技术发展。它们还将推动集成每个组件中开发的功能
在三个资源研发中。在这次更新的过程中,我们的进步将逐步使越来越多的人能够
挑战DBP。例如,在以下位置获得定量高通量蛋白质组学测量的能力
单细胞水平,将扩大蛋白质组学的用途,用于全新的研究领域。如此戏剧性
能力方面的进步将首先在几个现有的和新的DBP中应用。这些项目和
他们的成功将支持我们在更广泛的社区中进行教育和提高意识的努力
我们的新能力。结合资源社区参与活动的其他方面,
DBP将帮助确保向研究界提供最广泛和最持续的数据。
英文摘要
Project Summary – Driving Biomedical Projects
The goal of this renewal of the Proteomics Research Resource is to broadly impact biomedical research by
providing the capabilities to obtain higher quality proteomics data from much smaller samples, together with
producing more comprehensive quantitative measurements, improving coverage of low abundance
components, such as problematic peptide isomers and post translational modifications, and enabling large
increases in measurement throughput. These advances will be made in tandem with efforts to assure broad and
sustained access to the new capabilities so they will continue to have high impact on biomedical research. To
assist in achieving these goals, we have identified nine initial Driving Biomedical Projects (DBPs). These have
been selected to both focus the three Technology Research and Development (TR&D) projects on developing
solutions to real-world problems and to serve as examples to the wider community on how to use the new
technologies in their own research projects. Each DBP will serve as a test-bed for the initial application of new
technologies and the earliest stages of community engagement. The nine DBPs represent geographically
dispersed collaborators, working on a wide range of biomedically-relevant research topics, and whose work can
be greatly enhanced by the application of the new technologies. The DBPs will significantly benefit from all
three of the Resource TR&Ds including the capabilities to: manipulate and process much smaller samples
(TR&D 1), provide broad and quantitative proteomics data from such samples at higher throughput (TR&D 2),
and enable bioinformatics analysis of the resulting data as well as the generation of biological insights
(TR&D 3). Working in concert with the TR&D efforts, the DBPs will also provide key impetus for the
prioritization of the TR&D activities, will stimulate problem solving, and provide the challenges needed for
driving technology developments. They will also drive the integration of the capabilities developed within each
of the three Resource TR&Ds. In the course of this renewal, our advances will progressively enable increasingly
challenging DBPs. For example, the ability to obtain quantitative high throughput proteomics measurements at
the single cell level, would expand the utility of proteomics for entirely new areas of research. Such dramatic
advances in capabilities will be initially applied within several current as well as new DBPs. These projects and
their success will support our efforts to both educate and increase the awareness within the broader community
of our new capabilities. In conjunction with other aspects of the Resource community engagement activities,
the DBPs will help assure their broadest and most sustained availability to the research community.
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