共享核心设施和研究资源——加速科学发现的投资。

Michael C Chang, F. Grieder
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引用次数: 9

摘要

每年,美国国立卫生研究院(NIH)在核心设施上投入大量资源,为科研人员提供先进的尖端技术、专家咨询和其他服务。这些设施提供一系列服务,从系统分析和数据处理,使用专业仪器,到获取和专家咨询实验设计和评估需求,如生物统计学、患者外展和临床监管问题。对核心的最大支持来自于美国国立卫生研究院的研究所和中心,例如,通过国家癌症研究所(NCI)和国家促进转化科学中心(NCATS)。美国国立卫生研究院的大量投资用于中心核心拨款,特别是NCI癌症中心,以及由NCATS支持的临床转化科学奖励计划。美国国立卫生研究院项目协调、规划和战略倡议主任办公室(DPCPSI)也对动物和生物资源中心进行了大量投资,为世界各地的研究人员提供人类生物学和疾病的基础到临床研究模型。许多这样的中心像核心一样运作,因为它们提供以下服务:1)高质量、无病的动物;(二)先进的技术和设施,以及专门的动物;3)由专业人员进行专家培训和咨询服务。例如,美国国立卫生研究院支持的国家灵长类动物研究中心为使用非人类灵长类动物进行生物医学研究的研究人员提供设施、动物和专业知识,每年促进1000个单独的研究项目。DPCPSI对核心设施的投资还包括通过其共享仪器补助金计划支持购买或升级昂贵的、专业的、市售的仪器或集成系统。该方案提高了成本效益;鼓励研究人员、研究小组和部门之间的最佳共享;并培养合作,多学科的环境。在许多情况下,该仪器集成在一个集中的核心设施中。通过这些投资和许多其他未列出的项目,NIH每年对研究核心的支持保守估计为9亿美元。鉴于如此巨大的投资,至关重要的是,NIH和接受这些资源支持的研究机构都必须确定并实施提高核心资源效率的方法。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Sharing Core Facilities and Research Resources--An Investment in Accelerating Scientific Discoveries.
Each year, the U.S. National Institutes of Health (NIH) invests substantial resources in core facilities that provide access to advanced cutting-edge technologies, expert consultation, and other services to scientific investigators. The facilities offer a number of services, ranging from systematic analysis and data processing, using specialized instrumentation, to access and expert advice on experimental design and evaluation needs, such as biostatistics, patient outreach, and clinical regulatory issues. The largest fraction of support for cores comes from the institutes and centers of the NIH, for example, through the National Cancer Institute (NCI) and National Center for Advancing Translational Sciences (NCATS). Significant NIH investment is spent on Center Core grants, particularly the NCI Cancer Centers, and the Clinical Translational Sciences Award Program supported by NCATS. The Office of the NIH Director’s Division of Program Coordination, Planning, and Strategic Initiatives (DPCPSI) also has a substantial investment in animal and biologic resource centers that provide models of human biology and disease for basic to clinical studies to researchers around the world. Many of these centers function like cores, as they provide the following: 1) high-quality, disease-free animals; 2) access to sophisticated technologies and facilities, as well as specialized animals; and 3) expert training by professional staff and consultation services. As an example, the NIH-supported National Primate Research Centers provide facilities, animals, and expertise for investigators who use nonhuman primates for biomedical research, facilitating >1000 individual research projects annually. The DPCPSI investment in core facilities also includes support through its Shared Instrument Grant program to purchase or upgrade expensive, specialized, commercially available instruments or integrated systems. This program promotes cost effectiveness; encourages optimal sharing among investigators, research groups, and departments; and fosters a collaborative, multidisciplinary environment. In many settings, the instrument is integrated in a centralized core facility. Through these investments and many other programs not listed, NIH’s annual support for research cores is estimated conservatively at $900 million. Given this large investment, it is critical that both NIH and the research institutions receiving support for these resources identify and implement approaches that enhance core resource efficiencies.
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