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Designing and managing a flexible and dynamic biorepository system: A 15-year perspective from the CPCRA, ESPRIT, and INSIGHT clinical trial networks

机译:设计和管理灵活而动态的生物存储系统:从CPCRA,ESPRIT和INSIGHT临床试验网络获得的15年展望

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Purpose of Review: We provide a long-term perspective of our experience with designing and managing a successful biorepository system. We include a brief history, a description of our current process, and lessons learned. Recent Findings: Biologic specimens, collected and stored as part of HIV-related research for years, are now being used for biomarker analyses that have important implications for both AIDS and non-AIDS events. If appropriately collected, documented, and stored, biospecimens are a valuable resource that can help answer current and future scientific questions. International networks must be able to monitor and adhere to country-specific specimen use regulations. Specimens for human DNA research need increased levels of privacy protection. Issues to consider when designing a biorepository system include expertise, communication, data management, technology, standardized methods and procedures, shipping, and specimen use policies. Summary: As biorepositories are an integral part of research their design should not be an afterthought. Good designs consider all stages of research, and the most critical components are expertise and planning. Successful biorepository systems must have a balance of flexibility and standardization. The need for adaptable data management systems, whether commercial products or systems developed specifically for the network, should not be underestimated. Investment in appropriate technology, including a barcoding system with high-quality labels and printers, will pay off in the long term. To meet the needs of emerging technologies, it is becoming increasingly important to document the conditions at the time of specimen collection and processing. Regular communication between all components of the biorepository system is critical.
机译:审查目的:我们对设计和管理成功的生物存储系统的经验提供了长期的看法。我们包括简短的历史记录,对我们当前流程的描述以及汲取的教训。最新发现:生物标本作为艾滋病相关研究的一部分已收集和存储了多年,现已用于生物标志物分析,对艾滋病和非艾滋病事件都有重要意义。如果适当地收集,记录和存储生物标本,则是可以帮助回答当前和将来的科学问题的宝贵资源。国际网络必须能够监控并遵守特定国家的样本使用规定。人类DNA研究的标本需要提高隐私保护水平。设计生物存储库系统时要考虑的问题包括专业知识,沟通,数据管理,技术,标准化方法和程序,运输以及标本使用政策。简介:由于生物存储库是研究不可或缺的一部分,因此其设计不应该是事后的想法。好的设计要考虑研究的所有阶段,最关键的要素是专业知识和计划。成功的生物存储系统必须在灵活性和标准化之间取得平衡。无论是商业产品还是专门为网络开发的系统,对自适应数据管理系统的需求都不应低估。从长远来看,对适当技术的投资(包括带有高质量标签和打印机的条形码系统)将获得回报。为了满足新兴技术的需求,记录标本收集和处理时的条件变得越来越重要。生物存储系统的所有组件之间的定期通信至关重要。

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