在-25°C下保存长达9年对15种选定生化血清成分的影响。

IF 1.4 4区 生物学
Steffan Daniel Bos, Marianne Lauritzen, Randi E Gislefoss, Nathalie Støer, Olav I Klingenberg, Hilde Langseth
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引用次数: 0

摘要

背景:生物储存库在许多情况下促进了研究和临床研究。现代生物库使用最先进的储存方法和低温,而许多旧的生物标本收藏在不太理想的温度下储存。挪威Janus血清库队列拥有数十年前收集的70多万份血清样本,并保存在-25°C。为了深入了解血清成分在-25°C下长时间的稳定性,我们对15种血清成分进行了7次测量,将储存时间延长至108个月。方法:选择分析物(蛋白质,酶,电解质,小分子,激素,脂质和维生素)从40匿名供者的血清中进行测量。在新鲜样品和在-25°C下储存3、6、12、24、36、72和108个月后测定血清成分。我们使用方差分析和配对样本t检验来检验变异,并对这些血清成分水平随时间进行趋势分析。结果:所有测量的血清成分在至少一个时间点上显示差异。趋势分析发现,9个成分的水平显著下降,而4个成分的水平显著上升。两个组成部分没有显示出明显的趋势。结论:血清在-25°C下储存可能会导致血清分析物水平随时间的变化。我们不能排除分析试剂盒的批处理效应;实验室仪器的变化和标准导致了观察到的差异。为了减轻储存时间增加的影响,应将储存时间作为纳入研究项目的对照样本的匹配标准。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Effect of Storage Time up to Nine Years at -25°C on 15 Selected Biochemical Serum Components.

Background: Biorepositories facilitate research and clinical studies in many settings. Modern biobanks use state-of-the art storage methods and low temperatures, while many older collections of biospecimens have been stored at less optimal temperatures. The Janus Serum Bank Cohort in Norway holds over 700,000 serum samples collected decades ago and stored at -25°C. To obtain insights in the stability of serum components at -25°C over prolonged times, we performed 7 measurements for increasing storage time up to 108 months for a panel of 15 serum components. Method: A selection of analytes (proteins, an enzyme, electrolytes, small molecules, hormones, lipids, and a vitamin) were measured in serum from 40 anonymous donors. The serum components were measured in fresh samples and after 3, 6, 12, 24, 36, 72, and 108 months in storage at -25°C. We tested for variations using analysis of variance and paired sample t-tests and performed trend analyses for these serum component levels against time. Results: All measured serum components showed differences in values for at least one of the timepoints. Trend analyses identified significantly decreasing levels for nine components, whereas four components showed significantly increasing levels. Two components did not show significant trends. Conclusion: Storage of serum at -25°C may result in changes in serum analyte levels over time. We cannot exclude that batch effects of assaying kits; laboratory instrument changes and standards contributed to the observed differences. To mitigate the influence of increasing storage time, storage time should be used as matching criteria for control samples included in research projects.

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来源期刊
Biopreservation and Biobanking
Biopreservation and Biobanking Biochemistry, Genetics and Molecular Biology-General Biochemistry,Genetics and Molecular Biology
自引率
12.50%
发文量
114
期刊介绍: Biopreservation and Biobanking is the first journal to provide a unifying forum for the peer-reviewed communication of recent advances in the emerging and evolving field of biospecimen procurement, processing, preservation and banking, distribution, and use. The Journal publishes a range of original articles focusing on current challenges and problems in biopreservation, and advances in methods to address these issues related to the processing of macromolecules, cells, and tissues for research. In a new section dedicated to Emerging Markets and Technologies, the Journal highlights the emergence of new markets and technologies that are either adopting or disrupting the biobank framework as they imprint on society. The solutions presented here are anticipated to help drive innovation within the biobank community. Biopreservation and Biobanking also explores the ethical, legal, and societal considerations surrounding biobanking and biorepository operation. Ideas and practical solutions relevant to improved quality, efficiency, and sustainability of repositories, and relating to their management, operation and oversight are discussed as well.
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