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Demonstration of a frozen sample aliquotter to prepare plasma and serum aliquots without thawing frozen parent samples

机译:演示冷冻样品等分试样可制备血浆和血清等分试样而无需解冻冷冻母体样品

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摘要

Human biospecimens represent invaluable resources to advance molecular medicine, epidemiology, and biomarker discovery/validation, among other biomedical research. Biobanks typically cryopreserve biospecimens to safeguard their biochemical composition. However, exposing specimens repeatedly to freeze/thaw cycles can degrade their integrity in unforeseen ways. Those biobanks storing liquid samples, thus, regularly make a fundamental compromise at collection time between freezing samples in many small volumes (e.g., 0.5 mL or smaller) or in fewer, larger volumes (e.g., 1.8 mL). The former eliminates the need to expose samples to repeated freeze/thaw cycling, although increasing up-front labor costs, consumables used, and cold storage space requirements. The latter decreases up-front labor costs, consumables, and cold storage requirements, yet exposes samples repeatedly to damaging freeze/thaw cycles when smaller aliquots are needed for analysis. The Rhode Island BioBank at Brown University (RIBB) thoroughly evaluated the performance of an original technology that minimizes a sample's exposure to freeze/thaw cycling by enabling the automated extraction of frozen aliquots from one single frozen parent sample without thawing it. A technology that eliminates unnecessary sample exposures to freeze/thaw cycles could help protect sample integrity, extend its useful life, and effectively rectify and eliminate the aforementioned need to compromise. This report presents the results of the evaluation, and conclusively demonstrates the technology's ability to extract multiple uniform frozen aliquots from a single cryotube of never-thawed frozen human plasma, which faithfully represent the parent sample when analyzed for typical biochemical analytes, showing a coefficient of variability lower than 5.5%.
机译:人类生物标本是推进分子医学,流行病学和生物标志物发现/验证以及其他生物医学研究的宝贵资源。生物库通常会冷冻保存生物标本以保护其生物化学成分。但是,将标本反复暴露于冰冻/融化循环会以无法预料的方式降低其完整性。因此,那些存储液体样品的生物库在许多小体积(例如0.5mL或更小)或更少,更大体积(例如1.8mL)的冷冻样品之间的收集时间经常有根本的折衷。前者消除了将样品暴露于反复冷冻/融化循环的需要,尽管增加了前期的人工成本,使用的消耗品和冷藏空间的要求。后者减少了前期的人工成本,消耗品和冷藏需求,但当需要进行更少量的分析时,却使样品反复遭受破坏性的冻融循环。布朗大学(RIBB)的罗德岛生物银行(Rhode Island BioBank)彻底评估了一项原始技术的性能,该技术可通过自动从一个冷冻母体样品中提取冷冻等分试样而无需解冻来最大程度地减少样品在冷冻/解冻循环中的暴露。消除不必要的样品在冷冻/融化循环中暴露的技术,可以帮助保护样品的完整性,延长其使用寿命,有效地纠正和消除上述折衷的需求。本报告介绍了评估结果,并最终证明了该技术能够从从未融化的冷冻人血浆的单个冷冻管中提取多个均匀的冷冻等分试样,当对典型生化分析物进行分析时,它们能忠实地代表母体样品,显示系数为变异性低于5.5%。

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