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RFID as a new ICT tool to monitor specimen life cycle and quality control in a biobank

机译:RFID作为一种新的ICT工具,可监控生物库中样品的生命周期和质量控制

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Biospecimen quality is crucial for clinical and translational research and its loss is one of the main obstacles to experimental activities. Beside the quality of samples, preanalytical variations render the results derived from specimens of different biobanks or even within the same biobank incomparable. Specimens collected along the years should be managed with a heterogeneous life cycle. Hence, we propose to collect detailed data concerning the whole life cycle of stored samples employing radio-frequency identification (RFID) technology. Methods: We describe the processing chain of blood biosamples that is operative at the biobank of IRCSS San Raffaele, Rome, Italy (BioBIM). We focus on the problem of tracing the stages following automated preanalytical processing: we collected the time stamps of all events that could affect the biological quality of the specimens by means of RFID tags and readers. Results: We developed a pilot study on a fragment of the life cycle, namely the storage between the end of the preanalytics and the beginning of the analytics, which is usually not traced by automated tools because it typically includes manual handling. By adopting RFID devices we identified the possible critical time delays. At 1, 3 and 6 months RFID-tagged specimens cryopreserved at -80°C were successfully read. Conclusions: We were able to record detailed information about the storage phases and a fully documented specimen life cycle. This will allow us to promote and tune up the best practices in biobanking because i) it will be possible to classify sample features with a sharper resolution, which allows future utilization of stored material; ii) cost-effective policies can be adopted in processing, storing and selecting specimens; iii) after using each aliquot, we can study the life cycle of the specimen with a possible feedback on the procedures.
机译:生物标本质量对于临床和转化研究至关重要,其丢失是实验活动的主要障碍之一。除了样品的质量外,分析前的变化还使得来自不同生物库甚至同一生物库内样本的结果无法比拟。多年来收集的标本应采用不同的生命周期进行管理。因此,我们建议采用射频识别(RFID)技术收集有关存储样本整个生命周期的详细数据。方法:我们描述了在意大利罗马的IRCSS San Raffaele(BioBIM)的生物库中操作的血液生物样品的处理链。我们专注于追踪自动分析前处理后各阶段的问题:我们通过RFID标签和读取器收集了可能影响标本生物学质量的所有事件的时间戳。结果:我们对生命周期的一部分进行了初步研究,即预分析结束与分析开始之间的存储,通常不使用自动化工具进行跟踪,因为它通常包括手动处理。通过采用RFID设备,我们确定了可能的关键时间延迟。在第1、3和6个月,成功读取了在-80°C冷冻保存的带有RFID标签的标本。结论:我们能够记录有关存储阶段和详细记录的标本生命周期的详细信息。这将使我们能够促进和优化生物库中的最佳实践,因为:i)可以以更清晰的分辨率对样本特征进行分类,从而可以将来利用存储的材料; ii)在处理,存储和选择标本时可以采用具有成本效益的政策; iii)使用完每份等分试样后,我们可以研究样品的生命周期,并可能对程序有所反馈。

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