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用于辐射防护的集成式指尖采血自采设备的研制。

Development of an integrated fingerstick blood self-collection device for radiation countermeasures.

机构信息

Center for Applied NanoBioscience and Medicine, The University of Arizona, College of Medicine, Phoenix, AZ, United States of America.

Center for Radiological Research, Columbia University, Vagelos College of Physicians and Surgeons, New York, NY, United States of America.

出版信息

PLoS One. 2019 Oct 16;14(10):e0222951. doi: 10.1371/journal.pone.0222951. eCollection 2019.

Abstract

We report the development of system for packaging critical components of the traditional collection kit to make an integrated fingerstick blood collector for self-collecting blood samples of 100 μl or more for radiation countermeasures. A miniaturized vacuum tube system (VacuStor system) has been developed to facilitate liquid reagent storage, simple operation and reduced sample contamination. Vacuum shelf life of the VacuStor tube has been analyzed by the ideal gas law and gas permeation theory, and multiple ways to extend vacuum shelf life beyond one year have been demonstrated, including low temperature storage, Parylene barrier coating and container vacuum bag sealing. Self-collection was also demonstrated by healthy donors without any previous fingerstick collection experience. The collected blood samples showed similar behavior in terms of gene expression and cytogenetic biodosimetry assays comparing to the traditionally collected samples. The integrated collector may alleviate the sample collection bottleneck for radiation countermeasures following a large-scale nuclear event, and may be useful in other applications with its self-collection and liquid reagent sample preprocessing capabilities.

摘要

我们报告了一种系统的开发,该系统用于包装传统采集套件的关键组件,以制造一种集成的指尖采血器,用于自采集 100 μl 或更多的血液样本,用于辐射对策。已经开发了一种小型化真空管系统(VacuStor 系统),以方便液体试剂储存、简单操作和减少样品污染。通过理想气体定律和气体渗透理论分析了 VacuStor 管的真空保质期,并展示了多种方法来将真空保质期延长超过一年,包括低温储存、派瑞林阻隔涂层和容器真空袋密封。没有任何先前指尖采集经验的健康捐赠者也进行了自我采集。与传统采集的样本相比,采集的血液样本在基因表达和细胞遗传学生物剂量测定方面表现出相似的行为。该集成采集器可能会缓解大规模核事件后辐射对策中的样本采集瓶颈,并且其自我采集和液体试剂样本预处理能力在其他应用中可能也很有用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7cc4/6795524/a4c5096d2e2c/pone.0222951.g001.jpg

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