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用于实时监测和预测流动血液中血栓形成个体特征的阻抗生物传感器。

Impedance biosensor for real-time monitoring and prediction of thrombotic individual profile in flowing blood.

作者信息

De Zanet Denise, Battiston Monica, Lombardi Elisabetta, Specogna Ruben, Trevisan Francesco, De Marco Luigi, Affanni Antonio, Mazzucato Mario

机构信息

Polytechnic Department of Engineering and Architecture, University of Udine, Udine, Italy.

Department of Translational Research, Stem Cells Unit, National Cancer Institute CRO - IRCCS, Aviano, Pordenone, Italy.

出版信息

PLoS One. 2017 Sep 18;12(9):e0184941. doi: 10.1371/journal.pone.0184941. eCollection 2017.

Abstract

A new biosensor for the real-time analysis of thrombus formation is reported. The fast and accurate monitoring of the individual thrombotic risk represents a challenge in cardiovascular diagnostics and in treatment of hemostatic diseases. Thrombus volume, as representative index of the related thrombotic status, is usually estimated with confocal microscope at the end of each in vitro experiment, without providing a useful behavioral information of the biological sample such as platelets adhesion and aggregation in flowing blood. Our device has been developed to work either independently or integrated with the microscopy system; thus, images of the fluorescently labeled platelets are acquired in real-time during the whole blood perfusion, while the global electrical impedance of the blood sample is simultaneously monitored between a pair of specifically designed gold microelectrodes. Fusing optical and electrical data with a novel technique, the dynamic of thrombus formation events in flowing blood can be reconstructed in real-time, allowing an accurate extrapolation of the three-dimensional shape and the spatial distribution of platelet thrombi forming and growing within artificial capillaries. This biosensor is accurate and it has been used to discriminate different hemostatic conditions and to identify weakening and detaching platelet aggregates. The results obtained appear compatible with those quantified with the traditional optical method. With advantages in terms of small size, user-friendliness and promptness of response, it is a promising device for the fast and automatic individual health monitoring at the Point of Care (POC).

摘要

报道了一种用于实时分析血栓形成的新型生物传感器。对个体血栓形成风险进行快速准确的监测是心血管诊断和止血疾病治疗中的一项挑战。血栓体积作为相关血栓形成状态的代表性指标,通常在每个体外实验结束时用共聚焦显微镜进行估计,而无法提供生物样本在流动血液中的有用行为信息,如血小板黏附和聚集情况。我们开发的设备既可以独立工作,也可以与显微镜系统集成;因此,在全血灌注过程中实时获取荧光标记血小板的图像,同时在一对专门设计的金微电极之间同步监测血样的整体电阻抗。通过一种新技术融合光学和电学数据,可以实时重建流动血液中血栓形成事件的动态过程,从而准确推断人工毛细血管内血小板血栓形成和生长的三维形状及空间分布。这种生物传感器准确可靠,已用于区分不同的止血状况以及识别血小板聚集体的减弱和分离。所获得的结果与传统光学方法量化的结果相符。该生物传感器具有体积小、用户友好和响应迅速等优点,是一种有望用于即时护理(POC)快速自动个体健康监测的设备。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/fdaa/5602635/128c3a4668ba/pone.0184941.g001.jpg

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