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血小板活性状态检测法在体外循环血液再循环装置中血小板活化体外定量分析中的应用

On the Use of the Platelet Activity State Assay for the In Vitro Quantification of Platelet Activation in Blood Recirculating Devices for Extracorporeal Circulation.

作者信息

Consolo Filippo, Valerio Lorenzo, Brizzola Stefano, Rota Paolo, Marazzato Giulia, Vincoli Valentina, Reggiani Stefano, Redaelli Alberto, Fiore Gianfranco

机构信息

Dipartimento di Elettronica, Informazione e Bioingegneria, Politecnico di Milano, Milano, Italy.

Dipartimento di Scienze Veterinarie per la Salute, la Produzione Animale e la Sicurezza Alimentare, Facoltà di Medicina Veterinaria, Università di Milano, Milano, Italy.

出版信息

Artif Organs. 2016 Oct;40(10):971-980. doi: 10.1111/aor.12672. Epub 2016 Jan 8.

DOI:10.1111/aor.12672
PMID:26748664
Abstract

We designed an experimental setup to characterize the thrombogenic potential associated with blood recirculating devices (BRDs) used in extracorporeal circulation (ECC). Our methodology relies on in vitro flow loop platelet recirculation experiments combined with the modified-prothrombinase platelet activity state (PAS) assay to quantify the bulk thrombin production rate of circulated platelets, which correlates to the platelet activation (PA) level. The method was applied to a commercial neonatal hollow fiber membrane oxygenator. In analogous hemodynamic environment, we compared the PA level resulting from multiple passes of platelets within devices provided with phosphorylcholine (PC)-coated and noncoated (NC) fibers to account for flow-related mechanical factors (i.e., fluid-induced shear stress) together with surface contact activation phenomena. We report for the first time that PAS assay is not significantly sensitive to the effect of material coating under clinically pertinent flow conditions (500 mL/min), while providing straightforward information on shear-mediated PA dynamics in ECC devices. Being that the latter is intimately dependent on local flow dynamics, according to our results, the rate of thrombin production as measured by the PAS assay is a valuable biochemical marker of the selective contribution of PA in BRDs induced by device design features. Thus, we recommend the use of PAS assay as a means of evaluating the effect of modification of specific device geometrical features and/or different design solutions for developing ECC devices providing flow conditions with reduced thrombogenic impact.

摘要

我们设计了一种实验装置,以表征与体外循环(ECC)中使用的血液再循环装置(BRD)相关的血栓形成潜力。我们的方法依赖于体外流动环路血小板再循环实验,结合改良的凝血酶原酶血小板活性状态(PAS)测定法,以量化循环血小板的总凝血酶产生率,这与血小板活化(PA)水平相关。该方法应用于一种商用新生儿中空纤维膜氧合器。在类似的血流动力学环境中,我们比较了在配备有磷酸胆碱(PC)涂层和未涂层(NC)纤维的装置内,血小板多次通过所导致的PA水平,以考虑与流动相关的机械因素(即流体诱导的剪切应力)以及表面接触激活现象。我们首次报告,在临床相关的流动条件(500毫升/分钟)下,PAS测定法对材料涂层的影响不敏感,同时能提供关于ECC装置中剪切介导的PA动态的直接信息。鉴于后者密切依赖于局部流动动力学,根据我们的结果,通过PAS测定法测量的凝血酶产生率是由装置设计特征诱导的BRD中PA选择性贡献的有价值的生化标志物。因此,我们建议使用PAS测定法作为评估特定装置几何特征的修改和/或不同设计方案对开发具有降低血栓形成影响的流动条件的ECC装置的效果的一种手段。

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