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Device Thrombogenicity Emulation: An In Silico Predictor of In Vitro and In Vivo Ventricular Assist Device Thrombogenicity

机译:设备血栓形成仿真:体外和体内心室辅助设备的计算机预测的血栓形成性

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摘要

Ventricular assist devices (VAD), a mainstay of therapy for advanced and end-stage heart failure, remain plagued by device thrombogenicity. Combining advanced in silico and in vitro methods, Device Thrombogenicity Emulation (DTE) is a device design approach for enhancing VAD thromboresistance. Here we tested DTE efficacy in experimental VAD designs. DTE incorporates iterative design modifications with advanced CFD to compute the propensity of large populations of platelets to activate by flow-induced stresses (statistically representing the VAD ‘Thrombogenic Footprint’). The DTE approach was applied to a VAD (MINDTE) design with a favorable thromboresistance profile and compared against a design (MAXDTE) that generated an intentionally poor thromboresistance profile. DTE predictions were confirmed by testing physical prototypes in vitro by measuring VAD thrombogenicity using the modified prothrombinase assay. Chronic in vivo studies in VAD implanted calves, revealed MINDTE calf surviving well with low platelet activation, whereas the MAXDTE animal sustained thromboembolic strokes. DTE predictions were confirmed, correlating with in vitro and in vivo thrombogenicity, supporting utility in guiding device development, potentially reducing the need for animal studies.
机译:心室辅助设备(VAD)是晚期和终末期心力衰竭的主要治疗手段,但仍受设备血栓形成的困扰。设备血栓形成仿真(DTE)将先进的计算机技术和体外方法相结合,是一种增强VAD血栓抗性的设备设计方法。在这里,我们测试了DTE在VAD实验设计中的功效。 DTE将迭代设计修改与高级CFD结合在一起,以计算大量血小板被流动引起的应力激活的倾向(统计上代表VAD的“血栓形成足迹”)。 DTE方法已应用于具有良好抗血栓形成特性的VAD(MINDTE)设计,并与产生故意不良的抗血栓形成特性的设计(MAXDTE)进行了比较。通过使用改良的凝血酶原测定法测量VAD血栓形成性,通过在体外测试物理原型来确认DTE预测。在VAD植入小牛中进行的长期体内研究表明,MINDTE小牛在低血小板活化的情况下存活良好,而MAXDTE动物则持续出现血栓栓塞性中风。证实了DTE预测,与体外和体内血栓形成相关,支持了在指导装置开发中的实用性,从而潜在地减少了对动物研究的需求。

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