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基于纤维蛋白原-凝血酶的体外灌注系统研究血流相关人工心脏瓣膜血栓形成。

A Fibrin-Thrombin Based In Vitro Perfusion System to Study Flow-Related Prosthetic Heart Valves Thrombosis.

机构信息

Department of Biomedical Engineering, Technion-IIT, 3200003, Haifa, Israel.

Department of Cardiac Surgery, Rambam Health Care Campus, 3109601, Haifa, Israel.

出版信息

Ann Biomed Eng. 2024 Jun;52(6):1665-1677. doi: 10.1007/s10439-024-03480-6. Epub 2024 Mar 8.

Abstract

Prosthetic heart valve (PHV) replacement has increased the survival rate and quality of life for heart valve-diseased patients. However, PHV thrombosis remains a critical problem associated with these procedures. To better understand the PHV flow-related thrombosis problem, appropriate experimental models need to be developed. In this study, we present an in vitro fibrin clot model that mimics clot accumulation in PHVs under relevant hydrodynamic conditions while allowing real-time imaging. We created 3D-printed mechanical aortic valve models that were inserted into a transparent glass aorta model and connected to a system that simulates human aortic flow pulse and pressures. Thrombin was gradually injected into a circulating fibrinogen solution to induce fibrin clot formation, and clot accumulation was quantified via image analysis. The results of valves positioned in a normal versus a tilted configuration showed that clot accumulation correlated with the local flow features and was mainly present in areas of low shear and high residence time, where recirculating flows are dominant, as supported by computational fluid dynamic simulations. Overall, our work suggests that the developed method may provide data on flow-related clot accumulation in PHVs and may contribute to exploring new approaches and valve designs to reduce valve thrombosis.

摘要

人工心脏瓣膜(PHV)置换术提高了心脏瓣膜疾病患者的生存率和生活质量。然而,PHV 血栓仍然是与这些手术相关的一个关键问题。为了更好地理解 PHV 血流相关的血栓问题,需要开发适当的实验模型。在这项研究中,我们提出了一种体外纤维蛋白凝块模型,该模型在相关的流体动力学条件下模拟 PHV 中的凝块积累,同时允许实时成像。我们创建了 3D 打印的机械主动脉瓣模型,将其插入透明玻璃主动脉模型中,并连接到模拟人体主动脉血流脉冲和压力的系统。凝血酶逐渐注入循环的纤维蛋白原溶液中,以诱导纤维蛋白凝块形成,并通过图像分析定量凝块积累。在正常和倾斜位置的瓣膜的结果表明,凝块积累与局部流动特征相关,主要存在于低剪切和高停留时间的区域,这些区域的血流以回流为主,这得到了计算流体动力学模拟的支持。总的来说,我们的工作表明,所开发的方法可以提供关于 PHV 中与血流相关的凝块积累的数据,并有助于探索新的方法和瓣膜设计以减少瓣膜血栓形成。

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