Linde Torsten, Clauser Johanna, Meuris Bart, Steinseifer Ulrich
Department of Cardiovascular Engineering, Helmholtz Institute of Applied Medical Engineering, RWTH Aachen University, Aachen, Germany.
Cardiac Surgery, Department of Cardiovascular Sciences, University Hospital Leuven, KU Leuven, Leuven, Belgium.
Cardiovasc Eng Technol. 2019 Jun;10(2):216-224. doi: 10.1007/s13239-019-00408-3. Epub 2019 Mar 6.
Thrombogenic complications are still a main issue in the general performance of cardiovascular implants, especially heart valves. To date, the thrombogenic potential of those prostheses is pre-clinically assessed in time consuming animal studies with questionable evidence.
In this study, we present a new in-vitro method to assess and compare deficiencies of heart valve substitutes concerning their thrombogenic performance and locate initial clot formation under physiological conditions using porcine blood. Therefore, an athrombogenic pulse duplicator (THIA3) was developed that simulates the anatomic and hemodynamic conditions in the vicinity of the aortic valve. Validation of this tester was carried out with regard to hemodynamics, reproducibility and using positive and negative control valves and by comparison of clot locations with literature data from chronic animal trials with sheep using a St. Jude bileaflet valve.
Validation of the tester showed quasi-physiological hemodynamics and reproducible clot formation. Identical clot formations were found comparing findings in vitro with chronic animal trials.
The THIA 3 has proven its suitability for valid, reproducible evaluation of thrombogenic potential of heart valves in a short period of time.
血栓形成并发症仍是心血管植入物(尤其是心脏瓣膜)整体性能中的一个主要问题。迄今为止,这些假体的血栓形成潜力是在耗时的动物研究中进行临床前评估的,证据存疑。
在本研究中,我们提出了一种新的体外方法,以评估和比较心脏瓣膜替代品在血栓形成性能方面的缺陷,并利用猪血在生理条件下定位初始血栓形成。因此,开发了一种抗血栓脉冲复制器(THIA3),它模拟主动脉瓣附近的解剖和血流动力学条件。该测试仪在血流动力学、可重复性方面进行了验证,并使用了阳性和阴性对照瓣膜,还通过将血栓形成位置与使用圣犹达双叶瓣膜的绵羊慢性动物试验的文献数据进行比较来验证。
测试仪的验证显示出准生理血流动力学和可重复的血栓形成。将体外研究结果与慢性动物试验结果进行比较,发现血栓形成情况相同。
THIA 3已证明其适用于在短时间内对心脏瓣膜的血栓形成潜力进行有效、可重复的评估。