Department of Cardiovascular Surgery, Kyushu University Hospital, 3-1-1 Maidashi, Higashi-ku, Fukuoka, 812-8582, Japan.
Health Research Institute, National Institute of Advanced Industrial Science and Technology (AIST), Tsukuba, Japan.
Heart Vessels. 2021 Jun;36(6):890-898. doi: 10.1007/s00380-021-01809-y. Epub 2021 Mar 8.
A survey conducted by Abiomed, Inc. revealed that 10 of 60 patients who received ventricular assistance via the AB5000 ventricular assist device (VAD) experienced hemolysis. The present study was conducted to investigate which factors influence hemolysis under pulsatile-flow VADs such as the AB5000. We compared the specificity of the AB5000 and its driving console with those of the NIPRO-VAD and VCT50χ under severe heart failure conditions using a mock circulatory system with a glycerol water solution. We used the mock circuit with bovine blood to confirm which pump conditions were most likely to cause hemolysis. In addition, we measured the shear velocity using particle image velocimetry by analyzing the seeding particle motion for both the AB5000 and NIPRO-VAD under the same conditions as those indicated in the initial experiment. Finally, we analyzed the correlation between negative pressure, exposure time, and hemolysis by continuously exposing fixed vacuum pressures for fixed times in a sealed device injected with bovine blood. Applying higher vacuum pressure to the AB5000 pump yielded a larger minimum inlet pressure and a longer exposure time when the negative pressure was under - 10 mmHg. The plasma-free hemoglobin increased as more negative pressure was driven into the AB5000 pump. Moreover, the negative pressure interacted with the exposure time, inducing hemolysis. This study revealed that negative pressure and exposure time were both associated with hemolysis.
一项由 Abiomed 公司进行的调查显示,在接受 AB5000 心室辅助装置(VAD)心室辅助的 60 名患者中,有 10 名发生溶血。本研究旨在探讨在 AB5000 等搏动流 VAD 下哪些因素会影响溶血。我们使用甘油水溶液模拟循环系统,比较了严重心力衰竭条件下 AB5000 及其驱动控制台与 NIPRO-VAD 和 VCT50χ 的特异性。我们使用含有牛血的模拟回路来确认哪种泵条件最有可能导致溶血。此外,我们通过分析 AB5000 和 NIPRO-VAD 下的播种粒子运动,使用粒子图像测速法测量了剪切速度。在与初始实验相同的条件下。最后,我们通过在密封设备中连续暴露固定时间的固定真空压力,分析了负压力、暴露时间和溶血之间的相关性,该设备中注入了牛血。将更高的真空压力施加到 AB5000 泵上会导致最小入口压力更大,当负压低于-10mmHg 时暴露时间更长。向 AB5000 泵中驱动更多的负压会导致血浆游离血红蛋白增加。此外,负压与暴露时间相互作用,导致溶血。这项研究表明,负压和暴露时间都与溶血有关。